Patents by Inventor Ra'anan Gefen

Ra'anan Gefen 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).

  • Patent number: 9566191
    Abstract: Apparatus is provided, including an external device, including a mount, placed in front of an eye, and a laser which emits toward the eye radiation that is outside of 380-750 nm. The apparatus additionally includes an intraocular device which is implanted entirely in the eye, and includes an energy receiver, a plurality of stimulating electrodes, a plurality of photosensors, and driving circuitry coupled to the energy receiver and to the photosensors, and configured to drive the electrodes to apply currents to a retina of the eye in response to the signals from the photosensors. The photosensors are (a) generally insensitive to the energy from the laser, and (b) generally sensitive to visible light. Other applications are also described.
    Type: Grant
    Filed: November 9, 2015
    Date of Patent: February 14, 2017
    Assignee: NANO-RETINA, INC.
    Inventors: Ra'anan Gefen, Yossi Gross, Tuvia Liran, Shai Vaingast
  • Publication number: 20160338585
    Abstract: A system and method are described for performing tear film structure measurement. A broadband light source illuminates the tear film. A spectrometer measures respective spectra of reflected light from at least one point of the tear film. A color camera performs large field of view imaging of the tear film, so as to obtain color information for all points of the tear film imaged by the color camera. A processing unit calibrates the camera at the point measured by the spectrometer so that the color obtained by the camera at the point matches the color of the spectrometer at the same point. The processing unit determines, from the color of respective points of the calibrated camera, thicknesses of one or more layers of the tear film at the respective points. Other applications are also described.
    Type: Application
    Filed: August 3, 2016
    Publication date: November 24, 2016
    Inventors: Yoel Arieli, Yoel Cohen, Shlomi Epstein, Dror Arbel, Ra'anan Gefen
  • Patent number: 9474902
    Abstract: Apparatus is provided including an extraocular device, which includes an eyeglasses frame, which is placed in front of an eye of a subject, and a power source coupled to the eyeglasses frame and configured to emit a beam of light that is outside of 380-750 nm. A light-guiding element is coupled to the eyeglasses frame and at least one optical coupling-in element and at least one optical coupling-out element are optically coupled to the light-guiding element. The coupling-in element is positioned such that the beam of light is directed into the light-guiding element via the coupling-in element, and the coupling-in and coupling-out elements are positioned such that the beam diverges from a focal point located within 3 mm of the coupling-out element. Other applications are also described.
    Type: Grant
    Filed: December 31, 2013
    Date of Patent: October 25, 2016
    Assignee: NANO RETINA LTD.
    Inventors: Ra'anan Gefen, Leonid Yanovitz, Kobi Kamintz, Shai Eisenberg
  • Patent number: 9370417
    Abstract: Apparatus is provided having an intraocular device for implantation entirely in a subject's eye, the intraocular device including: a photosensor array having a plurality of photosensors, each photosensor detects ambient photons and generates a signal in response thereto. A spatial density of the photosensors in a central portion of the array is greater than a spatial density of the photosensors in an outer portion of the array. The intraocular device additionally includes a plurality of stimulating electrodes and driving circuitry coupled to the photosensors, and configured to drive the electrodes to apply electrical pulses to a retina of the eye in response to the signals from the photosensors. Other applications are also described.
    Type: Grant
    Filed: March 14, 2013
    Date of Patent: June 21, 2016
    Assignee: NANO-RETINA, INC.
    Inventor: Ra'anan Gefen
  • Publication number: 20160135988
    Abstract: Apparatus is provided, including an external device, including a mount, placed in front of an eye, and a laser which emits toward the eye radiation that is outside of 380-750 nm. The apparatus additionally includes an intraocular device which is implanted entirely in the eye, and includes an energy receiver, a plurality of stimulating electrodes, a plurality of photosensors, and driving circuitry coupled to the energy receiver and to the photosensors, and configured to drive the electrodes to apply currents to a retina of the eye in response to the signals from the photosensors. The photosensors are (a) generally insensitive to the energy from the laser, and (b) generally sensitive to visible light. Other applications are also described.
