Patents by Inventor Guillermo Tearney

Guillermo Tearney 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).

  • Publication number: 20240108277
    Abstract: A system for determining intestinal potential difference. The system includes a measurement probe including a measurement tube having a measurement lumen which houses a measurement electrode therein, a measurement fluid delivery system in fluid communication with the measurement lumen, the measurement fluid delivery system being configured to deliver an electrically-conductive fluid into the measurement lumen such that the electrically-conductive fluid is electrically coupled to the measurement electrode, and the measurement lumen including an outlet at a distal end thereof through which the electrically-conductive fluid exits the measurement lumen and contacts an intestinal tissue of a subject to provide electrical coupling between the measurement electrode and the intestinal tissue; a controller coupled to the measurement electrode configured to measure a potential difference between tire measurement electrode and a reference electrode electrically coupled to the subject.
    Type: Application
    Filed: January 31, 2022
    Publication date: April 4, 2024
    Inventors: Guillermo Tearney, David Odeke Otuya, Hamid Farrokhi, Serena Qinyun Z Shi, Sarah Lynn Silva, Jing Dong
  • Publication number: 20230238135
    Abstract: A computer-implemented method for diagnosing a medical condition of a patient is provided. The method can include causing, using one or more processors, an excitation source to emit an excitation light towards a region of interest of an artery, receiving, using the one or more processors and a detector, imaging data of the region of interest of the artery, generating, using the one or more processors and the imaging data, an image of the region of interest, determining, using the one or more processors, a risk region of an atheromatous plaque, based on the imaging data, and determining, using the one or more processors, that the patient has a severe case of an atheromatous plaque, based on the determined risk region of the atheromatous plaque.
    Type: Application
    Filed: June 21, 2021
    Publication date: July 27, 2023
    Applicant: The General Hospital Corporation
    Inventors: Farouc Amin Jaffer, Guillermo Tearney, Joseph Gardecki, Mazen Albaghdadi, Ryutaro Ikegami, Mohamad Kassab
  • Patent number: 11172827
    Abstract: An apparatus can be provided according to certain exemplary embodiments. For example, the apparatus can include a waveguiding first arrangement providing at least one electromagnetic radiation. A configuration can be provided that receives and splits the at least one electromagnetic radiation into a first radiation and a second radiation. The apparatus can further include a waveguiding second arrangement which has a first waveguide and a second waveguide, whereas the first waveguide receives the first radiation, and the second waveguide receives the second radiation. The first arrangement, the second arrangement and the configuration can be housed in a probe.
    Type: Grant
    Filed: April 3, 2018
    Date of Patent: November 16, 2021
    Assignee: The General Hospital Corporation
    Inventors: Ali Motafakker-Fard, Paulino Vacas Jacques, Guillermo Tearney, Mireille Rosenberg
  • Patent number: 10732400
    Abstract: A spectrally encoded endoscopic probe. The probe has a light guiding component, a light focusing component, and a grating component. The probe is configured such that a set of light beams of multiple wavelengths are diffracted by the grating component in different orders at substantially the same angle. The set of light beams includes at least 3 light beams. Each light beam among the set of light beams is associated with a different wavelength.
    Type: Grant
    Filed: July 11, 2019
    Date of Patent: August 4, 2020
    Assignees: Canon U.S.A., Inc., The General Hospital Corporation
    Inventors: Mitsuhiro Ikuta, Dongkyun Kang, Dukho Do, Guillermo Tearney
  • Publication number: 20190339507
    Abstract: A spectrally encoded endoscopic probe. The probe has a light guiding component, a light focusing component, and a grating component. The probe is configured such that a set of light beams of multiple wavelengths are diffracted by the grating component in different orders at substantially the same angle. The set of light beams includes at least 3 light beams. Each light beam among the set of light beams is associated with a different wavelength.
    Type: Application
    Filed: July 11, 2019
    Publication date: November 7, 2019
    Inventors: Mitsuhiro Ikuta, Dongkyun Kang, Dukho Do, Guillermo Tearney
  • Patent number: 10401610
    Abstract: A spectrally encoded endoscopic probe. The probe has a light guiding component, a light focusing component, and a grating component. The probe is configured such that a set of light beams of multiple wavelengths are diffracted by the grating component in different orders at substantially the same angle. The set of light beams includes at least 3 light beams. Each light beam among the set of light beams is associated with a different wavelength.
