Patents by Inventor Nikolai Aljuri

Nikolai Aljuri 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: 8454527
    Abstract: Minimally invasive methods, systems and devices are provided for qualitatively and quantitatively assessing collateral ventilation in the lungs. In particular, collateral ventilation of a target compartment within a lung of a patient is assessed by advancement of a catheter through the tracheobronchial tree to a feeding bronchus of the target compartment. The feeding bronchus is occluded by the catheter and a variety of measurements are taken with the use of the catheter in a manner which is of low risk to the patient. Examples of such measurements include but are not limited to flow rate, volume and pressure. These measurements are used to determine the presence of collateral ventilation and to quantify such collateral ventilation.
    Type: Grant
    Filed: December 17, 2010
    Date of Patent: June 4, 2013
    Assignee: Pulmonx Corporation
    Inventors: Nikolai Aljuri, Anthony Wondka, George Surjan, Kirk Davis, Peter Soltesz, Rodney C. Perkins
  • Patent number: 8342182
    Abstract: Lung conditions are diagnosed and optionally treated using a functional assessment catheter or a functional lung assessment and treatment catheter. A flow restrictive component is initially placed in a bronchus or lung passageway upstream from a diseased lung region. The isolated lung region is then functionally assessed through the catheter, while the flow restrictive component remains in place. If the patient is a good candidate for treatment by occlusive or restrictive treatment techniques, the flow resistive component may be left in place. If the patient is not suitable for such treatment, the flow resistive component may be removed.
    Type: Grant
    Filed: August 27, 2007
    Date of Patent: January 1, 2013
    Assignee: Pulmonx Corporation
    Inventors: Ajit Nair, Son Gia, Roger Farhnoltz, Nikolai Aljuri
  • Patent number: 8136526
    Abstract: Lung conditions are treated by implanting a flow restrictor in a passageway upstream from a diseased lung segment. The restrictor will create an orifice at the implantation site which inhibits air exchange with the segment to induce controlled atelectasis and/or hypoxia. Controlled atelectasis can induce collapse of the diseased segment with a reduced risk of pneumothorax. Hypoxia can promote gas exchange with non-isolated, healthy regions of the lung even in the absence of lung collapse.
    Type: Grant
    Filed: March 7, 2007
    Date of Patent: March 20, 2012
    Assignee: Pulmonx Corporation
    Inventors: Rodney C. Perkins, Nikolai Aljuri, Ajit Nair
  • Patent number: 8137302
    Abstract: The lateral flow between adjacent lung segments is occluded by blocking collateral flow channels with particles. A gas flow is established from one lung segment through the flow channels in an intermediate fibrous septum, and out through the adjacent lung segment. Particles entrained in the gas flow become lodged in the collateral flow channels to eventually block flow.
    Type: Grant
    Filed: March 12, 2007
    Date of Patent: March 20, 2012
    Assignee: Pulmonx Corporation
    Inventors: Nikolai Aljuri, Jose G. Venegas, Ajit Nair, Rodney C. Perkins
  • Publication number: 20110270116
    Abstract: Minimally invasive methods, systems and devices are provided for assessing collateral ventilation in the lungs. In particular, collateral ventilation of a target compartment within a lung of a patient is assessed by advancement of a catheter through the tracheobronchial tree to a feeding airway of the target compartment. The feeding airway is occluded by the catheter and the opening and closing of a one-way valve coupled with the catheter is observed. If the valve ceases opening and closing over time, this may indicate that significant collateral ventilation into the target compartment is absent. If the valve continues to open and close over time, significant collateral ventilation into the compartment may be present. Based on the collateral ventilation assessment, a treatment plan may be generated.
