Patents by Inventor Niyazi Beyhan

Niyazi Beyhan 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: 11883029
    Abstract: The volume of a hyperinflated lung compartment is reduced by sealing a distal end of the catheter in an airway feeding the lung compartment. Air passes out of the lung compartment through a passage in the catheter while the patient exhales. A one-way flow element associated with the catheter prevents air from re-entering the lung compartment as the patient inhales. Over time, the pressure of regions surrounding the lung compartment cause it to collapse as the volume of air diminishes. Residual volume reduction effectively results in functional lung volume expansion. Optionally, the lung compartment may be sealed in order to permanently prevent air from re-entering the lung compartment.
    Type: Grant
    Filed: July 19, 2022
    Date of Patent: January 30, 2024
    Assignee: Pulmonx Corporation
    Inventors: Nikolai Aljuri, Rodney C. Perkins, Niyazi Beyhan
  • Publication number: 20230000497
    Abstract: The volume of a hyperinflated lung compartment is reduced by sealing a distal end of the catheter in an airway feeding the lung compartment. Air passes out of the lung compartment through a passage in the catheter while the patient exhales. A one-way flow element associated with the catheter prevents air from re-entering the lung compartment as the patient inhales. Over time, the pressure of regions surrounding the lung compartment cause it to collapse as the volume of air diminishes. Residual volume reduction effectively results in functional lung volume expansion. Optionally, the lung compartment may be sealed in order to permanently prevent air from re-entering the lung compartment.
    Type: Application
    Filed: July 19, 2022
    Publication date: January 5, 2023
    Applicant: Pulmonx Corporation
    Inventors: Nikolai Aljuri, Rodney C. Perkins, Niyazi Beyhan
  • Patent number: 11413045
    Abstract: The volume of a hyperinflated lung compartment is reduced by sealing a distal end of the catheter in an airway feeding the lung compartment. Air passes out of the lung compartment through a passage in the catheter while the patient exhales. A one-way flow element associated with the catheter prevents air from re-entering the lung compartment as the patient inhales. Over time, the pressure of regions surrounding the lung compartment cause it to collapse as the volume of air diminishes. Residual volume reduction effectively results in functional lung volume expansion. Optionally, the lung compartment may be sealed in order to permanently prevent air from re-entering the lung compartment.
    Type: Grant
    Filed: July 15, 2020
    Date of Patent: August 16, 2022
    Assignee: Pulmonx Corporation
    Inventors: Nikolai Aljuri, Rodney C. Perkins, Niyazi Beyhan
  • Publication number: 20220184332
    Abstract: The volume of a hyperinflated lung compartment is reduced by sealing a distal end of the catheter in an airway feeding the lung compartment. Air passes out of the lung compartment through a passage in the catheter while the patient exhales. A one-way flow element associated with the catheter prevents air from re-entering the lung compartment as the patient inhales. Over time, the pressure of regions surrounding the lung compartment cause it to collapse as the volume of air diminishes. Residual volume reduction effectively results in functional lung volume expansion. Optionally, the lung compartment may be sealed in order to permanently prevent air from re-entering the lung compartment. The invention further discloses a catheter with a transparent occlusion element at its tip that enables examination of the lung passageway through a viewing scope.
    Type: Application
    Filed: March 7, 2022
    Publication date: June 16, 2022
    Applicant: Pulmonx Corporation
    Inventors: Nikolai Aljuri, Rodney C. Perkins, Ryan Olivera, Hoang Nguyen, Srikanth Radhakrishnan, Niyazi Beyhan
  • Patent number: 11298489
    Abstract: The volume of a hyperinflated lung compartment is reduced by sealing a distal end of the catheter in an airway feeding the lung compartment. Air passes out of the lung compartment through a passage in the catheter while the patient exhales. A one-way flow element associated with the catheter prevents air from re-entering the lung compartment as the patient inhales. Over time, the pressure of regions surrounding the lung compartment cause it to collapse as the volume of air diminishes. Residual volume reduction effectively results in functional lung volume expansion. Optionally, the lung compartment may be sealed in order to permanently prevent air from re-entering the lung compartment. The invention further discloses a catheter with a transparent occlusion element at its tip that enables examination of the lung passageway through a viewing scope.