    Type: Grant
    Filed: January 27, 2017
    Date of Patent: September 3, 2019
    Assignees: Canon USA, Inc., The General Hospital Corporation
    Inventors: Mitsuhiro Ikuta, Dongkyun Kang, Dukho Do, Guillermo Tearney
  • Publication number: 20180220896
    Abstract: An apparatus can be provided according to certain exemplary embodiments. For example, the apparatus can include a waveguiding first arrangement providing at least one electromagnetic radiation. A configuration can be provided that receives and splits the at least one electromagnetic radiation into a first radiation and a second radiation. The apparatus can further include a waveguiding second arrangement which has a first waveguide and a second waveguide, whereas the first waveguide receives the first radiation, and the second waveguide receives the second radiation. The first arrangement, the second arrangement and the configuration can be housed in a probe.
    Type: Application
    Filed: April 3, 2018
    Publication date: August 9, 2018
    Inventors: Ali Motafakker-Fard, Paulino Vacas Jacques, Guillermo Tearney, Mireille Rosenberg
  • Patent number: 9968261
    Abstract: An apparatus can be provided according to certain exemplary embodiments. For example, the apparatus can include a waveguiding first arrangement providing at least one electromagnetic radiation. A configuration can be provided that receives and splits the at least one electromagnetic radiation into a first radiation and a second radiation. The apparatus can further include a waveguiding second arrangement which has a first waveguide and a second waveguide, whereas the first waveguide receives the first radiation, and the second waveguide receives the second radiation. The first arrangement, the second arrangement and the configuration can be housed in a probe.
    Type: Grant
    Filed: January 28, 2014
    Date of Patent: May 15, 2018
    Assignee: The General Hospital Corporation
    Inventors: Ali Motafakker-Fard, Paulino Vacas Jacques, Guillermo Tearney, Mireille Rosenberg
  • Publication number: 20180017778
    Abstract: A spectrally encoded endoscopic probe. The probe has a light guiding component, a light focusing component, and a grating component. The probe is configured such that a set of light beams of multiple wavelengths are diffracted by the grating component in different orders at substantially the same angle. The set of light beams includes at least 3 light beams. Each light beam among the set of light beams is associated with a different wavelength.
    Type: Application
    Filed: January 27, 2017
    Publication date: January 18, 2018
    Inventors: Mitsuhiro Ikuta, Dongkyun Kang, Dukho Do, Guillermo Tearney
  • Publication number: 20150272442
    Abstract: An apparatus can be provided according to certain exemplary embodiments. For example, the apparatus can include a waveguiding first arrangement providing at least one electromagnetic radiation. A configuration can be provided that receives and splits the at least one electromagnetic radiation into a first radiation and a second radiation. The apparatus can further include a waveguiding second arrangement which has a first waveguide and a second waveguide, whereas the first waveguide receives the first radiation, and the second waveguide receives the second radiation. The first arrangement, the second arrangement and the configuration can be housed in a probe.
    Type: Application
    Filed: January 28, 2014
    Publication date: October 1, 2015
    Applicant: The General Hospital Corporation
    Inventors: ALI MOTAFAKKER-FARD, Paulino Vacas Jacques, Guillermo Tearney, Mireille Rosenberg
  • Publication number: 20120035527
    Abstract: The exemplary embodiments of the present invention provides exemplary methods for adhering biological membranes to luminal anatomical structures using photosensitizing agents and electromagnetic energy. The exemplary embodiments of the present invention also provides method for stabilizing luminal anatomical structures. Further, exemplary embodiments of the present invention provide arrangements for coupling to a luminal anatomical structure.
