Sensible Medical Innovations Ltd.

Israel

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2025 September 1
2025 (YTD) 4
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2022 5
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IPC Class
A61B 5/00 - Measuring for diagnostic purposes Identification of persons 36
A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves 36
A61B 5/0507 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves using microwaves or terahertz waves 16
A61B 5/08 - Measuring devices for evaluating the respiratory organs 9
A61B 5/053 - Measuring electrical impedance or conductance of a portion of the body 8
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Status
Pending 9
Registered / In Force 44
Found results for  patents

1.

METHOD AND SYSTEM FOR MONITORING THORACIC TISSUE FLUID

      
Application Number 19211365
Status Pending
Filing Date 2025-05-19
First Publication Date 2025-09-04
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Rappaport, Dan
  • Mizrahi, Nadav
  • Bergida, Shlomi
  • Saroka, Amir
  • Ronen, Amir
  • Kochba, Ilan

Abstract

A method for monitoring thoracic tissue. The method comprises intercepting reflections of electromagnetic (EM) radiation reflected from thoracic tissue of a patient in radiation sessions during a period of at least 24 hours, detecting a change of a dielectric coefficient of the thoracic tissue by analyzing respective the reflections, and outputting a notification indicating the change. The reflections are changed as an outcome of thoracic movements which occur during the period.

IPC Classes  ?

  • A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons

2.

METHOD OF PRODUCING AN ELECTROMAGNETIC (EM) PROBE

      
Application Number 19023610
Status Pending
Filing Date 2025-01-16
First Publication Date 2025-05-15
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Saroka, Amir
  • Almog, Benyamin
  • Bergida, Shlomi

Abstract

An electromagnetic (EM) probe for monitoring one or more biological tissues. The EM probe comprises a cup shaped cavity having an opening and an interior volume, a circumferential flange formed substantially around the cup shaped cavity, in proximity to the opening, at least one layer of a material, for absorbing electromagnetic radiation, applied over at least one of a portion of the circumferential flange and a portion of the outer surface of the cup shaped cavity, and at least one EM radiation element which performs at least one of emitting and capturing EM radiation via the interior volume.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/0507 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves using microwaves or terahertz waves

3.

ELECTROMAGNETIC (EM) PROBES, METHODS OF USING SUCH EM PROBES AND SYSTEMS WHICH USE SUCH ELECTROMAGNETIC EM PROBES

      
Application Number 18973189
Status Pending
Filing Date 2024-12-09
First Publication Date 2025-03-27
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Saroka, Amir
  • Voshin, Leonid
  • Barash, Yiftach
  • Almog, Benyamin
  • Levi, Tal

Abstract

An electromagnetic (EM) probe for monitoring at least one biological tissue. The EM probe comprises a spiral antenna conductor (not shown) and an EM radiation absorbing layer (92) mounted along the antenna. The EM radiation absorbing layer has a plurality of substantially concentric frame shaped regions (93A-C) corresponding to portions of said spiral antenna having equal surface of antenna conductor, any of said plurality of concentric frame shaped regions has an EM radiation absorption coefficient different than any other of said neighboring concentric frame shaped regions.

IPC Classes  ?

  • A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves
  • A61B 5/0507 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves using microwaves or terahertz waves
  • H01Q 1/36 - Structural form of radiating elements, e.g. cone, spiral, umbrella
  • H01Q 9/27 - Spiral antennas
  • H01Q 17/00 - Devices for absorbing waves radiated from an antenna Combinations of such devices with active antenna elements or systems

4.

THORACIC GARMENT OF POSITIONING ELECTROMAGNETIC (EM) TRANSDUCERS AND METHODS OF USING SUCH THORACIC GARMENT

      
Application Number 18921118
Status Pending
Filing Date 2024-10-21
First Publication Date 2025-02-06
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Saroka, Amir
  • Voshin, Leonid
  • Bar-Or, Jonathan
  • Levi, Tal
  • Karp, Ofer
  • Barash, Yiftach
  • Mizrahi, Nadav
  • Rappaport, Dan
  • Bergida, Shlomi
  • Bahat, Jonathan

Abstract

A garment for bringing an EM transducer to contact with a thoracic skin surface area of a wearer is disclosed. The garment comprises a thoracic garment having a EM transducer placement portion and a pressure applying element associated with the EM transducer placement portion for applying a pressure on an EM transducer secured in an associated the EM transducer placement portion when the thoracic garment is worn by a wearer so that the EM transducer applies a respective pressure on a thoracic skin surface area of the wearer.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/0507 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves using microwaves or terahertz waves
  • A61B 5/053 - Measuring electrical impedance or conductance of a portion of the body

5.

METHOD, SYSTEM AND APPARATUS FOR USING ELECTROMAGNETIC RADIATION FOR MONITORING A TISSUE OF A USER

      
Application Number 18800178
Status Pending
Filing Date 2024-08-12
First Publication Date 2024-12-05
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Saroka, Amir
  • Bergida, Shlomi
  • Mizrahi, Nadav
  • Rappaport, Dan
  • Ronen, Amir
  • Almog, Benyamin

Abstract

A wearable monitoring apparatus for monitoring at least one biological parameter of an internal tissue of an ambulatory user. Said wearable monitoring apparatus comprises at least one transducer configured for delivering electromagnetic (EM) radiation to said internal tissue and intercepting a reflection of said EM radiation said reform in a plurality of transmission sessions during at least 24 hours, a processing unit configured for analyzing respective said reflection and identifying a change in said at least one biological parameter accordingly, a reporting unit configured for generating a report according to said change, and a housing for containing said at least one transducer, said reporting unit, and said processing unit, said housing being configured for being disposed on said body of said ambulatory user.

IPC Classes  ?

  • A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons

6.

Method and system for monitoring thoracic tissue fluid

      
Application Number 18619479
Grant Number 12303245
Status In Force
Filing Date 2024-03-28
First Publication Date 2024-07-18
Grant Date 2025-05-20
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Rappaport, Dan
  • Mizrahi, Nadav
  • Bergida, Shlomi
  • Saroka, Amir
  • Ronen, Amir
  • Kochba, Ilan

Abstract

A method for monitoring thoracic tissue. The method comprises intercepting reflections of electromagnetic (EM) radiation reflected from thoracic tissue of a patient in radiation sessions during a period of at least 24 hours, detecting a change of a dielectric coefficient of the thoracic tissue by analyzing respective the reflections, and outputting a notification indicating the change. The reflections are changed as an outcome of thoracic movements which occur during the period.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves

7.

Electromagnetic (EM) probes, methods of using such EM probes and systems which use such electromagnetic EM probes

      
Application Number 18228019
Grant Number 12161453
Status In Force
Filing Date 2023-07-31
First Publication Date 2023-11-30
Grant Date 2024-12-10
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Saroka, Amir
  • Voshin, Leonid
  • Barash, Yiftach
  • Almog, Benyamin
  • Levi, Tal

Abstract

An electromagnetic (EM) probe for monitoring at least one biological tissue. The EM probe comprises a spiral antenna conductor (not shown) and an EM radiation absorbing layer (92) mounted along the antenna. The EM radiation absorbing layer has a plurality of substantially concentric frame shaped regions (93A-C) corresponding to portions of said spiral antenna having equal surface of antenna conductor, any of said plurality of concentric frame shaped regions has an EM radiation absorption coefficient different than any other of said neighboring concentric frame shaped regions.