    Type: Application
    Filed: October 27, 2010
    Publication date: November 3, 2011
    Applicant: Pulmonx Corporation
    Inventors: Lutz Freitag, Nikolai Aljuri
  • Publication number: 20110184391
    Abstract: Prostate treatment using fluid stream to resect prostate tissue, thereby relieving symptoms of conditions such as BPH, prostatitis, and prostatic carcinoma. A device having a fluid delivery element is positioned within a lumen of the urethra within the prostate. A fluid stream is directed outwardly from the fluid delivery element toward a wall of the urethral lumen. The fluid delivery element is moved to scan the fluid stream over the wall to remove a volume of tissue surrounding the lumen. The fluid may be combined with therapeutically active substances or with substances that increase resection efficiency. Fluid force may be adjusted to provide selective tissue resection such that soft tissue is removed while harder tissue is left undamaged. In order to gain a working space within the urethra, another fluid may be introduced to insufflate the urethra in the region of treatment.
    Type: Application
    Filed: February 4, 2010
    Publication date: July 28, 2011
    Applicant: PROCEPT Corporation
    Inventors: Nikolai Aljuri, Ajit Nair, Paren Shah, Adam Nemeyer, Daniel Grupp
  • 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
  • Publication number: 20110087122
    Abstract: Minimally invasive methods, systems and devices are provided for qualitatively and quantitatively assessing collateral ventilation in the lungs. In particular, collateral ventilation of a target compartment within a lung of a patient is assessed by advancement of a catheter through the tracheobronchial tree to a feeding bronchus of the target compartment. The feeding bronchus is occluded by the catheter and a variety of measurements are taken with the use of the catheter in a manner which is of low risk to the patient. Examples of such measurements include but are not limited to flow rate, volume and pressure. These measurements are used to determine the presence of collateral ventilation and to quantify such collateral ventilation.
    Type: Application
    Filed: December 17, 2010
    Publication date: April 14, 2011
    Applicant: Pulmonx Corporation
    Inventors: Nikolai Aljuri, Anthony Wondka, George Surjan, Kirk Davis, Peter Soltesz, Rodney C. Perkins
  • Patent number: 7882841
    Abstract: Methods and systems for resecting and debulking prostatic tissue to utilize a shaft carrying an energy source. The shaft is anchored by a balloon or other structure expanded in the bladder, and the energy source is capable of directing ablative energy radially outwardly from the urethra, where the energy source will be moved in order to remove a pre-defined volume of prostatic tissue.
    Type: Grant
    Filed: January 2, 2008
    Date of Patent: February 8, 2011
    Assignee: Procept Corporation
    Inventors: Nikolai Aljuri, Rodney C. Perkins
  • Patent number: 7883471
    Abstract: Minimally invasive methods, systems and devices are provided for qualitatively and quantitatively assessing collateral ventilation in the lungs. In particular, collateral ventilation of a target compartment within a lung of a patient is assessed by advancement of a catheter through the tracheobronchial tree to a feeding bronchus of the target compartment. The feeding bronchus is occluded by the catheter and a variety of measurements are taken with the use of the catheter in a manner which is of low risk to the patient. Examples of such measurements include but are not limited to flow rate, volume and pressure. These measurements are used to determine the presence of collateral ventilation and to quantify such collateral ventilation.
    Type: Grant
    Filed: December 7, 2005
    Date of Patent: February 8, 2011
    Assignee: Pulmonx Corporation
    Inventors: Nikolai Aljuri, Anthony Wondka, George Surjan, Kirk Davis, Peter Soltesz, Rodney C. Perkins
  • Publication number: 20100158795
    Abstract: Methods and systems for isolating, assessing and treating lung compartments are disclosed. One or more lung compartments are accessed through an isolation catheter, oxygen rich gas is delivered to the compartments, and blood oxygen or exhaled carbon dioxide are monitored to assess lung compartment function. Diseased lung compartments may be treated using therapeutic agents delivered to the diseased compartments through the isolation catheter. Therapeutic agents include carbon monoxide, radioactive agents, chemotherapeutic agents or angiogenesis inhibitors and angiocidal agents.
    Type: Application
    Filed: May 28, 2009
    Publication date: June 24, 2010
    Applicant: PULMONx
    Inventors: Nikolai Aljuri, Niyazi Beyhan
  • Publication number: 20100042089
    Abstract: Medical methods and systems are provided for effecting lung volume reduction by selectively ablating segments of lung tissue.
