Patents by Inventor David A. Smith, JR.

David A. Smith, JR. 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: 12000049
    Abstract: A reactor furnace for coating fiber tow includes an elongate reactor having a fiber tow inlet and a fiber tow outlet; a thermo-chemical reactor section positioned along the elongate reactor; a first microwave source for directing microwave energy along the reactor from a first end of the reactor toward a second end of the reactor; a second microwave source for directing microwave energy along the reactor from the second end of the reactor toward the first end of the reactor; a gas inlet upstream of the thermo-chemical reactor; and a gas outlet downstream of the thermo-chemical reactor.
    Type: Grant
    Filed: December 22, 2021
    Date of Patent: June 4, 2024
    Assignee: RTX Corporation
    Inventors: John J. Gangloff, Jr., John E. Holowczak, Ying She, Kenneth David Smith, Haralambos Cordatos, Gurkan Gok, Zissis A. Dardas
  • Publication number: 20240122617
    Abstract: Variations of integral navigation controls may be used in conjunction with a medical instrument to provide navigation functions for an image guided surgery (IGS) system that is in communication with the integral navigation controls. In some variations, a medical instrument with integrated navigation wheels allows movement of a cursor of the IGS system along the x and y axis by scrolling the wheel, or allows selection, zooming, or other controls by combined clicking and/or scrolling of wheels, and may be sterilized or discarded along with the device. In some other variations, a control overlay may be temporarily attached to the medical instrument to provide additional controls, such as buttons or a pointing stick, and then removed and sterilized or discarded after a procedure. In each variation, inputs may be communicated via wire or wirelessly to an IGS system to provide navigation of images during a surgical procedure.
    Type: Application
    Filed: December 28, 2023
    Publication date: April 18, 2024
    Inventors: Jetmir Palushi, Itzhak Fang, Ehsan Shameli, David A. Smith, JR., Fatemeh Akbarian, Henry F. Salazar, John H. Thinnes, JR., Hany Abdelwahed, Babak Ebrahimi, Oleg Dulger
  • Publication number: 20240081987
    Abstract: Aspects of the disclosure relate to prosthetic valves having a frame, a frame cover, and a leaflet construct. Some aspects are directed to a diametric taper for the prosthetic valve for achieving enhanced performance of the prosthetic valve under operational conditions, enhanced compressibility and delivery characteristics, and other additional or alternative advantages. Other aspects are directed toward unique assembly and attachment methods for securing leaflet constructs to support structures. Other aspects are directed toward features for interacting with transcatheter delivery systems. Still other aspects are directed to such apparatuses, systems, and methods for valve replacement, such as cardiac valve replacement.
    Type: Application
    Filed: November 16, 2023
    Publication date: March 14, 2024
    Inventors: David J. Arcaro, Kevin J. Derryberry, Dustin V. Dienno, Edwin W. Field, Bill R. Finney, Joshua C. Haarer, Logan R. Hagaman, Cody L. Hartman, Russell L. Jacoby, Roy Manygoats, JR., Stephen M. Probert, Benjamin A. Smith, Andrew P. Hilton, Olga Baykova, Jason T. Alger
  • Patent number: 11890026
    Abstract: Variations of integral navigation controls may be used in conjunction with a medical instrument to provide navigation functions for an image guided surgery (IGS) system that is in communication with the integral navigation controls. In some variations, a medical instrument with integrated navigation wheels allows movement of a cursor of the IGS system along the x and y axis by scrolling the wheel, or allows selection, zooming, or other controls by combined clicking and/or scrolling of wheels, and may be sterilized or discarded along with the device. In some other variations, a control overlay may be temporarily attached to the medical instrument to provide additional controls, such as buttons or a pointing stick, and then removed and sterilized or discarded after a procedure. In each variation, inputs may be communicated via wire or wirelessly to an IGS system to provide navigation of images during a surgical procedure.
    Type: Grant
    Filed: August 12, 2021
    Date of Patent: February 6, 2024
    Assignees: Acclarent, Inc., Biosense Webster (Israel) Ltd.
    Inventors: Jetmir Palushi, Itzhak Fang, Ehsan Shameli, David A. Smith, Jr., Fatemeh Akbarian, Henry F. Salazar, John H. Thinnes, Jr., Hany Abdelwahed, Babak Ebrahimi, Oleg Dulger
  • Patent number: 11678940
    Abstract: A system includes a dilation catheter and a guide member. The dilation catheter includes a proximal end, a distal end, a dilator, a navigation sensor, and a force sensor. The dilator is positioned proximal to the distal end and is configured to transition between a non-dilated configuration and a dilated configuration. The navigation sensor is positioned distal to the dilator and is configured to cooperate with a guidance system and thereby provide signals indicating a position of the dilation catheter in three-dimensional space. The force sensor is positioned distal to the dilator and is configured to provide signals indicating a force encountered by the force sensor. The dilation catheter is configured to slide relative to the guide member. A distal portion of the guide member is sized and configured to fit in a nasal cavity of a patient.