IPC Classes  ?

  • A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves
  • A61B 5/0507 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves using microwaves or terahertz waves
  • H01Q 1/36 - Structural form of radiating elements, e.g. cone, spiral, umbrella
  • H01Q 9/27 - Spiral antennas
  • H01Q 17/00 - Devices for absorbing waves radiated from an antenna Combinations of such devices with active antenna elements or systems

8.

Method of producing an electromagnetic (EM) probe

      
Application Number 18217637
Grant Number 12207900
Status In Force
Filing Date 2023-07-03
First Publication Date 2023-10-26
Grant Date 2025-01-28
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Saroka, Amir
  • Almog, Benyamin
  • Bergida, Shlomi

Abstract

An electromagnetic (EM) probe for monitoring one or more biological tissues. The EM probe comprises a cup shaped cavity having an opening and an interior volume, a circumferential flange formed substantially around the cup shaped cavity, in proximity to the opening, at least one layer of a material, for absorbing electromagnetic radiation, applied over at least one of a portion of the circumferential flange and a portion of the outer surface of the cup shaped cavity, and at least one EM radiation element which performs at least one of emitting and capturing EM radiation via the interior volume.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/0507 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves using microwaves or terahertz waves

9.

METHODS AND SYSTEMS FOR MONITORING INTRABODY TISSUES

      
Application Number 18195981
Status Pending
Filing Date 2023-05-11
First Publication Date 2023-09-07
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Kochba, Ilan
  • Rappaport, Dan
  • Saroka, Amir
  • Bergida, Shlomi
  • Mizrahi, Nadav
  • Ronen, Amir

Abstract

A method for monitoring an intrabody region of a patient. The method comprises intercepting electromagnetic (EM) radiation from the intrabody region in a plurality of EM radiation sessions during a period of at least 6 hours, calculating a dielectric related change of the intrabody region by analyzing respective the intercepted EM radiation, detecting a physiological pattern according to said dielectric related change and outputting a notification indicating the physiological pattern.

IPC Classes  ?

  • A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/0507 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves using microwaves or terahertz waves

10.

Method and system for monitoring thoracic tissue fluid

      
Application Number 18102791
Grant Number 11944419
Status In Force
Filing Date 2023-01-30
First Publication Date 2023-06-08
Grant Date 2024-04-02
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Rappaport, Dan
  • Mizrahi, Nadav
  • Bergida, Shlomi
  • Saroka, Amir
  • Ronen, Amir
  • Kochba, Ilan

Abstract

A method for monitoring thoracic tissue. The method comprises intercepting reflections of electromagnetic (EM) radiation reflected from thoracic tissue of a patient in radiation sessions during a period of at least 24 hours, detecting a change of a dielectric coefficient of the thoracic tissue by analyzing respective the reflections, and outputting a notification indicating the change. The reflections are changed as an outcome of thoracic movements which occur during the period.

IPC Classes  ?

  • A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons

11.

ADHESIVE PATCHES FOR THE ATTACHMENT OF RADIOFREQUENCY (RF) ELECTROMAGNETIC (EM) CUP-SHAPED PROBE WITH RADIATION ABSORBING MATERIAL

      
Application Number 17687761
Status Pending
Filing Date 2022-03-07
First Publication Date 2022-07-28
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Saroka, Amir
  • Bergida, Shlomi

Abstract

An adhesive patch for attaching at least one EM probe to a subject's body, the adhesive patch comprising a planar member having at least one layer of radiation absorbing material and having at least one opening formed within the radiation absorbing material to allow the propagation of EM radiation via the opening from one side of the planar member to the other. The adhesive patch further comprises at least one layer of an adhesive attached over at least part of a bottom surface of the planar member, which adhesive layer may be applied so as to form a pattern on the bottom surface, the pattern comprising at least one adhesive-covered portion and at least one adhesive-free portion.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/0507 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves using microwaves or terahertz waves
  • A61B 5/24 - Detecting, measuring or recording bioelectric or biomagnetic signals of the body or parts thereof
  • A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves

12.

SYSTEMS AND METHODS FOR ALIGNMENT OF SENSORS ACROSS A CHEST OF A TARGET PATIENT

      
Application Number 17612611
Status Pending
Filing Date 2020-05-20
First Publication Date 2022-07-14
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Saroka, Amir
  • Shani, Anat
  • Bergida, Shlomi
  • Mishani, Liran
  • Bergman, Naama
  • Mazri, Arin
  • Mizrahi, Nadav
  • Yelenski, Viki
  • Yulzary, Shay

Abstract

There is provided an apparatus for positioning a front sensor and/or a back sensor across a thorax of a target individual, the apparatus comprising: a back positioning element comprising: a collar sized and shaped for fitting to a shoulder line and base of a back of a neck of the target individual, and an elongated element having a first end region connected to the collar, and a second end region with a location marker set to correspond to a target anatomical feature of the spine of the target individual, wherein when in use, the elongated element is positioned parallel to and over a long axis of a spine on the back of the target individual, and at least one front sensor and at least one back sensor are positioned on the thorax of the patient relative to the back positioning element for transmitting to and/or sensing from the target region.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons

13.

Method of producing an electromagnetic (EM) probe

      
Application Number 17693460
Grant Number 11690515
Status In Force
Filing Date 2022-03-14
First Publication Date 2022-06-23
Grant Date 2023-07-04
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Saroka, Amir
  • Almog, Benyamin
  • Bergida, Shiomi

Abstract

An electromagnetic (EM) probe for monitoring one or more biological tissues. The EM probe comprises a cup shaped cavity having an opening and an interior volume, a circumferential flange formed substantially around the cup shaped cavity, in proximity to the opening, at least one layer of a material, for absorbing electromagnetic radiation, applied over at least one of a portion of the circumferential flange and a portion of the outer surface of the cup shaped cavity, and at least one EM radiation element which performs at least one of emitting and capturing EM radiation via the interior volume.

IPC Classes  ?

  • H01P 11/00 - Apparatus or processes specially adapted for manufacturing waveguides or resonators, lines, or other devices of the waveguide type
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/0507 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves using microwaves or terahertz waves

14.

Thoracic garment of positioning electromagnetic (EM) transducers and methods of using such thoracic garment

      
Application Number 17579624
Grant Number 12121365
Status In Force
Filing Date 2022-01-20
First Publication Date 2022-05-12
Grant Date 2024-10-22
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Saroka, Amir
  • Voshin, Leonid
  • Bar-Or, Jonathan
  • Levi, Tal
  • Karp, Ofer
  • Barash, Yiftach
  • Mizrahi, Nadav
  • Rappaport, Dan
  • Bergida, Shlomi
  • Bahat, Jonathan

Abstract

A garment for bringing an EM transducer to contact with a thoracic skin surface area of a wearer is disclosed. The garment comprises a thoracic garment having a EM transducer placement portion and a pressure applying element associated with the EM transducer placement portion for applying a pressure on an EM transducer secured in an associated the EM transducer placement portion when the thoracic garment is worn by a wearer so that the EM transducer applies a respective pressure on a thoracic skin surface area of the wearer.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/0507 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves using microwaves or terahertz waves
  • A61B 5/053 - Measuring electrical impedance or conductance of a portion of the body

15.