    Type: Grant
    Filed: May 31, 2019
    Date of Patent: April 12, 2022
    Assignee: Pulmonx Corporation
    Inventors: Nikolai Aljuri, Rodney C. Perkins, Ryan Olivera, Hoang Nguyen, Srikanth Radhakrishnan, Niyazi Beyhan
  • Publication number: 20200405318
    Abstract: The volume of a hyperinflated lung compartment is reduced by sealing a distal end of the catheter in an airway feeding the lung compartment. Air passes out of the lung compartment through a passage in the catheter while the patient exhales. A one-way flow element associated with the catheter prevents air from re-entering the lung compartment as the patient inhales. Over time, the pressure of regions surrounding the lung compartment cause it to collapse as the volume of air diminishes. Residual volume reduction effectively results in functional lung volume expansion. Optionally, the lung compartment may be sealed in order to permanently prevent air from re-entering the lung compartment.
    Type: Application
    Filed: July 15, 2020
    Publication date: December 31, 2020
    Applicant: Pulmonx Corporation
    Inventors: Nikolai Aljuri, Rodney C. Perkins, Niyazi Beyhan
  • Patent number: 10758239
    Abstract: The volume of a hyperinflated lung compartment is reduced by sealing a distal end of the catheter in an airway feeding the lung compartment. Air passes out of the lung compartment through a passage in the catheter while the patient exhales. A one-way flow element associated with the catheter prevents air from re-entering the lung compartment as the patient inhales. Over time, the pressure of regions surrounding the lung compartment cause it to collapse as the volume of air diminishes. Residual volume reduction effectively results in functional lung volume expansion. Optionally, the lung compartment may be sealed in order to permanently prevent air from re-entering the lung compartment.
    Type: Grant
    Filed: November 22, 2016
    Date of Patent: September 1, 2020
    Assignee: Pulmonx Corporation
    Inventors: Nikolai Aljuri, Rodney C. Perkins, Niyazi Beyhan
  • Publication number: 20200038612
    Abstract: The volume of a hyperinflated lung compartment is reduced by sealing a distal end of the catheter in an airway feeding the lung compartment. Air passes out of the lung compartment through a passage in the catheter while the patient exhales. A one-way flow element associated with the catheter prevents air from re-entering the lung compartment as the patient inhales. Over time, the pressure of regions surrounding the lung compartment cause it to collapse as the volume of air diminishes. Residual volume reduction effectively results in functional lung volume expansion. Optionally, the lung compartment may be sealed in order to permanently prevent air from re-entering the lung compartment. The invention further discloses a catheter with a transparent occlusion element at its tip that enables examination of the lung passageway through a viewing scope.
    Type: Application
    Filed: May 31, 2019
    Publication date: February 6, 2020
    Applicant: Pulmonx Corporation
    Inventors: Nikolai Aljuri, Rodney C. Perkins, Ryan Olivera, Hoang Nguyen, Srikanth Radhakrishnan, Niyazi Beyhan
  • Patent number: 10314992
    Abstract: The volume of a hyperinflated lung compartment is reduced by sealing a distal end of the catheter in an airway feeding the lung compartment. Air passes out of the lung compartment through a passage in the catheter while the patient exhales. A one-way flow element associated with the catheter prevents air from re-entering the lung compartment as the patient inhales. Over time, the pressure of regions surrounding the lung compartment cause it to collapse as the volume of air diminishes. Residual volume reduction effectively results in functional lung volume expansion. Optionally, the lung compartment may be sealed in order to permanently prevent air from re-entering the lung compartment. The invention further discloses a catheter with a transparent occlusion element at its tip that enables examination of the lung passageway through a viewing scope.
    Type: Grant
    Filed: May 4, 2015
    Date of Patent: June 11, 2019
    Assignee: Pulmonx Corporation
    Inventors: Nikolai Aljuri, Rodney C. Perkins, Ryan Olivera, Hoang Nguyen, Srikanth Radhakrishnan, Niyazi Beyhan
  • Publication number: 20170071606
    Abstract: The volume of a hyperinflated lung compartment is reduced by sealing a distal end of the catheter in an airway feeding the lung compartment. Air passes out of the lung compartment through a passage in the catheter while the patient exhales. A one-way flow element associated with the catheter prevents air from re-entering the lung compartment as the patient inhales. Over time, the pressure of regions surrounding the lung compartment cause it to collapse as the volume of air diminishes. Residual volume reduction effectively results in functional lung volume expansion. Optionally, the lung compartment may be sealed in order to permanently prevent air from re-entering the lung compartment.