    Type: Application
    Filed: October 2, 2008
    Publication date: February 9, 2012
    Applicant: THE GENERAL HOSPITAL CORPORATION
    Inventors: Guillermo Tearney, Brett Bouma, Robert W. Redmond, Irene E. Kochevar
  • Publication number: 20100254414
    Abstract: An apparatus and source arrangement for filtering an electromagnetic radiation can be provided which may include at least one spectral separating arrangement configured to physically separate one or more components of the electromagnetic radiation based on a frequency of the electromagnetic radiation. The apparatus and source arrangement may also have at least one continuously rotating optical arrangement which is configured to receive at least one signal that is associated with the one or more components. Further, the apparatus and source arrangement can include at least one beam selecting arrangement configured to receive the signal.
    Type: Application
    Filed: November 30, 2009
    Publication date: October 7, 2010
    Applicant: The General Hospital Corporation
    Inventors: Brett Bouma, Seok-Hyun (Andy) Yun, Wang-Yuhl (William) Oh, Johannes deBoer, Guillermo Tearney
  • Publication number: 20090257461
    Abstract: An apparatus and source arrangement for filtering an electromagnetic radiation can be provided which may include at least one spectral separating arrangement configured to physically separate one or more components of the electromagnetic radiation based on a frequency of the electromagnetic radiation. The apparatus and source arrangement may also have at least one continuously rotating optical arrangement which is configured to receive at least one signal that is associated with the one or more components. Further, the apparatus and source arrangement can include at least one beam selecting arrangement configured to receive the signal.
    Type: Application
    Filed: February 11, 2009
    Publication date: October 15, 2009
    Applicant: The General Hospital Corporation
    Inventors: Brett Bouma, Seok-Hyun (Andy) Yun, Wang-Yuhl (William) Oh, Johannes deBoer, Guillermo Tearney
  • Patent number: 7519096
    Abstract: An apparatus and source arrangement for filtering an electromagnetic radiation can be provided which may include at least one spectral separating arrangement configured to physically separate one or more components of the electromagnetic radiation based on a frequency of the electromagnetic radiation. The apparatus and source arrangement may also have at least one continuously rotating optical arrangement which is configured to receive at least one signal that is associated with the one or more components. Further, the apparatus and source arrangement can include at least one beam selecting arrangement configured to receive the signal.
    Type: Grant
    Filed: June 4, 2004
    Date of Patent: April 14, 2009
    Assignee: The General Hospital Corporation
    Inventors: Brett Bouma, Seok-Hyun (Andy) Yun, Wang-Yuhl (William) Oh, Johannes deBoer, Guillermo Tearney
  • Publication number: 20080100837
    Abstract: Apparatus and method for increasing the sensitivity in the detection of optical coherence tomography and low coherence interferometry (“LCI”) signals by detecting a parallel set of spectral bands, each band being a unique combination of optical frequencies. The LCI broad bandwidth source is split into N spectral bands. The N spectral bands are individually detected and processed to provide an increase in the signal-to-noise ratio by a factor of N. Each spectral band is detected by a separate photo detector and amplified. For each spectral band the signal is band pass filtered around the signal band by analog electronics and digitized, or, alternatively, the signal may be digitized and band pass filtered in software. As a consequence, the shot noise contribution to the signal is reduced by a factor equal to the number of spectral bands. The signal remains the same. The reduction of the shot noise increases the dynamic range and sensitivity of the system.
    Type: Application
    Filed: December 13, 2007
    Publication date: May 1, 2008
    Applicant: The General Hospital Corporation
    Inventors: Johannes de Boer, Guillermo Tearney, Brett Bouma
  • Publication number: 20080094637
    Abstract: Apparatus and method for increasing the sensitivity in the detection of optical coherence tomography and low coherence interferometry (“LCI”) signals by detecting a parallel set of spectral bands, each band being a unique combination of optical frequencies. The LCI broad bandwidth source is split into N spectral bands. The N spectral bands are individually detected and processed to provide an increase in the signal-to-noise ratio by a factor of N. Each spectral band is detected by a separate photo detector and amplified. For each spectral band the signal is band pass filtered around the signal band by analog electronics and digitized, or, alternatively, the signal may be digitized and band pass filtered in software. As a consequence, the shot noise contribution to the signal is reduced by a factor equal to the number of spectral bands. The signal remains the same. The reduction of the shot noise increases the dynamic range and sensitivity of the system.