METHOD AND SYSTEM FOR USING DISTRIBUTED ELECTROMAGNETIC (EM) TISSUE(S) MONITORING

      
Application Number 17558632
Status Pending
Filing Date 2021-12-22
First Publication Date 2022-04-14
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Bergida, Shlomi
  • Saroka, Amir
  • Rappaport, Dan
  • Hai, Nahum

Abstract

A system for monitoring at least one biological tissue of a patient during a period of at least 24 hours. The system comprises an implantable intrabody probe and an extrabody probe which propagate an electromagnetic (EM) signal, using an antenna, via at least one tissue therebetween, in a plurality of sessions during a period of at least 24 hours, a processing unit which analyses the EM signal to detect a change in at least one biological parameter of the at least one tissue, and an output unit which outputs the change.

IPC Classes  ?

  • A61B 5/0507 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves using microwaves or terahertz waves
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons

16.

Electromagnetic (EM) probes, methods of using such EM probes and systems which use such electromagnetic EM probes

      
Application Number 17156718
Grant Number 11712169
Status In Force
Filing Date 2021-01-25
First Publication Date 2021-05-13
Grant Date 2023-08-01
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Saroka, Amir
  • Voshin, Leonid
  • Barash, Yiftach
  • Almog, Benyamin
  • Levi, Tal

Abstract

An electromagnetic (EM) probe for monitoring at least one biological tissue. The EM probe comprises a spiral antenna conductor (not shown) and an EM radiation absorbing layer (92) mounted along the antenna. The EM radiation absorbing layer has a plurality of substantially concentric frame shaped regions (93A-C) corresponding to portions of said spiral antenna having equal surface of antenna conductor, any of said plurality of concentric frame shaped regions has an EM radiation absorption coefficient different than any other of said neighboring concentric frame shaped regions.

IPC Classes  ?

  • A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves
  • A61B 5/0507 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves using microwaves or terahertz waves
  • H01Q 9/27 - Spiral antennas
  • H01Q 1/36 - Structural form of radiating elements, e.g. cone, spiral, umbrella
  • H01Q 17/00 - Devices for absorbing waves radiated from an antenna Combinations of such devices with active antenna elements or systems

17.

Method, system and apparatus for using electromagnetic radiation for monitoring a tissue of a user

      
Application Number 17007005
Grant Number 12059238
Status In Force
Filing Date 2020-08-31
First Publication Date 2020-12-24
Grant Date 2024-08-13
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Saroka, Amir
  • Bergida, Shlomi
  • Mizrahi, Nadav
  • Rappaport, Dan
  • Ronen, Amir
  • Almog, Benyamin

Abstract

A wearable monitoring apparatus for monitoring at least one biological parameter of an internal tissue of an ambulatory user. Said wearable monitoring apparatus comprises at least one transducer configured for delivering electromagnetic (EM) radiation to said internal tissue and intercepting a reflection of said EM radiation said reform in a plurality of transmission sessions during at least 24 hours, a processing unit configured for analyzing respective said reflection and identifying a change in said at least one biological parameter accordingly, a reporting unit configured for generating a report according to said change, and a housing for containing said at least one transducer, said reporting unit, and said processing unit, said housing being configured for being disposed on said body of said ambulatory user.

IPC Classes  ?

  • A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons

18.

SYSTEMS AND METHODS FOR ALIGNMENT OF SENSORS ACROSS A CHEST OF A TARGET PATIENT

      
Application Number IL2020050551
Publication Number 2020/234878
Status In Force
Filing Date 2020-05-20
Publication Date 2020-11-26
Owner SENSIBLE MEDICAL INNOVATIONS LTD. (Israel)
Inventor
  • Saroka, Amir
  • Shani, Anat
  • Bergida, Shlomi
  • Mishani, Liran
  • Bergman, Naama
  • Mazri, Arin
  • Mizrahi, Nadav
  • Yelenski, Viki
  • Yulzary, Shay

Abstract

There is provided an apparatus for positioning a front sensor and/or a back sensor across a thorax of a target individual, the apparatus comprising: a back positioning element comprising: a collar sized and shaped for fitting to a shoulder line and base of a back of a neck of the target individual, and an elongated element having a first end region connected to the collar, and a second end region with a location marker set to correspond to a target anatomical feature of the spine of the target individual, wherein when in use, the elongated element is positioned parallel to and over a long axis of a spine on the back of the target individual, and at least one front sensor and at least one back sensor are positioned on the thorax of the patient relative to the back positioning element for transmitting to and/or sensing from the target region.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/08 - Measuring devices for evaluating the respiratory organs

19.

Method and system for radiofrequency (RF) tissue(s) monitoring

      
Application Number 16609750
Grant Number 11122987
Status In Force
Filing Date 2017-12-21
First Publication Date 2020-10-01
Grant Date 2021-09-21
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Barash, Yiftach
  • Saroka, Amir
  • Bergida, Shlomi
  • Mizrahi, Nadav

Abstract

There is provided a system, comprising: internal probe(s) for transmitting and/or receiving an RF signal, the internal probe(s) set to be mounted on an elongated guiding element set for insertion via the pharynx into a tract of a patient, the internal probe(s) and elongated guiding element are configured to be directly inserted into the tract independently of another guiding device; external probe(s) which is set to be positioned in a location outside the body for transmitting and/or receiving an RF signal; a processing unit configured to analyze an RF signal transmitted between transducer(s) of the internal probe(s) and transducer(s) of the external probe(s), propagating via tissue(s) of the patient between walls of the tract and a skin layer of the patient, to estimate at least one dielectric property of the tissue(s); wherein the RF signals are unsuitable for generating anatomical images of the tissue(s).

IPC Classes  ?

  • A61B 5/053 - Measuring electrical impedance or conductance of a portion of the body
  • A61B 5/0538 - Measuring electrical impedance or conductance of a portion of the body invasively, e.g. using a catheter
  • A61B 5/06 - Devices, other than using radiation, for detecting or locating foreign bodies
  • A61B 5/08 - Measuring devices for evaluating the respiratory organs
  • A61B 5/087 - Measuring breath flow
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons

20.

Methods and devices of cardiac tissue monitoring and analysis

      
Application Number 16888921
Grant Number 11529065
Status In Force
Filing Date 2020-06-01
First Publication Date 2020-09-17
Grant Date 2022-12-20
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Rappaport, Dan
  • Saroka, Amir
  • Bergida, Shlomi
  • Kochba, Ilan
  • Mizrahi, Nadav

Abstract

A method for monitoring at least one cardiac tissue. The method comprises a) intercepting a plurality of reflections of an electromagnetic (EM) radiation reflected from at least one cardiac tissue of a patient in a plurality of EM radiation sessions, b) computing a mechanical tracing indicative of at least one mechanical property of said at least one cardiac tissue according to said plurality of reflections, c) analyzing said mechanical tracing so as to detect a presence or an absence of a physiological condition, and d) outputting said analysis.

IPC Classes  ?

  • A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves
  • A61B 5/0507 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves using microwaves or terahertz waves
  • A61B 5/25 - Bioelectric electrodes therefor
  • A61B 5/366 - Detecting abnormal QRS complex, e.g. widening

21.