    Type: Application
    Filed: October 26, 2009
    Publication date: February 18, 2010
    Applicant: Pulmonx Corporation
    Inventors: Peter P. Soltesz, Nikolai Aljuri, Ajit Nair
  • Patent number: 7628789
    Abstract: Medical methods and systems are provided for effecting lung volume reduction by selectively ablating segments of lung tissue.
    Type: Grant
    Filed: July 28, 2006
    Date of Patent: December 8, 2009
    Assignee: Pulmonx Corporation
    Inventors: Peter P. Soltesz, Nikolai Aljuri, Ajit Nair
  • Publication number: 20090241964
    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 19, 2009
    Publication date: October 1, 2009
    Applicant: Pulmonx, Inc.
    Inventors: Nikolai Aljuri, Rodney C. Perkins, Ryan Olivera, Hoang Nguyen, Sri Radhakrishnan, Niyazi Beyhan
  • Publication number: 20090227998
    Abstract: Methods and systems for modifying tissue use a pressurized fluid stream carrying coherent light energy. The methods and systems may be used for resecting and debulking soft and hard biological tissues. The coherent light is focused within a stream of fluid to deliver energy to the tissue to be treated.
    Type: Application
    Filed: March 6, 2009
    Publication date: September 10, 2009
    Applicant: AquaBeam LLC
    Inventors: Nikolai Aljuri, Rodney C. Perkins
  • Publication number: 20090025728
    Abstract: Methods and systems are provided for detecting movement of the breathing tube in a surrounding airway of a patient. The breathing tube includes an optical fiber or camera system for producing a video image of the airway from the distal end of the breathing tube. By obtaining a baseline image and comparing said baseline image with successive images, the position of the breathing tube can be automatically monitored and a signal provided when the image differs from the baseline by more than a threshold value.
    Type: Application
    Filed: March 11, 2008
    Publication date: January 29, 2009
    Applicant: LungPort Corporation c/o Rodney Perkins and Associates
    Inventors: Nikolai Aljuri, Rodney C. Perkins, Jeffrey S. Stuart
  • Publication number: 20090018533
    Abstract: Methods and systems for resecting and debulking prostatic tissue to utilize a shaft carrying an energy source. The shaft is anchored by a balloon or other structure expanded in the bladder, and the energy source is capable of directing ablative energy radially outwardly from the urethra, where the energy source will be moved in order to remove a pre-defined volume of prostatic tissue.
    Type: Application
    Filed: January 2, 2008
    Publication date: January 15, 2009
    Applicant: Procept Corporation
    Inventors: Rodney C. Perkins, Nikolai Aljuri
  • Publication number: 20080228130
    Abstract: The lateral flow between adjacent lung segments is occluded by blocking collateral flow channels with particles. A gas flow is established from one lung segment through the flow channels in an intermediate fibrous septum, and out through the adjacent lung segment. Particles entrained in the gas flow become lodged in the collateral flow channels to eventually block flow.
    Type: Application
    Filed: March 12, 2007
    Publication date: September 18, 2008
    Applicant: PULMONx
    Inventors: Nikolai Aljuri, Jose G. Venegas, Ajit Nair, Rodney C. Perkins
  • Publication number: 20080228137
    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: March 12, 2007
    Publication date: September 18, 2008
    Applicant: PULMONx
    Inventors: Nikolai Aljuri, Rodney C. Perkins
  • Publication number: 20080051719
    Abstract: Lung conditions are diagnosed and optionally treated using a functional assessment catheter or a functional lung assessment and treatment catheter. A flow restrictive component is initially placed in a bronchus or lung passageway upstream from a diseased lung region. The isolated lung region is then functionally assessed through the catheter, while the flow restrictive component remains in place. If the patient is a good candidate for treatment by occlusive or restrictive treatment techniques, the flow resistive component may be left in place. If the patient is not suitable for such treatment, the flow resistive component may be removed.
    Type: Application
    Filed: August 27, 2007
    Publication date: February 28, 2008
    Applicant: PULMONx
    Inventors: Ajit Nair, Son Gia, Roger Farhnoltz, Nikolai Aljuri