    Type: Application
    Filed: November 22, 2016
    Publication date: March 16, 2017
    Applicant: PulmonX Corporation
    Inventors: Nikolai Aljuri, Rodney C. Perkins, Niyazi Beyhan
  • Patent number: 9533116
    Abstract: The volume of a hyperinflated lung compartment is reduced by sealing a distal end of the catheter in an airway feeding the lung compartment. Air passes out of the lung compartment through a passage in the catheter while the patient exhales. A one-way flow element associated with the catheter prevents air from re-entering the lung compartment as the patient inhales. Over time, the pressure of regions surrounding the lung compartment cause it to collapse as the volume of air diminishes. Residual volume reduction effectively results in functional lung volume expansion. Optionally, the lung compartment may be sealed in order to permanently prevent air from re-entering the lung compartment.
    Type: Grant
    Filed: July 9, 2013
    Date of Patent: January 3, 2017
    Assignee: PulmonX Corporation
    Inventors: Nikolai Alijuri, Rodney C. Perkins, Niyazi Beyhan
  • Patent number: 9050094
    Abstract: The volume of a hyperinflated lung compartment is reduced by sealing a distal end of the catheter in an airway feeding the lung compartment. Air passes out of the lung compartment through a passage in the catheter while the patient exhales. A one-way flow element associated with the catheter prevents air from re-entering the lung compartment as the patient inhales. Over time, the pressure of regions surrounding the lung compartment cause it to collapse as the volume of air diminishes. Residual volume reduction effectively results in functional lung volume expansion. Optionally, the lung compartment may be sealed in order to permanently prevent air from re-entering the lung compartment. The invention further discloses a catheter with a transparent occlusion element at its tip that enables examination of the lung passageway through a viewing scope.
    Type: Grant
    Filed: March 19, 2009
    Date of Patent: June 9, 2015
    Assignee: PULMONX CORPORATION
    Inventors: Nikolai Aljuri, Rodney C. Perkins, Ryan Olivera, Hoang Nguyen, Sri Radhakrishnan, Niyazi Beyhan
  • Patent number: 8870807
    Abstract: Devices, methods, and systems for treating Type-2 Diabetes and/or obesity by facilitating the delivery of under-digested nutrients within the gastro-intestinal tract without substantial tissue removal are disclosed. In one aspect, the gastro-intestinal tract of a patient is modified by a gastro-intestinal treatment device comprising an elongate element configured to extend within the gastro-intestinal tract, a first attachment element and a second attachment element disposed on the elongate element, wherein the first attachment element and the second attachment element are configured to attach to the gastro-intestinal tract such that a portion of the gastro-intestinal tract is compressed between the first and the second attachment elements. The length of the gastro-intestinal tract modified by the device is effectively shortened, and its surface area is reduced.
    Type: Grant
    Filed: July 19, 2011
    Date of Patent: October 28, 2014
    Inventors: Surag Mantri, Hoang Nguyen, Niyazi Beyhan
  • Publication number: 20130296696
    Abstract: The volume of a hyperinflated lung compartment is reduced by sealing a distal end of the catheter in an airway feeding the lung compartment. Air passes out of the lung compartment through a passage in the catheter while the patient exhales. A one-way flow element associated with the catheter prevents air from re-entering the lung compartment as the patient inhales. Over time, the pressure of regions surrounding the lung compartment cause it to collapse as the volume of air diminishes. Residual volume reduction effectively results in functional lung volume expansion. Optionally, the lung compartment may be sealed in order to permanently prevent air from re-entering the lung compartment.
    Type: Application
    Filed: July 9, 2013
    Publication date: November 7, 2013
    Inventors: Nikolai Aljuri, Rodney C. Perkins, Niyazi Beyhan
  • Patent number: 8496006
    Abstract: The volume of a hyperinflated lung compartment is reduced by sealing a distal end of the catheter in an airway feeding the lung compartment. Air passes out of the lung compartment through a passage in the catheter while the patient exhales. A one-way flow element associated with the catheter prevents air from re-entering the lung compartment as the patient inhales. Over time, the pressure of regions surrounding the lung compartment cause it to collapse as the volume of air diminishes. Residual volume reduction effectively results in functional lung volume expansion. Optionally, the lung compartment may be sealed in order to permanently prevent air from re-entering the lung compartment.