    Type: Application
    Filed: November 9, 2015
    Publication date: May 19, 2016
    Applicant: NANO-RETINA INC.
    Inventors: Ra'anan GEFEN, Yossi GROSS, Tuvia LIRAN, Shai VAINGAST
  • Patent number: 9331791
    Abstract: Apparatus and methods are described, including a method for transmission of power and data during a plurality of consecutive time intervals. During a power-transmission portion of each of the plurality of consecutive time intervals, a power signal, in which no data is encoded, is transmitted. During a power-and-data-transmission portion of each of the plurality of consecutive time intervals, a power-and-data signal, in which is encoded a single bit, is transmitted. The power-and-data signal includes: (a) a high-level power-and-data signal portion, and (b) a low-level power-and-data signal portion. Other applications are also described.
    Type: Grant
    Filed: January 21, 2014
    Date of Patent: May 3, 2016
    Assignee: NANO RETINA LTD.
    Inventors: Tuvia Liran, Ra'anan Gefen, Leonid Yanovitz
  • Patent number: 9265945
    Abstract: An external device (20) includes a mount (22), which is placed in front of a subject's eye. A laser (24) is coupled to the mount (22) and emits radiation (26) that is outside of 380-750 nm. A partially-transparent mirror (23) is coupled to the mount (22). An intraocular device (30) is implanted entirely in the subject's eye, and includes a plurality of stimulating electrodes (38), and an energy receiver (32), which receives the radiation (26) from the laser (24) and generates a voltage drop. A plurality of photosensors (34) detect photons (33) and generate a signal. Driving circuitry (36) is coupled to the energy receiver (32) and to the photosensors (34), and receives the signals from the photosensors (34) and utilizes the voltage drop to drive the electrodes (38) to apply currents to the retina in response to the signals from the photosensors (34). Other embodiments are also described.
    Type: Grant
    Filed: February 3, 2010
    Date of Patent: February 23, 2016
    Assignee: NANO-RETINA, INC.
    Inventors: Yossi Gross, Shai Vaingast, Ra'anan Gefen
  • Patent number: 9198753
    Abstract: Apparatus for use with an external non-visible light source is provided. The apparatus comprises an intraocular device configured for implantation in a human eye, and comprising an energy receiver. The energy receiver is configured to receive light emitted from the external non-visible light source, and extract energy from the emitted light for powering the intraocular device. The intraocular device is configured to regulate a parameter of operation of the intraocular device based on a modulation of the light emitted by the external non-visible light source and received by the energy receiver. Other embodiments are also described.
    Type: Grant
    Filed: March 6, 2014
    Date of Patent: December 1, 2015
    Assignee: NANO-RETINA INC.
    Inventors: Ra'anan Gefen, Yossi Gross, Tuvia Liran, Shai Vaingast
  • Patent number: 9192464
    Abstract: A medical device includes an array of electrodes, configured for implantation in contact with tissue in an eye of a living subject. Driver circuitry is configured to drive the electrodes in an alternating pattern, such that different groups of the electrodes are driven to stimulate the tissue during different, predetermined respective time periods. A power sensor, may be coupled to deactivate a first group of the electrodes when the available electrical power drops below a predetermined threshold, while a second group of the electrodes remains active. Other embodiments are also described.
    Type: Grant
    Filed: September 5, 2013
    Date of Patent: November 24, 2015
    Assignee: NANO-RETINA, INC.
    Inventors: Tuvia Liran, Ra'anan Gefen
  • Publication number: 20150207572
    Abstract: Apparatus and methods are described, including a method for transmission of power and data during a plurality of consecutive time intervals. During a power-transmission portion of each of the plurality of consecutive time intervals, a power signal, in which no data is encoded, is transmitted. During a power-and-data-transmission portion of each of the plurality of consecutive time intervals, a power-and-data signal, in which is encoded a single bit, is transmitted. The power-and-data signal includes: (a) a high-level power-and-data signal portion, and (b) a low-level power-and-data signal portion. Other applications are also described.