Controlling electromagnetic (EM) transmission based on pressure parameters

      
Application Number 16840639
Grant Number 11529051
Status In Force
Filing Date 2020-04-06
First Publication Date 2020-07-23
Grant Date 2022-12-20
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Mizrahi, Nadav
  • Rappaport, Dan
  • Saroka, Amir
  • Kalisman, Oren
  • Barash, Yiftach
  • Levi, Tal
  • Adler, Yaron

Abstract

A method of controlling an analysis of electromagnetic (EM) signal of a human subject. The method comprises positioning an EM transducer unit in front of a skin area above a target intrabody volume of a human subject, the EM transducer unit having at least one EM transducer, a pressure applying unit that applies a variable pressure on the skin area, and a pressure sensor, measuring at least one pressure parameter indicative of the variable pressure using the pressure sensor, capturing EM signal using the at least one EM transducer, and performing an analysis of the EM signal to infer at least one intrabody parameter of the target intrabody volume. The analysis is controlled according to the at least one pressure parameter.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/0507 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves using microwaves or terahertz waves
  • A61B 5/02 - Detecting, measuring or recording for evaluating the cardiovascular system, e.g. pulse, heart rate, blood pressure or blood flow
  • A61B 5/08 - Measuring devices for evaluating the respiratory organs
  • A61B 5/0537 - Measuring body composition by impedance, e.g. tissue hydration or fat content
  • A61B 5/113 - Measuring movement of the entire body or parts thereof, e.g. head or hand tremor or mobility of a limb occurring during breathing

22.

Method and system for monitoring thoracic tissue fluid

      
Application Number 16792357
Grant Number 11564586
Status In Force
Filing Date 2020-02-17
First Publication Date 2020-06-11
Grant Date 2023-01-31
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Rappaport, Dan
  • Mizrahi, Nadav
  • Bergida, Shiomi
  • Saroka, Amir
  • Ronen, Amir
  • Kochba, Ilan

Abstract

A method for monitoring thoracic tissue. The method comprises intercepting reflections of electromagnetic (EM) radiation reflected from thoracic tissue of a patient in radiation sessions during a period of at least 24 hours, detecting a change of a dielectric coefficient of the thoracic tissue by analyzing respective the reflections, and outputting a notification indicating the change. The reflections are changed as an outcome of thoracic movements which occur during the period.

IPC Classes  ?

  • A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons

23.

Method of producing an electromagnetic (EM) probe

      
Application Number 16734530
Grant Number 11278204
Status In Force
Filing Date 2020-01-06
First Publication Date 2020-05-07
Grant Date 2022-03-22
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Saroka, Amir
  • Almog, Benyamin
  • Bergida, Shlomi

Abstract

An electromagnetic (EM) probe for monitoring one or more biological tissues. The EM probe comprises a cup shaped cavity having an opening and an interior volume, a circumferential flange formed substantially around the cup shaped cavity, in proximity to the opening, at least one layer of a material, for absorbing electromagnetic radiation, applied over at least one of a portion of the circumferential flange and a portion of the outer surface of the cup shaped cavity, and at least one EM radiation element which performs at least one of emitting and capturing EM radiation via the interior volume.

IPC Classes  ?

  • H01P 11/00 - Apparatus or processes specially adapted for manufacturing waveguides or resonators, lines, or other devices of the waveguide type
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/0507 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves using microwaves or terahertz waves

24.

Impedance measurement

      
Application Number 16301750
Grant Number 11529068
Status In Force
Filing Date 2017-05-15
First Publication Date 2019-11-07
Grant Date 2022-12-20
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Ronen, Amir
  • Bergida, Shlomi

Abstract

A system comprising a plurality of electrodes adapted to measure bio impedance measurements using electrical currents passing in a target thorax area of a target therebetween during a learning phase, at least one radiofrequency (RF) sensor adapted to measure RF interaction measurements of RF radiation interacting with the target thorax area during the learning phase, and at least one processor adapted to: calculate calibration function according to the bio impedance measurements and the RF interaction measurements, and determine a target thorax area value by adjusting subsequent bio impedance measurements using subsequent electrical currents passing in the target thorax area during an operational learning phase using the calibration function.

IPC Classes  ?

  • A61B 5/085 - Measuring impedance of respiratory organs or lung elasticity
  • A61B 5/0538 - Measuring electrical impedance or conductance of a portion of the body invasively, e.g. using a catheter
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons

25.

Thoracic garment of positioning electromagnetic (EM) transducers and methods of using such thoracic garment

      
Application Number 16429191
Grant Number 11229401
Status In Force
Filing Date 2019-06-03
First Publication Date 2019-09-19
Grant Date 2022-01-25
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Saroka, Amir
  • Voshin, Leonid
  • Bar-Or, Jonathan
  • Levi, Tal
  • Karp, Ofer
  • Barash, Yiftach
  • Mizrahi, Nadav
  • Rappaport, Dan
  • Bergida, Shiomi
  • Bahat, Jonathan

Abstract

A garment for bringing an EM transducer to contact with a thoracic skin surface area of a wearer is disclosed. The garment comprises a thoracic garment having a EM transducer placement portion and a pressure applying element associated with the EM transducer placement portion for applying a pressure on an EM transducer secured in an associated the EM transducer placement portion when the thoracic garment is worn by a wearer so that the EM transducer applies a respective pressure on a thoracic skin surface area of the wearer.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/0507 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves using microwaves or terahertz waves
  • A61B 5/053 - Measuring electrical impedance or conductance of a portion of the body

26.

Electromagnetic (EM) probes, methods of using such EM probes and systems which use such electromagnetic EM probes

      
Application Number 16355946
Grant Number 10898102
Status In Force
Filing Date 2019-03-18
First Publication Date 2019-07-11
Grant Date 2021-01-26
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Saroka, Amir
  • Voshin, Leonid
  • Barash, Yiftach
  • Almog, Benyamin
  • Levi, Tal

Abstract

An electromagnetic (EM) probe for monitoring at least one biological tissue. The EM probe comprises a spiral antenna conductor (not shown) and an EM radiation absorbing layer (92) mounted along the antenna. The EM radiation absorbing layer has a plurality of substantially concentric frame shaped regions (93A-C) corresponding to portions of said spiral antenna having equal surface of antenna conductor, any of said plurality of concentric frame shaped regions has an EM radiation absorption coefficient different than any other of said neighboring concentric frame shaped regions.

IPC Classes  ?

  • A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves
  • H01Q 9/27 - Spiral antennas
  • H01Q 1/36 - Structural form of radiating elements, e.g. cone, spiral, umbrella
  • H01Q 17/00 - Devices for absorbing waves radiated from an antenna Combinations of such devices with active antenna elements or systems

27.

Deriving individual thoracic parameters of a subject

      
Application Number 16004514
Grant Number 11103151
Status In Force
Filing Date 2018-06-11
First Publication Date 2018-10-11
Grant Date 2021-08-31
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Rappaport, Dan
  • Horesh, Nizan
  • Hay, Ori
  • Saroka, Amir
  • Reisfeld, Daniel
  • Kalisman, Oren
  • Bergida, Shlomi
  • Barash, Yiftach

Abstract

A method of deriving one or more individual thoracic parameters of a subject. The method comprises instructing a subject to perform a thoracic volume manipulation, receiving a plurality of measurements of a plurality of EM signals from a thoracic intrabody area of lungs of the subject during the thoracic volume manipulation, deriving a plurality of thoracic volume values at a plurality of different intervals during the thoracic volume manipulation so that each the thoracic volume value correspond with another of a plurality of estimated thoracic volumes achieved during the thoracic volume manipulation, and calculating at least one individual thoracic parameter of the subject by combining between the plurality of measurements and the plurality of thoracic volume values.

IPC Classes  ?