    Type: Grant
    Filed: October 8, 2020
    Date of Patent: June 20, 2023
    Assignee: Acclarent, Inc.
    Inventors: Henry F. Salazar, Jetmir Palushi, David A. Smith, Jr.
  • Publication number: 20220015786
    Abstract: Variations of integral navigation controls may be used in conjunction with a medical instrument to provide navigation functions for an image guided surgery (IGS) system that is in communication with the integral navigation controls. In some variations, a medical instrument with integrated navigation wheels allows movement of a cursor of the IGS system along the x and y axis by scrolling the wheel, or allows selection, zooming, or other controls by combined clicking and/or scrolling of wheels, and may be sterilized or discarded along with the device. In some other variations, a control overlay may be temporarily attached to the medical instrument to provide additional controls, such as buttons or a pointing stick, and then removed and sterilized or discarded after a procedure. In each variation, inputs may be communicated via wire or wirelessly to an IGS system to provide navigation of images during a surgical procedure.
    Type: Application
    Filed: August 12, 2021
    Publication date: January 20, 2022
    Inventors: Jetmir Palushi, Itzhak Fang, Ehsan Shameli, David A. Smith, JR., Fatemeh Akbarian, Henry F. Salazar, John H. Thinnes, JR., Hany Abdelwahed, Babak Ebrahimi, Oleg Dulger
  • Patent number: 11147629
    Abstract: A surgical navigation system includes an endoscope having a body, a shaft having a distal shaft end, an optical conduit, and a moveable optical element. The moveable optical element is configured to provide a field of view defining a line of sight, and is operable to capture an image within the field of view. The system further includes a drive mechanism operable to move the movable optical element to adjust a direction of the line of sight, a navigation sensor operable to generate a signal corresponding to a location of the distal shaft end within a patient, and a processor. The processor is operable to determine a location of the distal shaft end within the patient based on the signal, and command the drive mechanism to position the movable optical element so the line of sight is directed toward a selected point of interest within the patient.
    Type: Grant
    Filed: June 8, 2018
    Date of Patent: October 19, 2021
    Assignee: Acclarent, Inc.
    Inventors: Jetmir Palushi, Itzhak Fang, William J. Kane, David A. Smith, Jr.
  • Patent number: 11103266
    Abstract: Variations of integral navigation controls may be used in conjunction with a medical instrument to provide navigation functions for an image guided surgery (IGS) system that is in communication with the integral navigation controls. In some variations, a medical instrument with integrated navigation wheels allows movement of a cursor of the IGS system along the x and y axis by scrolling the wheel, or allows selection, zooming, or other controls by combined clicking and/or scrolling of wheels, and may be sterilized or discarded along with the device. In some other variations, a control overlay may be temporarily attached to the medical instrument to provide additional controls, such as buttons or a pointing stick, and then removed and sterilized or discarded after a procedure. In each variation, inputs may be communicated via wire or wirelessly to an IGS system to provide navigation of images during a surgical procedure.
    Type: Grant
    Filed: December 5, 2018
    Date of Patent: August 31, 2021
    Assignees: Acclarent, Inc., Biosense Webster (Israel) Ltd.
    Inventors: Jetmir Palushi, Itzhak Fang, Ehsan Shameli, David A. Smith, Jr., Fatemeh Akbarian, Henry F. Salazar, John H. Thinnes, Jr., Hany Abdelwahed, Babak Ebrahimi, Oleg Dulger
  • Publication number: 20210196401
    Abstract: A surgical instrument and method of tracking the surgical instrument includes a shaft, a cutting member, and navigation system. The shaft has a shaft lumen, a shaft window, and a shaft edge. The cutting member is disposed within the shaft lumen and is configured to cyclically move from a first position to a second position relative to the shaft. The cutting member includes a cutting window opening, a cutting edge, and a suction lumen to cut the tissue portion with the cutting member in the first position. The navigation system includes a navigation sensor positioned on at least one of the shaft or the cutting member that is configured to be tracked within a patient for identifying a positional movement of the shaft or the cutting member within the patient.