    Type: Application
    Filed: January 21, 2014
    Publication date: July 23, 2015
    Applicant: Nano Retina Ltd.
    Inventors: Tuvia LIRAN, Ra'anan GEFEN, Leonid YANOVITZ
  • Publication number: 20150182748
    Abstract: Apparatus is provided including an extraocular device, which includes an eyeglasses frame, which is placed in front of an eye of a subject, and a power source coupled to the eyeglasses frame and configured to emit a beam of light that is outside of 380-750 nm. A light-guiding element is coupled to the eyeglasses frame and at least one optical coupling-in element and at least one optical coupling-out element are optically coupled to the light-guiding element. The coupling-in element is positioned such that the beam of light is directed into the light-guiding element via the coupling-in element, and the coupling-in and coupling-out elements are positioned such that the beam diverges from a focal point located within 3 mm of the coupling-out element. Other applications are also described.
    Type: Application
    Filed: December 31, 2013
    Publication date: July 2, 2015
    Inventors: Ra'anan GEFEN, Leonid YANOVITZ, Kobi KAMINTZ, Shai EISENBERG
  • Publication number: 20140277435
    Abstract: Apparatus is provided having an intraocular device for implantation entirely in a subject's eye, the intraocular device including: a photosensor array having a plurality of photosensors, each photosensor detects ambient photons and generates a signal in response thereto. A spatial density of the photosensors in a central portion of the array is greater than a spatial density of the photosensors in an outer portion of the array. The intraocular device additionally includes a plurality of stimulating electrodes and driving circuitry coupled to the photosensors, and configured to drive the electrodes to apply electrical pulses to a retina of the eye in response to the signals from the photosensors. Other applications are also described.
    Type: Application
    Filed: March 14, 2013
    Publication date: September 18, 2014
    Applicant: NANO-RETINA, INC.
    Inventor: Ra'anan Gefen
  • Publication number: 20140188222
    Abstract: Apparatus for use with an external non-visible light source is provided. The apparatus comprises an intraocular device configured for implantation in a human eye, and comprising an energy receiver. The energy receiver is configured to receive light emitted from the external non-visible light source, and extract energy from the emitted light for powering the intraocular device. The intraocular device is configured to regulate a parameter of operation of the intraocular device based on a modulation of the light emitted by the external non-visible light source and received by the energy receiver. Other embodiments are also described.
    Type: Application
    Filed: March 6, 2014
    Publication date: July 3, 2014
    Applicant: NANO-RETINA INC.
    Inventors: Ra'anan GEFEN, Yossi GROSS, Tuvia LIRAN, Shai VAINGAST
  • Publication number: 20140143559
    Abstract: Power monitoring circuitry is provided, comprising a capacitor configured to receive a current, so as to charge the capacitor and a switching device, connected to the capacitor. The switching device is configured to periodically discharge the capacitor in response to receipt of a clock signal from a circuit being monitored. The power monitoring circuitry also comprises a comparator, configured to perform a comparison of a voltage developed by the capacitor with a threshold voltage, and to output an indication of a change in power supplied to the circuit in response to the comparison. Other embodiments are also described.
    Type: Application
    Filed: November 21, 2012
    Publication date: May 22, 2014
    Applicant: NANO-RETINA, INC,
    Inventors: Ra'anan Gefen, Tuvia Liran
  • Patent number: 8718784
    Abstract: Apparatus configured for implantation in a body of a subject is provided. The apparatus includes a support substrate, and at least 500 electrodes protruding at least 50 um from the support substrate, each electrode having (a) a distal tip, (b) an electrically-exposed tip portion, and (c) a cross-section of 50-1500 um2, 20 um from the distal tip. Other embodiments are also described.