  • A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves
  • A61B 5/08 - Measuring devices for evaluating the respiratory organs
  • A61B 5/087 - Measuring breath flow
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/091 - Measuring volume of inspired or expired gases, e.g. to determine lung capacity

28.

METHOD AND SYSTEM FOR RADIOFREQUENCY (RF) TISSUE(S) MONITORING

      
Application Number IL2017051375
Publication Number 2018/122837
Status In Force
Filing Date 2017-12-21
Publication Date 2018-07-05
Owner SENSIBLE MEDICAL INNOVATIONS LTD. (Israel)
Inventor
  • Barash, Yiftach
  • Saroka, Amir
  • Bergida, Shlomi
  • Mizrahi, Nadav

Abstract

There is provided a system, comprising: internal probe(s) for transmitting and/or receiving an RF signal, the internal probe(s) set to be mounted on an elongated guiding element set for insertion via the pharynx into a tract of a patient, the internal probe(s) and elongated guiding element are configured to be directly inserted into the tract independently of another guiding device; external probe(s) which is set to be positioned in a location outside the body for transmitting and/or receiving an RF signal; a processing unit configured to analyze an RF signal transmitted between transducer(s) of the internal probe(s) and transducer(s) of the external probe(s), propagating via tissue(s) of the patient between walls of the tract and a skin layer of the patient, to estimate at least one dielectric property of the tissue(s); wherein the RF signals are unsuitable for generating anatomical images of the tissue(s).

IPC Classes  ?

  • A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves
  • A61B 5/08 - Measuring devices for evaluating the respiratory organs
  • A61B 5/042 - Electrodes specially adapted therefor for introducing into the body

29.

IMPEDANCE MEASUREMENT

      
Application Number IL2017050540
Publication Number 2017/199243
Status In Force
Filing Date 2017-05-15
Publication Date 2017-11-23
Owner SENSIBLE MEDICAL INNOVATIONS LTD. (Israel)
Inventor
  • Ronen, Amir
  • Bergida, Shlomi

Abstract

A system comprising a plurality of electrodes adapted to measure bio impedance measurements using electrical currents passing in a target thorax area of a target therebetween during a learning phase, at least one radiofrequency (RF) sensor adapted to measure RF interaction measurements of RF radiation interacting with the target thorax area during the learning phase, and at least one processor adapted to: calculate calibration function according to the bio impedance measurements and the RF interaction measurements, and determine a target thorax area value by adjusting subsequent bio impedance measurements using subsequent electrical currents passing in the target thorax area during an operational learning phase using the calibration function.

IPC Classes  ?

  • A61B 5/053 - Measuring electrical impedance or conductance of a portion of the body

30.

Method of producing an electromagnetic (EM) probe

      
Application Number 15619723
Grant Number 10524662
Status In Force
Filing Date 2017-06-12
First Publication Date 2017-09-28
Grant Date 2020-01-07
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Saroka, Amir M.
  • Almog, Benyamin
  • Bergida, Shlomi

Abstract

An electromagnetic (EM) probe for monitoring one or more biological tissues. The EM probe comprises a cup shaped cavity having an opening and an interior volume, a circumferential flange formed substantially around the cup shaped cavity, in proximity to the opening, at least one layer of a material, for absorbing electromagnetic radiation, applied over at least one of a portion of the circumferential flange and a portion of the outer surface of the cup shaped cavity, and at least one EM radiation element which performs at least one of emitting and capturing EM radiation via the interior volume.

IPC Classes  ?

  • H01Q 13/00 - Waveguide horns or mouths Slot antennas Leaky-waveguide antennas Equivalent structures causing radiation along the transmission path of a guided wave
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves

31.

Methods and systems for monitoring intrabody tissues

      
Application Number 15436902
Grant Number 10506943
Status In Force
Filing Date 2017-02-20
First Publication Date 2017-06-08
Grant Date 2019-12-17
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Kochba, Ilan
  • Rappaport, Dan
  • Saroka, Amir
  • Bergida, Shlomi
  • Mizrahi, Nadav
  • Ronen, Amir

Abstract

A method for monitoring an intrabody region of a patient. The method comprises intercepting electromagnetic (EM) radiation from the intrabody region in a plurality of EM radiation sessions during a period of at least 6 hours, calculating a dielectric related change of the intrabody region by analyzing respective the intercepted EM radiation, detecting a physiological pattern according to said dielectric related change and outputting a notification indicating the physiological pattern.

IPC Classes  ?

  • A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/021 - Measuring pressure in heart or blood vessels
  • A61B 5/024 - Measuring pulse rate or heart rate

32.

Controlling electromagnetic (EM) transmission based on pressure parameters

      
Application Number 14901161
Grant Number 10610100
Status In Force
Filing Date 2013-06-26
First Publication Date 2016-06-02
Grant Date 2020-04-07
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Mizrahi, Nadav
  • Rappaport, Dan
  • Saroka, Amir
  • Kalisman, Oren
  • Barash, Yiftach
  • Levi, Tal
  • Adler, Yaron

Abstract

A method of controlling an analysis of electromagnetic (EM) signal of a human subject. The method comprises positioning an EM transducer unit in front of a skin area above a target intrabody volume of a human subject, the EM transducer unit having at least one EM transducer, a pressure applying unit that applies a variable pressure on the skin area, and a pressure sensor, measuring at least one pressure parameter indicative of the variable pressure using the pressure sensor, capturing EM signal using the at least one EM transducer, and performing an analysis of the EM signal to infer at least one intrabody parameter of the target intrabody volume. The analysis is controlled according to the at least one pressure parameter.

IPC Classes  ?

  • A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/02 - Detecting, measuring or recording for evaluating the cardiovascular system, e.g. pulse, heart rate, blood pressure or blood flow
  • A61B 5/08 - Measuring devices for evaluating the respiratory organs
  • A61B 5/053 - Measuring electrical impedance or conductance of a portion of the body
  • A61B 5/113 - Measuring movement of the entire body or parts thereof, e.g. head or hand tremor or mobility of a limb occurring during breathing

33.

Adhesive patches for the attachment of radiofrequency (RF) electromagnetic (EM) cup-shaped probe with radiation absorbing material

      
Application Number 14398525
Grant Number 11266350
Status In Force
Filing Date 2013-05-02
First Publication Date 2015-05-14
Grant Date 2022-03-08
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Saroka, Amir
  • Bergida, Shlomi

Abstract

An adhesive patch for attaching at least one EM probe to a subject's body, the adhesive patch comprising a planar member having at least one layer of radiation absorbing material and having at least one opening formed within the radiation absorbing material to allow the propagation of EM radiation via the opening from one side of the planar member to the other. The adhesive patch further comprises at least one layer of an adhesive attached over at least part of a bottom surface of the planar member, which adhesive layer may be applied so as to form a pattern on the bottom surface, the pattern comprising at least one adhesive-covered portion and at least one adhesive-free portion.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/0507 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves using microwaves or terahertz waves
  • A61B 5/24 - Detecting, measuring or recording bioelectric or biomagnetic signals of the body or parts thereof
  • A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves

34.