    Type: Application
    Filed: February 23, 2021
    Publication date: July 1, 2021
    Inventors: Fatemeh Akbarian, Itzhak Fang, Azhang Hamlekhan, Jetmir Palushi, Ehsan Shameli, David A. Smith, JR.
  • Patent number: 10967159
    Abstract: A catheter system and method of dilating first and second anatomies includes a guide catheter extending along a longitudinal axis that has a breakaway distal end portion with a conduit in communication with the lumen. The conduit is configured to guide a dilation catheter at a first predetermined angle relative to the longitudinal axis and a second predetermined angle relative to the longitudinal axis for respectively dilating the first and second anatomies. The breakaway distal end portion includes first and second guide segments at least partially defining the conduit and respectively extending the first and predetermined angles to first and second distal openings. The second guide segment is removably connected to the first guide segment for selectively guiding the dilation catheter along the second predetermined angle when connected and along the first predetermined angle when disconnected.
    Type: Grant
    Filed: June 15, 2018
    Date of Patent: April 6, 2021
    Assignee: Acclarent, Inc.
    Inventors: George L. Matlock, Don Q. Ngo-Chu, Jetmir Palushi, Tuan Pham, Henry F. Salazar, David A. Smith, Jr., John H. Thinnes, Jr.
  • Patent number: 10959677
    Abstract: An apparatus includes a body, an upright member, a frame, and a plurality of field generating elements. The body is configured to be positioned between a patient's back and a backrest of a chair. The upright member extends upwardly from the body. The frame has a curved configuration configured to partially surround a patient's head. The field generating elements are configured to generate an electromagnetic field around a patient's head partially surrounded by the frame.
    Type: Grant
    Filed: January 30, 2020
    Date of Patent: March 30, 2021
    Assignees: Acclarent, Inc., Biosense Webster (Israel) Ltd.
    Inventors: Henry F. Salazar, Jetmir Palushi, William J. Kane, Fatemeh Akbarian, Ika Dekel, Noam Racheli, Helen Wolfson, Nawid Mehrzai, Jephrey S. Rodriguez, Ketan P. Muni, Andrew Drake, David A. Smith, Jr., Scott A. Kirchner, Todd A. Veloni, Itamar Bustan
  • Patent number: 10959785
    Abstract: A surgical instrument and method of tracking the surgical instrument includes a shaft, a cutting member, and navigation system. The shaft has a shaft lumen, a shaft window, and a shaft edge. The cutting member is disposed within the shaft lumen and is configured to cyclically move from a first position to a second position relative to the shaft. The cutting member includes a cutting window opening, a cutting edge, and a suction lumen to cut the tissue portion with the cutting member in the first position. The navigation system includes a navigation sensor positioned on at least one of the shaft or the cutting member that is configured to be tracked within a patient for identifying a positional movement of the shaft or the cutting member within the patient.
    Type: Grant
    Filed: December 12, 2017
    Date of Patent: March 30, 2021
    Assignee: Acclarent, Inc.
    Inventors: Fatemeh Akbarian, Itzhak Fang, Azhang Hamlekhan, Jetmir Palushi, Ehsan Shameli, David A. Smith, Jr.
  • Publication number: 20210085402
    Abstract: A system includes a dilation catheter and a guide member. The dilation catheter includes a proximal end, a distal end, a dilator, a navigation sensor, and a force sensor. The dilator is positioned proximal to the distal end and is configured to transition between a non-dilated configuration and a dilated configuration. The navigation sensor is positioned distal to the dilator and is configured to cooperate with a guidance system and thereby provide signals indicating a position of the dilation catheter in three-dimensional space. The force sensor is positioned distal to the dilator and is configured to provide signals indicating a force encountered by the force sensor. The dilation catheter is configured to slide relative to the guide member. A distal portion of the guide member is sized and configured to fit in a nasal cavity of a patient.
    Type: Application
    Filed: October 8, 2020
    Publication date: March 25, 2021
    Inventors: Henry F. Salazar, Jetmir Palushi, David A. Smith, JR.
  • Publication number: 20210085929
    Abstract: A dilation apparatus includes a handle assembly, a dilator, a guidewire, and a steering assembly. The dilator is connected to the handle assembly and is configured to transition between an unexpanded state and an expanded state. The guidewire is longitudinally fixed relative to the dilator. The steering assembly is configured to laterally deflect at least a portion of the guidewire relative to the handle assembly. The steering assembly includes an actuator coupled with the handle assembly and a pull wire extending between the actuator and guidewire. A portion of the pull wire is attached to the guidewire. The actuator is configured to move the pull wire relative to the handle assembly in order to laterally deflect the at least a portion of the guidewire.
