Patents by Inventor Ilan KOCHBA
Ilan KOCHBA 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: 20240237909Abstract: 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.Type: ApplicationFiled: March 28, 2024Publication date: July 18, 2024Applicant: Sensible Medical Innovations Ltd.Inventors: Dan RAPPAPORT, Nadav MIZRAHI, Shlomi BERGIDA, Amir SAROKA, Amir RONEN, Ilan KOCHBA
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Patent number: 11944419Abstract: 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.Type: GrantFiled: January 30, 2023Date of Patent: April 2, 2024Assignee: Sensible Medical Innovations Ltd.Inventors: Dan Rappaport, Nadav Mizrahi, Shlomi Bergida, Amir Saroka, Amir Ronen, Ilan Kochba
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Publication number: 20230277079Abstract: 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.Type: ApplicationFiled: May 11, 2023Publication date: September 7, 2023Applicant: Sensible Medical Innovations Ltd.Inventors: Ilan KOCHBA, Dan RAPPAPORT, Amir SAROKA, Shlomi BERGIDA, Nadav MIZRAHI, Amir RONEN
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Publication number: 20230172474Abstract: 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.Type: ApplicationFiled: January 30, 2023Publication date: June 8, 2023Applicant: Sensible Medical Innovations Ltd.Inventors: Dan RAPPAPORT, Nadav MIZRAHI, Shlomi BERGIDA, Amir SAROKA, Amir RONEN, Ilan KOCHBA
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Patent number: 11564586Abstract: 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.Type: GrantFiled: February 17, 2020Date of Patent: January 31, 2023Assignee: Sensible Medical Innovations Ltd.Inventors: Dan Rappaport, Nadav Mizrahi, Shiomi Bergida, Amir Saroka, Amir Ronen, Ilan Kochba
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Patent number: 11529065Abstract: 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.Type: GrantFiled: June 1, 2020Date of Patent: December 20, 2022Assignee: Sensible Medical Innovations Ltd.Inventors: Dan Rappaport, Amir Saroka, Shlomi Bergida, Ilan Kochba, Nadav Mizrahi
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Publication number: 20200289018Abstract: 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.Type: ApplicationFiled: June 1, 2020Publication date: September 17, 2020Applicant: Sensible Medical Innovations Ltd.Inventors: Dan RAPPAPORT, Amir SAROKA, Shlomi BERGIDA, Ilan KOCHBA, Nadav MIZRAHI
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Publication number: 20200178837Abstract: 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.Type: ApplicationFiled: February 17, 2020Publication date: June 11, 2020Applicant: Sensible Medical Innovations Ltd.Inventors: Dan Rappaport, Nadav Mizrahi, Shlomi Bergida, Amir Saroka, Amir Ronen, Ilan Kochba
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Patent number: 10667715Abstract: 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.Type: GrantFiled: August 20, 2009Date of Patent: June 2, 2020Assignee: Sensible Medical Innovations Ltd.Inventors: Dan Rappaport, Amir Saroka, Shlomi Bergida, Ilan Kochba, Nadav Mizrahi
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Publication number: 20200113475Abstract: 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.Type: ApplicationFiled: December 16, 2019Publication date: April 16, 2020Applicant: Sensible Medical Innovations Ltd.Inventors: Ilan KOCHBA, Dan RAPPAPORT, Amir SAROKA, Shlomi BERGIDA, Nadav MIZRAHI, Amir RONEN
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Patent number: 10561336Abstract: 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.Type: GrantFiled: September 4, 2008Date of Patent: February 18, 2020Assignee: Sensible Medical Innovations Ltd.Inventors: Dan Rappaport, Nadav Mizrahi, Shlomi Bergida, Amir Saroka, Amir Ronen, Ilan Kochba
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Patent number: 10506943Abstract: 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.Type: GrantFiled: February 20, 2017Date of Patent: December 17, 2019Assignee: Sensible Medical Innovations Ltd.Inventors: Ilan Kochba, Dan Rappaport, Amir Saroka, Shlomi Bergida, Nadav Mizrahi, Amir Ronen
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Publication number: 20170156626Abstract: 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.Type: ApplicationFiled: February 20, 2017Publication date: June 8, 2017Applicant: Sensible Medical Innovations Ltd.Inventors: Ilan KOCHBA, Dan RAPPAPORT, Amir SAROKA, Shlomi BERGIDA, Nadav MIZRAHI, Amir RONEN
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Patent number: 9572511Abstract: 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.Type: GrantFiled: March 4, 2010Date of Patent: February 21, 2017Assignee: Sensible Medical Innovations Ltd.Inventors: Ilan Kochba, Dan Rappaport, Amir Saroka, Shlomi Bergida, Nadav Mizrahi, Amir Ronen
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Publication number: 20110319746Abstract: 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.Type: ApplicationFiled: March 4, 2010Publication date: December 29, 2011Applicant: SENSIBLE MEDICAL INNOVATIONS LTD.Inventors: Ilan Kochba, Dan Rappaport, Amir Saroka, Shlomi Bergida, Nadav Mizrahi, Amir Ronen
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Publication number: 20100256462Abstract: 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.Type: ApplicationFiled: September 4, 2008Publication date: October 7, 2010Applicant: Sensible Medical Innovations Ltd.Inventors: Dan Rappaport, Nadav Mizrahi, Shlomi Bergida, Amir Saroka, Amir Ronen, Ilan Kochba
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Publication number: 20100056907Abstract: 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.Type: ApplicationFiled: August 20, 2009Publication date: March 4, 2010Applicant: Sensible Medical Innovations Ltd.Inventors: Dan RAPPAPORT, Amir SAROKA, Shlomi BERGIDA, Ilan KOCHBA, Nadav MIZRAHI