Adjustable thoracic garments useable by patients having different thoracic dimensions for locating EM transducer(s) in proximity to predefined thoracic anatomic features

      
Application Number 14379308
Grant Number 09339228
Status In Force
Filing Date 2013-12-18
First Publication Date 2015-01-29
Grant Date 2016-05-17
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Saroka, Amir
  • Voshin, Leonid
  • Karp, Ofer
  • Bergida, Shlomi

Abstract

A thoracic garment for bringing an EM transducer to contact with a thoracic surface area of a wearer. The thoracic garment comprises a front thoracic garment piece and a back thoracic garment piece the front and/or back thoracic garment pieces having EM transducer(s), the front thoracic garment piece having an arrangement of passages formed therein or thereon, a handhold mechanically connected to the front thoracic garment piece, a positioning marker, and a plurality of straps each threaded in the arrangement of passages. The thoracic garment is configured to be adapted by the wearer which uses a first hand to hold the handhold for mounting the front thoracic garment piece against or close to the chest such that the positioning marker is positioned at the predefined position while using a second hand for pulling the straps.

IPC Classes  ?

  • A61B 5/103 - Measuring devices for testing the shape, pattern, size or movement of the body or parts thereof, for diagnostic purposes
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves
  • A61B 5/053 - Measuring electrical impedance or conductance of a portion of the body
  • A61B 5/01 - Measuring temperature of body parts
  • A61B 5/08 - Measuring devices for evaluating the respiratory organs

35.

Deriving individual thoracic parameters of a subject

      
Application Number 14374241
Grant Number 09993174
Status In Force
Filing Date 2013-01-29
First Publication Date 2015-01-29
Grant Date 2018-06-12
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Rappaport, Dan
  • Horesh, Nizan
  • Hay, Ori
  • Saroka, Amir
  • Reisfeld, Daniel
  • Kalisman, Oren
  • Bergida, Shlomi
  • Barash, Yiftach

Abstract

A method of deriving one or more individual thoracic parameters of a subject. The method comprises instructing a subject to perform a thoracic volume manipulation, receiving a plurality of measurements of a plurality of EM signals from a thoracic intrabody area of lungs of the subject during the thoracic volume manipulation, deriving a plurality of thoracic volume values at a plurality of different intervals during the thoracic volume manipulation so that each the thoracic volume value correspond with another of a plurality of estimated thoracic volumes achieved during the thoracic volume manipulation, and calculating at least one individual thoracic parameter of the subject by combining between the plurality of measurements and the plurality of thoracic volume values.

IPC Classes  ?

  • A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves
  • A61B 5/08 - Measuring devices for evaluating the respiratory organs
  • A61B 5/087 - Measuring breath flow
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/091 - Measuring volume of inspired or expired gases, e.g. to determine lung capacity

36.

CONTROLLING ELECTROMAGNETIC (EM) TRANSMISSION BASED ON PRESSURE PARAMETERS

      
Application Number IL2013050544
Publication Number 2014/207733
Status In Force
Filing Date 2013-06-26
Publication Date 2014-12-31
Owner SENSIBLE MEDICAL INNOVATIONS LTD. (Israel)
Inventor
  • Mizrahi, Nadav
  • Rappaport, Dan
  • Saroka, Amir
  • Kalisman, Oren
  • Barash, Yiftach
  • Levi, Tal
  • Adler, Yaron

Abstract

A method of controlling an analysis of electromagnetic (EM) signal of a human subject. The method comprises positioning an EM transducer unit in front of a skin area above a target intrabody volume of a human subject, the EM transducer unit having at least one EM transducer, a pressure applying unit that applies a variable pressure on the skin area, and a pressure sensor, measuring at least one pressure parameter indicative of the variable pressure using the pressure sensor, capturing EM signal using the at least one EM transducer, and performing an analysis of the EM signal to infer at least one intrabody parameter of the target intrabody volume. The analysis is controlled according to the at least one pressure parameter.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 18/18 - Surgical instruments, devices or methods for transferring non-mechanical forms of energy to or from the body by applying electromagnetic radiation, e.g. microwaves
  • A61B 5/103 - Measuring devices for testing the shape, pattern, size or movement of the body or parts thereof, for diagnostic purposes

37.

Thoracic garment of positioning electromagnetic (EM) transducers and methods of using such thoracic garment

      
Application Number 14366704
Grant Number 10307102
Status In Force
Filing Date 2012-12-20
First Publication Date 2014-12-25
Grant Date 2019-06-04
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Saroka, Amir
  • Voshin, Leonid
  • Bar-Or, Jonathan
  • Levi, Tal
  • Karp, Ofer
  • Barash, Yiftach
  • Mizrahi, Nadav
  • Rappaport, Dan
  • Bergida, Shlomi
  • Bahat, Jonathan

Abstract

A garment for bringing an EM transducer to contact with a thoracic skin surface area of a wearer is disclosed. The garment comprises a thoracic garment having a EM transducer placement portion and a pressure applying element associated with the EM transducer placement portion for applying a pressure on an EM transducer secured in an associated the EM transducer placement portion when the thoracic garment is worn by a wearer so that the EM transducer applies a respective pressure on a thoracic skin surface area of the wearer.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves
  • A61B 5/053 - Measuring electrical impedance or conductance of a portion of the body

38.

Electromagnetic (EM) probes, methods of using such EM probes and systems which use such electromagnetic EM probes

      
Application Number 14370777
Grant Number 10231641
Status In Force
Filing Date 2013-01-03
First Publication Date 2014-12-25
Grant Date 2019-03-19
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Saroka, Amir
  • Voshin, Leonid
  • Barash, Yiftach
  • Almog, Benyamin
  • Levi, Tal

Abstract

An electromagnetic (EM) probe for monitoring at least one biological tissue. The EM probe comprises a spiral antenna conductor (not shown) and an EM radiation absorbing layer (92) mounted along the antenna. The EM radiation absorbing layer has a plurality of substantially concentric frame shaped regions (93A-C) corresponding to portions of said spiral antenna having equal surface of antenna conductor, any of said plurality of concentric frame shaped regions has an EM radiation absorption coefficient different than any other of said neighbouring concentric frame shaped regions.

IPC Classes  ?

  • A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves
  • H01Q 1/36 - Structural form of radiating elements, e.g. cone, spiral, umbrella
  • H01Q 9/27 - Spiral antennas
  • H01Q 17/00 - Devices for absorbing waves radiated from an antenna Combinations of such devices with active antenna elements or systems

39.

ADJUSTABLE THORACIC GARMENTS USEABLE BY PATIENTS HAVING DIFFERENT THORACIC DIMENSIONS FOR LOCATING EM TRANSDUCER(S) IN PROXIMITY TO PREDEFINED THORACIC ANATOMIC FEATURES

      
Application Number IL2013051040
Publication Number 2014/097297
Status In Force
Filing Date 2013-12-18
Publication Date 2014-06-26
Owner SENSIBLE MEDICAL INNOVATIONS LTD. (Israel)
Inventor
  • Saroka, Amir
  • Voshin, Leonid
  • Karp, Ofer
  • Bergida, Shlomi

Abstract

A thoracic garment for bringing an EM transducer to contact with a thoracic surface area of a wearer. The thoracic garment comprises a front thoracic garment piece and a back thoracic garment piece the front and/or back thoracic garment pieces having EM transducer(s), the front thoracic garment piece having an arrangement of passages formed therein or thereon, a handhold mechanically connected to the front thoracic garment piece, a positioning marker, and a plurality of straps each threaded in the arrangement of passages. The thoracic garment is configured to be adapted by the wearer which uses a first hand to hold the handhold for mounting the front thoracic garment piece against or close to the chest such that the positioning marker is positioned at the predefined position while using a second hand for pulling the straps.

IPC Classes  ?

  • A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves

40.