    Type: Grant
    Filed: January 14, 2010
    Date of Patent: May 6, 2014
    Assignee: Nano-Retina, Inc.
    Inventors: Ra'anan Gefen, Rahul Saini
  • Patent number: 8706243
    Abstract: Apparatus for use with an external non-visible light source is provided. The apparatus comprises an intraocular device configured for implantation in a human eye, and comprising an energy receiver. The energy receiver is configured to receive light emitted from the external non-visible light source, and extract energy from the emitted light for powering the intraocular device. The intraocular device is configured to regulate a parameter of operation of the intraocular device based on a modulation of the light emitted by the external non-visible light source and received by the energy receiver. Other embodiments are also described.
    Type: Grant
    Filed: April 2, 2012
    Date of Patent: April 22, 2014
    Assignee: Rainbow Medical Ltd.
    Inventors: Ra'anan Gefen, Yossi Gross, Tuvia Liran, Shai Vaingast
  • Patent number: 8702620
    Abstract: The present invention relates to a monitoring system and method for use with a body of a subject. The system comprises a medical device, having a portion thereof configured to be placed inside the subject's body, said portion of the medical device being configured to be propelled by fluid pressure through a body lumen; at least two pressure sensors accommodated remotely from the subject's body at two different spaced-apart positions outside the subject's body and configured and operable to detect pressure at the two spaced-apart remote positions; said at least two pressure sensors being in fluid communication with at least one site inside the subject's body, a relation between the pressure at said at least one site and the pressures at said two spaced-apart remote positions being thereby indicative of the fluid pressure at said at least one site.
    Type: Grant
    Filed: November 3, 2009
    Date of Patent: April 22, 2014
    Assignee: G.I. View Ltd.
    Inventors: Ra'anan Gefen, Tal Sheps, Reuven Eshel, Ran Mendelewicz, Noam Kinrot
  • Publication number: 20140031931
    Abstract: A medical device includes an array of electrodes, configured for implantation in contact with tissue in an eye of a living subject. Driver circuitry is configured to drive the electrodes in an alternating pattern, such that different groups of the electrodes are driven to stimulate the tissue during different, predetermined respective time periods. A power sensor, may be coupled to deactivate a first group of the electrodes when the available electrical power drops below a predetermined threshold, while a second group of the electrodes remains active. Other embodiments are also described.
    Type: Application
    Filed: September 5, 2013
    Publication date: January 30, 2014
    Applicant: Nano-Retina, Inc.
    Inventors: Tuvia Liran, Ra'anan Gefen
  • Patent number: 8571669
    Abstract: A medical device includes an array of electrodes, configured for implantation in contact with tissue in an eye of a living subject. Driver circuitry is configured to drive the electrodes in an alternating pattern, such that different groups of the electrodes are driven to stimulate the tissue during different, predetermined respective time periods. A power sensor, may be coupled to deactivate a first group of the electrodes when the available electrical power drops below a predetermined threshold, while a second group of the electrodes remains active. Other embodiments are also described.
    Type: Grant
    Filed: February 24, 2011
    Date of Patent: October 29, 2013
    Assignee: Nano-Retina, Inc.
    Inventors: Tuvia Liran, Ra'anan Gefen
  • Patent number: 8442641
    Abstract: Apparatus for use with an external non-visible light source is provided. The apparatus comprises an intraocular device configured for implantation in a human eye, and comprising an energy receiver. The energy receiver is configured to receive light emitted from the external non-visible light source, and extract energy from the emitted light for powering the intraocular device. The intraocular device is configured to regulate a parameter of operation of the intraocular device based on a modulation of the light emitted by the external non-visible light source and received by the energy receiver. Other embodiments are also described.
    Type: Grant
    Filed: May 9, 2011
    Date of Patent: May 14, 2013
    Assignee: Nano-Retina, Inc.
    Inventors: Yosef Gross, Shai Vaingast, Ra'anan Gefen