Patents by Inventor Yiftach Barash
Yiftach Barash has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Publication number: 20250098974Abstract: 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.Type: ApplicationFiled: December 9, 2024Publication date: March 27, 2025Applicant: Sensible Medical Innovations Ltd.Inventors: Amir SAROKA, Leonid VOSHIN, Yiftach BARASH, Benyamin ALMOG, Tal LEVI
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Publication number: 20250040886Abstract: 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.Type: ApplicationFiled: October 21, 2024Publication date: February 6, 2025Applicant: Sensible Medical Innovations Ltd.Inventors: Amir SAROKA, Leonid VOSHIN, Jonathan BAR-OR, Tal LEVI, Ofer KARP, Yiftach BARASH, Nadav MIZRAHI, Dan RAPPAPORT, Shlomi BERGIDA, Jonathan BAHAT
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Patent number: 12161453Abstract: 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.Type: GrantFiled: July 31, 2023Date of Patent: December 10, 2024Assignee: Sensible Medical Innovations Ltd.Inventors: Amir Saroka, Leonid Voshin, Yiftach Barash, Benyamin Almog, Tal Levi
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Patent number: 12121365Abstract: 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.Type: GrantFiled: January 20, 2022Date of Patent: October 22, 2024Assignee: Sensible Medical Innovations Ltd.Inventors: Amir Saroka, Leonid Voshin, Jonathan Bar-Or, Tal Levi, Ofer Karp, Yiftach Barash, Nadav Mizrahi, Dan Rappaport, Shlomi Bergida, Jonathan Bahat
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Publication number: 20230380711Abstract: 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.Type: ApplicationFiled: July 31, 2023Publication date: November 30, 2023Applicant: Sensible Medical Innovations Ltd.Inventors: Amir SAROKA, Leonid VOSHIN, Yiftach BARASH, Benyamin ALMOG, Tal LEVI
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Patent number: 11712169Abstract: 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.Type: GrantFiled: January 25, 2021Date of Patent: August 1, 2023Assignee: Sensible Medical Innovations Ltd.Inventors: Amir Saroka, Leonid Voshin, Yiftach Barash, Benyamin Almog, Tal Levi
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Patent number: 11529051Abstract: 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.Type: GrantFiled: April 6, 2020Date of Patent: December 20, 2022Assignee: Sensible Medical Innovations Ltd.Inventors: Nadav Mizrahi, Dan Rappaport, Amir Saroka, Oren Kalisman, Yiftach Barash, Tal Levi, Yaron Adler
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Publication number: 20220142574Abstract: 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.Type: ApplicationFiled: January 20, 2022Publication date: May 12, 2022Applicant: Sensible Medical Innovations Ltd.Inventors: Amir SAROKA, Leonid VOSHIN, Jonathan BAR-OR, Tal LEVI, Ofer KARP, Yiftach BARASH, Nadav MIZRAHI, Dan RAPPAPORT, Shlomi BERGIDA, Jonathan BAHAT
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Patent number: 11229401Abstract: 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.Type: GrantFiled: June 3, 2019Date of Patent: January 25, 2022Assignee: Sensible Medical Innovations Ltd.Inventors: Amir Saroka, Leonid Voshin, Jonathan Bar-Or, Tal Levi, Ofer Karp, Yiftach Barash, Nadav Mizrahi, Dan Rappaport, Shiomi Bergida, Jonathan Bahat
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Patent number: 11122987Abstract: 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).Type: GrantFiled: December 21, 2017Date of Patent: September 21, 2021Assignee: Sensible Medical Innovations Ltd.Inventors: Yiftach Barash, Amir Saroka, Shlomi Bergida, Nadav Mizrahi
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Patent number: 11103151Abstract: 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.Type: GrantFiled: June 11, 2018Date of Patent: August 31, 2021Assignee: Sensible Medical Innovations Ltd.Inventors: Dan Rappaport, Nizan Horesh, Ori Hay, Amir Saroka, Daniel Reisfeld, Oren Kalisman, Shlomi Bergida, Yiftach Barash
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Publication number: 20210137404Abstract: 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.Type: ApplicationFiled: January 25, 2021Publication date: May 13, 2021Applicant: Sensible Medical Innovations Ltd.Inventors: Amir SAROKA, Leonid VOSHIN, Yiftach BARASH, Benyamin ALMOG, Tal LEVI
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Patent number: 10898102Abstract: 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.Type: GrantFiled: March 18, 2019Date of Patent: January 26, 2021Assignee: Sensible Medical Innovations Ltd.Inventors: Amir Saroka, Leonid Voshin, Yiftach Barash, Benyamin Almog, Tal Levi
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Publication number: 20200305759Abstract: 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).Type: ApplicationFiled: December 21, 2017Publication date: October 1, 2020Applicant: Sensible Medical Innovations Ltd.Inventors: Yiftach BARASH, Amir SAROKA, Shlomi BERGIDA, Nadav MIZRAHI
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Publication number: 20200229696Abstract: 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.Type: ApplicationFiled: April 6, 2020Publication date: July 23, 2020Applicant: Sensible Medical Innovations Ltd.Inventors: Nadav MIZRAHI, Dan RAPPAPORT, Amir SAROKA, Oren KALISMAN, Yiftach BARASH, Tal LEVI, Yaron ADLER
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Patent number: 10610100Abstract: 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.Type: GrantFiled: June 26, 2013Date of Patent: April 7, 2020Assignee: Sensible Medical Innovations Ltd.Inventors: Nadav Mizrahi, Dan Rappaport, Amir Saroka, Oren Kalisman, Yiftach Barash, Tal Levi, Yaron Adler
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Publication number: 20190282164Abstract: 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.Type: ApplicationFiled: June 3, 2019Publication date: September 19, 2019Applicant: Sensible Medical Innovations Ltd.Inventors: Amir SAROKA, Leonid VOSHIN, Jonathan BAR-OR, Tal LEVI, Ofer KARP, Yiftach BARASH, Nadav MIZRAHI, Dan RAPPAPORT, Shlomi BERGIDA, Jonathan BAHAT
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Publication number: 20190209039Abstract: 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.Type: ApplicationFiled: March 18, 2019Publication date: July 11, 2019Applicant: Sensible Medical Innovations Ltd.Inventors: Amir SAROKA, Leonid VOSHIN, Yiftach BARASH, Benyamin ALMOG, Tal LEVI
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Patent number: 10307102Abstract: 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.Type: GrantFiled: December 20, 2012Date of Patent: June 4, 2019Assignee: Sensible Medical Innovations Ltd.Inventors: Amir Saroka, Leonid Voshin, Jonathan Bar-Or, Tal Levi, Ofer Karp, Yiftach Barash, Nadav Mizrahi, Dan Rappaport, Shlomi Bergida, Jonathan Bahat
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Patent number: 10231641Abstract: 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.Type: GrantFiled: January 3, 2013Date of Patent: March 19, 2019Assignee: Sensible Medical Innovations Ltd.Inventors: Amir Saroka, Leonid Voshin, Yiftach Barash, Benyamin Almog, Tal Levi