PATCHES FOR THE ATTACHMENT OF ELECTROMAGNETIC (EM) PROBES

      
Application Number IL2013050373
Publication Number 2013/164827
Status In Force
Filing Date 2013-05-02
Publication Date 2013-11-07
Owner SENSIBLE MEDICAL INNOVATIONS LTD. (Israel)
Inventor
  • Saroka, Amir
  • Bergida, Shlomi

Abstract

An adhesive patch for attaching at least one EM probe to a subject's body, the adhesive patch comprising a planar member having at least one layer of radiation absorbing material and having at least one opening formed within the radiation absorbing material to allow the propagation of EM radiation via the opening from one side of the planar member to the other. The adhesive patch further comprises at least one layer of an adhesive attached over at least part of a bottom surface of the planar member, which adhesive layer may be applied so as to form a pattern on the bottom surface, the pattern comprising at least one adhesive-covered portion and at least one adhesive-free portion.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves
  • A61B 5/04 - Measuring bioelectric signals of the body or parts thereof

41.

Electromagnetic probes, methods for fabricating thereof, and systems which use such electromagnetic probes

      
Application Number 13882745
Grant Number 09675251
Status In Force
Filing Date 2011-11-03
First Publication Date 2013-08-29
Grant Date 2017-06-13
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Saroka, Amir
  • Almog, Benyamin
  • Bergida, Shlomi

Abstract

An electromagnetic (EM) probe for monitoring one or more biological tissues. The EM probe comprises a cup shaped cavity having an opening and an interior volume, a circumferential flange formed substantially around the cup shaped cavity, in proximity to the opening, at least one layer of a material, for absorbing electromagnetic radiation, applied over at least one of a portion of the circumferential flange and a portion of the outer surface of the cup shaped cavity, and at least one EM radiation element which performs at least one of emitting and capturing EM radiation via the interior volume.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves

42.

DERIVING INDIVIDUAL THORACIC PARAMETERS OF A SUBJECT

      
Application Number IL2013050078
Publication Number 2013/111141
Status In Force
Filing Date 2013-01-29
Publication Date 2013-08-01
Owner SENSIBLE MEDICAL INNOVATIONS LTD. (Israel)
Inventor
  • Rappaport, Dan
  • Horesh, Nizan
  • Hay, Ori
  • Saroka, Amir
  • Reisfeld, Daniel
  • Kalisman, Oren
  • Bergida, Shlomi
  • Barash, Yiftach

Abstract

A method of deriving one or more individual thoracic parameters of a subject. The method comprises instructing a subject to perform a thoracic volume manipulation, receiving a plurality of measurements of a plurality of EM signals from a thoracic intrabody area of lungs of the subject during the thoracic volume manipulation, deriving a plurality of thoracic volume values at a plurality of different intervals during the thoracic volume manipulation so that each the thoracic volume value correspond with another of a plurality of estimated thoracic volumes achieved during the thoracic volume manipulation, and calculating at least one individual thoracic parameter of the subject by combining between the plurality of measurements and the plurality of thoracic volume values.

IPC Classes  ?

  • A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves
  • A61B 5/08 - Measuring devices for evaluating the respiratory organs
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons

43.

ELECTROMAGNETIC (EM) PROBES, METHODS OF USING SUCH EM PROBES AND SYSTEMS WHICH USE SUCH ELECTROMAGNETIC EM PROBES

      
Application Number IL2013050010
Publication Number 2013/105086
Status In Force
Filing Date 2013-01-03
Publication Date 2013-07-18
Owner SENSIBLE MEDICAL INNOVATIONS LTD. (Israel)
Inventor
  • Saroka, Amir
  • Voshin, Leonid
  • Barash, Yiftach
  • Almog, Benyamin
  • Levi, Tal

Abstract

An electromagnetic (EM) probe for monitoring at least one biological tissue. The EM probe comprises a spiral antenna conductor (not shown) and an EM radiation absorbing layer (92) mounted along the antenna. The EM radiation absorbing layer has a plurality of substantially concentric frame shaped regions (93A-C) corresponding to portions of said spiral antenna having equal surface of antenna conductor, any of said plurality of concentric frame shaped regions has an EM radiation absorption coefficientdifferent than any other of said neighbouring concentric frame shaped regions.

IPC Classes  ?

  • A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves
  • H01Q 1/38 - Structural form of radiating elements, e.g. cone, spiral, umbrella formed by a conductive layer on an insulating support
  • H01Q 9/27 - Spiral antennas
  • H01Q 17/00 - Devices for absorbing waves radiated from an antenna Combinations of such devices with active antenna elements or systems

44.

THORACIC GARMENT OF POSITIONING ELECTROMAGNETIC (EM) TRANSDUCERS AND METHODS OF USING SUCH THORACIC GARMENT

      
Application Number IL2012050545
Publication Number 2013/093923
Status In Force
Filing Date 2012-12-20
Publication Date 2013-06-27
Owner SENSIBLE MEDICAL INNOVATIONS LTD. (Israel)
Inventor
  • Saroka, Amir
  • Voshin, Leonid
  • Bar-Or, Jonathan
  • Levi, Tal
  • Karp, Ofer
  • Barash, Yiftach
  • Mizrahi, Nadav
  • Rappaport, Dan
  • Bergida, Shlomi

Abstract

A garment for bringing an EM transducer to contact with a thoracic skin surface area of a wearer is disclosed. The garment comprises a thoracic garment having a EM transducer placement portion and a pressure applying element associated with the EM transducer placement portion for applying a pressure on an EM transducer secured in an associated the EM transducer placement portion when the thoracic garment is worn by a wearer so that the EM transducer applies a respective pressure on a thoracic skin surface area of the wearer.

IPC Classes  ?

  • A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves

45.

ELECTROMAGNETIC PROBES, METHODS FOR FABRICATION THEREOF, AND SYSTEMS WHICH USE SUCH ELECTROMAGNETIC PROBES

      
Application Number IL2011050003
Publication Number 2012/059929
Status In Force
Filing Date 2011-11-03
Publication Date 2012-05-10
Owner SENSIBLE MEDICAL INNOVATIONS LTD. (Israel)
Inventor
  • Saroka, Amir
  • Almog, Benyamin
  • Bergida, Shlomi

Abstract

An electromagnetic (EM) probe (100) for monitoring one or more biological tissues. The EM probe comprises a cup shaped cavity (103) having an opening (110) and an interior volume (102), a circumferential flange (105) formed substantially around the cup shaped cavity (103), in proximity to the opening (110), at least one layer of a material (104), for absorbing electromagnetic radiation, applied over at least one of a portion of the circumferential flange (105) and a portion of the outer surface of the cup shaped cavity (103), and at least one EM radiation element (101) which performs at least one of emitting and capturing EM radiation via the interior volume (102).

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves
  • H01Q 17/00 - Devices for absorbing waves radiated from an antenna Combinations of such devices with active antenna elements or systems

46.

Methods and systems for monitoring intrabody tissues

      
Application Number 13254852
Grant Number 09572511
Status In Force
Filing Date 2010-03-04
First Publication Date 2011-12-29
Grant Date 2017-02-21
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Kochba, Ilan
  • Rappaport, Dan
  • Saroka, Amir
  • Bergida, Shlomi
  • Mizrahi, Nadav
  • Ronen, Amir

Abstract

A method for monitoring an intrabody region of a patient. The method comprises intercepting electromagnetic (EM) radiation from the intrabody region in a plurality of EM radiation sessions during a period of at least 6 hours, calculating a dielectric related change of the intrabody region by analyzing respective the intercepted EM radiation, detecting a physiological pattern according to said dielectric related change. and outputting a notification indicating the physiological pattern.