    Type: Grant
    Filed: June 22, 2010
    Date of Patent: July 30, 2013
    Assignee: Pulmonx Corporation
    Inventors: Nikolai Aljuri, Rodney C. Perkins, Niyazi Beyhan
  • Publication number: 20120065651
    Abstract: Devices, methods, and systems for treating Type-2 Diabetes and/or obesity by facilitating the delivery of under-digested nutrients within the gastro-intestinal tract without substantial tissue removal are disclosed. In one aspect, the gastro-intestinal tract of a patient is modified by a gastro-intestinal treatment device comprising an elongate element configured to extend within the gastro-intestinal tract, a first attachment element and a second attachment element disposed on the elongate element, wherein the first attachment element and the second attachment element are configured to attach to the gastro-intestinal tract such that a portion of the gastro-intestinal tract is compressed between the first and the second attachment elements. The length of the gastro-intestinal tract modified by the device is effectively shortened, and its surface area is reduced.
    Type: Application
    Filed: July 19, 2011
    Publication date: March 15, 2012
    Inventors: Surag Mantri, Hoang Nguyen, Niyazi Beyhan
  • Publication number: 20110301483
    Abstract: A method of determining potential treatment sites in a diseased lung is disclosed, in which an assessment catheter is introduced into a lung passageway. The catheter has a distal portion comprising an occluding member and a proximal portion configured to operatively mate with an external console. The catheter is used to identify one or more assessment sites within the airways of the lung. At each assessment site, at least one physiological, anatomical or biological characteristic is determined. A characteristic score for each assessment site is calculated based on a predetermined algorithm; and a treatment is determined based on the scores of the assessment sites. The algorithm takes into account several parameters including the disease characteristics as well as the number and proximity of each assessment site to at least one of the diseased regions. The method envisages treatment of emphysema, asthma or bronchopleural leak.
    Type: Application
    Filed: December 8, 2010
    Publication date: December 8, 2011
    Applicant: Pulmonx Corporation
    Inventors: Niyazi Beyhan, Srikanth Radhakrishnan
  • Publication number: 20110295141
    Abstract: A method for assessing lung function in a patient is disclosed. The method comprises isolating a lung compartment. Thereafter, in one embodiment, an inhaled gas of known composition is introduced into the lung and compared to the composition of the exhaled gas. Alternatively, accumulated CO2 content is measured within the isolated lung compartment over time, and compared to a baseline CO2 content. Alternatively, a change in pressure of an isolated lung compartment may be monitored. Alternatively, the magnitude of the range of CO2 values in an isolated lung compartment can be compared to a predetermined threshold. Any of the results obtained via these alternative embodiments may be used to determine lung function.
    Type: Application
    Filed: November 24, 2010
    Publication date: December 1, 2011
    Applicant: Pulmonx Corporation
    Inventors: Srikanth Radhakrishnan, Ryan Olivera, Niyazi Beyhan, Surag Mantri, Lutz Freitag
  • Publication number: 20110251509
    Abstract: Devices systems and methods are disclosed for preventing or inhibiting secretions from entering the lumen of a functional assessment catheter for the lungs, or removing collected secretions. The catheter comprises an expandable element, a cover, or an internal component configured to prevent or inhibit secretion flow into the lumen. The catheter alternatively or additionally comprises a distal end configured to facilitate air flow, absorb secretions or repel secretions away from the catheter tip. The catheter alternatively or additionally comprises an internal element such as a coilable wire, or an obturator configured to prevent secretions from being drawn into the lumen, or to actively remove the secretions. The catheter alternatively or additionally comprises an element to dry, aerate or aspirate the lung passageways.
    Type: Application
    Filed: February 9, 2011
    Publication date: October 13, 2011
    Applicant: Pulmonx Corporation
    Inventors: Niyazi Beyhan, Surag Mantri, Hoang Nguyen, Son Gia, Gregory Alan Pulido, Dushyant Jivanlal Shah, George Surjan, Gregory Michael Ruhf, Lutz Freitag
  • Publication number: 20110152678
    Abstract: The volume of a hyperinflated lung compartment is reduced by sealing a distal end of the catheter in an airway feeding the lung compartment. Air passes out of the lung compartment through a passage in the catheter while the patient exhales. A one-way flow element associated with the catheter prevents air from re-entering the lung compartment as the patient inhales. Over time, the pressure of regions surrounding the lung compartment cause it to collapse as the volume of air diminishes. Residual volume reduction effectively results in functional lung volume expansion. Optionally, the lung compartment may be sealed in order to permanently prevent air from re-entering the lung compartment.
    Type: Application
    Filed: June 22, 2010
    Publication date: June 23, 2011
    Applicant: Pulmonx Corporation
    Inventors: Nikolai Aljuri, Rodney C. Perkins, Niyazi Beyhan