    Type: Application
    Filed: December 13, 2007
    Publication date: April 24, 2008
    Applicant: The General Hospital Corporation
    Inventors: Johannes de Boer, Guillermo Tearney, Brett Bouma
  • Publication number: 20080097225
    Abstract: Exemplary apparatus and process can be provided for imaging information associated with at least one portion of a sample. For example, (i) at least two first different wavelengths of at least one first electro-magnetic radiation can be provided within a first wavelength range provided on the portion of the sample so as to determine at least one first transverse location of the portion, and (ii) at least two second different wavelengths of at least one second electro-magnetic radiation are provided within a second wavelength range provided on the portion so as to determine at least one second transverse location of the portion. The first and second ranges can east partially overlap on the portion. Further, a relative phase between at least one third electro-magnetic radiation electro-magnetic radiation being returned from the sample and at least one fourth electro-magnetic radiation returned from a reference can be obtained to determine a relative depth location of the portion.
    Type: Application
    Filed: October 19, 2007
    Publication date: April 24, 2008
    Applicant: The General Hospital Corporation
    Inventors: Guillermo Tearney, Brett Bouma, Dvir Yelin
  • Publication number: 20080094613
    Abstract: Apparatus and method for increasing the sensitivity in the detection of optical coherence tomography and low coherence interferometry (“LCI”) signals by detecting a parallel set of spectral bands, each band being a unique combination of optical frequencies. The LCI broad bandwidth source is split into N spectral bands. The N spectral bands are individually detected and processed to provide an increase in the signal-to-noise ratio by a factor of N. Each spectral band is detected by a separate photo detector and amplified. For each spectral band the signal is band pass filtered around the signal band by analog electronics and digitized, or, alternatively, the signal may be digitized and band pass filtered in software. As a consequence, the shot noise contribution to the signal is reduced by a factor equal to the number of spectral bands. The signal remains the same. The reduction of the shot noise increases the dynamic range and sensitivity of the system.
    Type: Application
    Filed: December 13, 2007
    Publication date: April 24, 2008
    Applicant: The General Hospital Corporation
    Inventors: Johannes de Boer, Guillermo Tearney, Brett Bouma
  • Publication number: 20080097709
    Abstract: Apparatus and method for increasing the sensitivity in the detection of optical coherence tomography and low coherence interferometry (“LCI”) signals by detecting a parallel set of spectral bands, each band being a unique combination of optical frequencies. The LCI broad bandwidth source is split into N spectral bands. The N spectral bands are individually detected and processed to provide an increase in the signal-to-noise ratio by a factor of N. Each spectral band is detected by a separate photo detector and amplified. For each spectral band the signal is band pass filtered around the signal band by analog electronics and digitized, or, alternatively, the signal may be digitized and band pass filtered in software. As a consequence, the shot noise contribution to the signal is reduced by a factor equal to the number of spectral bands. The signal remains the same. The reduction of the shot noise increases the dynamic range and sensitivity of the system.
    Type: Application
    Filed: December 13, 2007
    Publication date: April 24, 2008
    Applicant: The General Hospital Corporation
    Inventors: Johannes de Boer, Guillermo Tearney, Brett Bouma
  • Publication number: 20080021275
    Abstract: Arrangements, apparatus, systems and systems are provided for obtaining data for at least one portion within at least one luminal or hollow sample. The arrangement, system or apparatus can be (insertable via at least one of a mouth or a nose of a patient. For example, a first optical arrangement can be configured to transceive at least one electromagnetic (e.g., visible) radiation to and from the portion. A second arrangement may be provided at least partially enclosing the first arrangement. Further, a third arrangement can be configured to be actuated so as to position the first arrangement at a predetermined location within the luminal or hollow sample. The first arrangement may be configured to compensate for at least one aberration (e.g., astigmatism) caused by the second arrangement and/or the third arrangement. The second arrangement can include at least one portion which enables a guiding arrangement to be inserted there through.
    Type: Application
    Filed: January 19, 2007
    Publication date: January 24, 2008
    Applicant: The General Hospital Corporation
    Inventors: Guillermo Tearney, Milen Shishkov, Brett Bouma, Benjamin Vakoc, Norman Nishioka