IPC Classes  ?

  • A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons

47.

METHOD AND SYSTEM FOR USING DISTRIBUTED ELECTROMAGNETIC (EM) TISSUE(S) MONITORING

      
Application Number IL2011000377
Publication Number 2011/141915
Status In Force
Filing Date 2011-05-12
Publication Date 2011-11-17
Owner SENSIBLE MEDICAL INNOVATIONS LTD. (Israel)
Inventor
  • Bergida, Shlomi
  • Saroka, Amir
  • Rappaport, Dan
  • Hai, Nahum

Abstract

A system for monitoring at least one biological tissue of a patient during a period of at least 24 hours. The system comprises an implantable intrabody probe and an extrabody probe which propagate an electromagnetic (EM) signal, using an antenna, via at least one tissue therebetween, in a plurality of sessions during a period of at least 24 hours, a processing unit which analyses the EM signal to detect a change in at least one biological parameter of the at least one tissue, and an output unit which outputs the change.

IPC Classes  ?

  • A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves

48.

System and method for calibration of measurements of interacted EM signals in real time

      
Application Number 12846861
Grant Number 08907682
Status In Force
Filing Date 2010-07-30
First Publication Date 2011-02-03
Grant Date 2014-12-09
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Saroka, Amir
  • Mizrahi, Nadav
  • Rappaport, Dan
  • Bergida, Shlomi

Abstract

A method of calibrating a measurement of electromagnetic (EM) signals. The method comprises separating at least one reference signal component from an EM signal, delaying at least one of the EM signal and the at least one reference signal component, extracting the EM signal after an interaction with a target object and the at least one reference signal component after at least one interaction with at least one reference element from different time slots in a reception, and calibrating a measurement of the interacted EM signal by a signal analysis of the extracted and interacted at least one reference signal component.

IPC Classes  ?

  • G01R 27/04 - Measuring real or complex resistance, reactance, impedance, or other two-pole characteristics derived therefrom, e.g. time constant in circuits having distributed constants
  • G01R 35/00 - Testing or calibrating of apparatus covered by the other groups of this subclass

49.

Method and system for monitoring thoracic tissue fluid

      
Application Number 12676381
Grant Number 10561336
Status In Force
Filing Date 2008-09-04
First Publication Date 2010-10-07
Grant Date 2020-02-18
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Rappaport, Dan
  • Mizrahi, Nadav
  • Bergida, Shlomi
  • Saroka, Amir
  • Ronen, Amir
  • Kochba, Ilan

Abstract

A method for monitoring thoracic tissue. The method comprises intercepting reflections of electromagnetic (EM) radiation reflected from thoracic tissue of a patient in radiation sessions during a period of at least 24 hours, detecting a change of a dielectric coefficient of the thoracic tissue by analyzing respective the reflections, and outputting a notification indicating the change. The reflections are changed as an outcome of thoracic movements which occur during the period.

IPC Classes  ?

  • A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves

50.

METHODS AND SYSTEMS FOR MONITORING INTRABODY TISSUES

      
Application Number IL2010000182
Publication Number 2010/100649
Status In Force
Filing Date 2010-03-04
Publication Date 2010-09-10
Owner SENSIBLE MEDICAL INNOVATIONS LTD. (Israel)
Inventor
  • Kochba, Ilan
  • Rappaport, Dan
  • Saroka, Amir
  • Bergida, Shlomi
  • Mizrahi, Nadav
  • Ronen, Amir

Abstract

A method for monitoring an intrabody region of a patient. The method comprises intercepting electromagnetic (EM) radiation from the intrabody region in a plurality of EM radiation sessions during a period of at least 6 hours, calculating a dielectric related change of the intrabody region by analyzing respective the intercepted EM radiation, detecting a physiological pattern according to said dielectric related change and outputting a notification indicating the physiological pattern.

IPC Classes  ?

  • A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves

51.

Methods and devices of cardiac tissue monitoring and analysis

      
Application Number 12544314
Grant Number 10667715
Status In Force
Filing Date 2009-08-20
First Publication Date 2010-03-04
Grant Date 2020-06-02
Owner Sensible Medical Innovations Ltd. (Israel)
Inventor
  • Rappaport, Dan
  • Saroka, Amir
  • Bergida, Shlomi
  • Kochba, Ilan
  • Mizrahi, Nadav

Abstract

A method for monitoring at least one cardiac tissue. The method comprises a) intercepting a plurality of reflections of an electromagnetic (EM) radiation reflected from at least one cardiac tissue of a patient in a plurality of EM radiation sessions, b) computing a mechanical tracing indicative of at least one mechanical property of said at least one cardiac tissue according to said plurality of reflections, c) analyzing said mechanical tracing so as to detect a presence or an absence of a physiological condition, and d) outputting said analysis.

IPC Classes  ?

  • A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves
  • A61B 5/0472 - Detecting abnormal QRS complex
  • A61B 5/0408 - Electrodes specially adapted therefor

52.

METHOD, SYSTEM AND APPARATUS FOR USING ELECTROMAGNETIC RADIATION FOR MONITORING A TISSUE OF A USER

      
Application Number IL2008001198
Publication Number 2009/031149
Status In Force
Filing Date 2008-09-04
Publication Date 2009-03-12
Owner SENSIBLE MEDICAL INNOVATIONS LTD. (Israel)
Inventor
  • Saroka, Amir
  • Bergida, Shlomi
  • Mizrahi, Nadav
  • Rappaport, Dan
  • Ronen, Amir
  • Almog, Benyamin

Abstract

A wearable monitoring apparatus for monitoring at least one biological parameter of an internal tissue of an ambulatory user. Said wearable monitoring apparatus comprises at least one transducer configured for delivering electromagnetic (EM) radiation to said internal tissue and intercepting a reflection of said EM radiation therefrom in a plurality of transmission sessions during at least 24 hours, a processing unit configured for analyzing respective said reflection and identifying a change in said at least one biological parameter accordingly, a reporting unit configured for generating a report according to said change, and a housing for containing said at least one transducer, said reporting unit, and said processing unit, said housing being configured for being disposed on said body of said ambulatory user.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons

53.

METHOD AND SYSTEM FOR MONITORING THORACIC TISSUE FLUID

      
Application Number IL2008001199
Publication Number 2009/031150
Status In Force
Filing Date 2008-09-04
Publication Date 2009-03-12
Owner SENSIBLE MEDICAL INNOVATIONS LTD. (Israel)
Inventor
  • Rappaport, Dan
  • Mizrahi, Nadav
  • Bergida, Shlomi
  • Saroka, Amir
  • Ronen, Amir
  • Kochba, Ilan

Abstract

A method for monitoring thoracic tissue. The method comprises intercepting reflections of electromagnetic (EM) radiation reflected from thoracic tissue of a patient in radiation sessions during a period of at least 24 hours, detecting a change of a dielectric coefficient of the thoracic tissue by analyzing respective the reflections, and outputting a notification indicating the change. The reflections are changed as an outcome of thoracic movements which occur during the period.

IPC Classes  ?

  • A61B 5/05 - Detecting, measuring or recording for diagnosis by means of electric currents or magnetic fieldsMeasuring using microwaves or radio waves