    Type: Application
    Filed: October 8, 2020
    Publication date: March 25, 2021
    Inventors: Don Q. Ngo-Chu, Jetmir Palushi, Itzhak Fang, Henry F. Salazar, David A. Smith, JR.
  • Patent number: 10864046
    Abstract: A system includes a dilation catheter and a guide member. The dilation catheter includes a proximal end, a distal end, a dilator, a navigation sensor, and a force sensor. The dilator is positioned proximal to the distal end and is configured to transition between a non-dilated configuration and a dilated configuration. The navigation sensor is positioned distal to the dilator and is configured to cooperate with a guidance system and thereby provide signals indicating a position of the dilation catheter in three-dimensional space. The force sensor is positioned distal to the dilator and is configured to provide signals indicating a force encountered by the force sensor. The dilation catheter is configured to slide relative to the guide member. A distal portion of the guide member is sized and configured to fit in a nasal cavity of a patient.
    Type: Grant
    Filed: December 4, 2017
    Date of Patent: December 15, 2020
    Assignee: Acclarent, Inc.
    Inventors: Henry F. Salazar, Jetmir Palushi, David A. Smith, Jr.
  • Patent number: 10857333
    Abstract: A dilation apparatus includes a handle assembly, a dilator, a guidewire, and a steering assembly. The dilator is connected to the handle assembly and is configured to transition between an unexpanded state and an expanded state. The guidewire is longitudinally fixed relative to the dilator. The steering assembly is configured to laterally deflect at least a portion of the guidewire relative to the handle assembly. The steering assembly includes an actuator coupled with the handle assembly and a pull wire extending between the actuator and guidewire. A portion of the pull wire is attached to the guidewire. The actuator is configured to move the pull wire relative to the handle assembly in order to laterally deflect the at least a portion of the guidewire.
    Type: Grant
    Filed: November 27, 2017
    Date of Patent: December 8, 2020
    Assignee: Acclarent, Inc.
    Inventors: Don Q. Ngo-Chu, Jetmir Palushi, Itzhak Fang, Henry F. Salazar, David A. Smith, Jr.
  • Patent number: 10736647
    Abstract: A dilation catheter includes a catheter shaft, an expandable element, and a navigation sensor. The catheter shaft has a proximal shaft portion defining a proximal shaft end, a distal shaft portion defining a distal shaft end, and a working lumen extending between the proximal and distal shaft ends. The expandable element is disposed on the distal shaft portion proximally of the distal shaft end, and is configured to expand to dilate an anatomical passageway of a patient. The navigation sensor is arranged at the distal shaft portion, and is configured to generate a signal corresponding to a location of the distal shaft portion within the patient. In various examples, the dilation catheter may further include a bulbous distal tip, and the navigation sensor may be arranged within the bulbous distal tip.
    Type: Grant
    Filed: October 30, 2017
    Date of Patent: August 11, 2020
    Assignees: Acclarent, Inc., Biosense Webster (Israel) Ltd.
    Inventors: Jetmir Palushi, Henry F. Salazar, Fatemeh Akbarian, Vadim Gliner, David A. Smith, Jr., Itzhak Fang
  • Publication number: 20200222007
    Abstract: An apparatus includes a body, an upright member, a frame, and a plurality of field generating elements. The body is configured to be positioned between a patient's back and a backrest of a chair. The upright member extends upwardly from the body. The frame has a curved configuration configured to partially surround a patient's head. The field generating elements are configured to generate an electromagnetic field around a patient's head partially surrounded by the frame.
    Type: Application
    Filed: January 30, 2020
    Publication date: July 16, 2020
    Inventors: Henry F. Salazar, Jetmir Palushi, William J. Kane, Fatemeh Akbarian, Ika Dekel, Noam Racheli, Helen Wolfson, Nawid Mehrzai, Jephrey S. Rodriguez, Ketan P. Muni, Andrew Drake, David A. Smith, JR., Scott A. Kirchner, Todd A. Veloni, Itamar Bustan
  • Patent number: 10561370
    Abstract: An apparatus includes a body, an upright member, a frame, and a plurality of field generating elements. The body is configured to be positioned between a patient's back and a backrest of a chair. The upright member extends upwardly from the body. The frame has a curved configuration configured to partially surround a patient's head. The field generating elements are configured to generate an electromagnetic field around a patient's head partially surrounded by the frame.
    Type: Grant
    Filed: March 23, 2018
    Date of Patent: February 18, 2020
    Assignees: Accalrent, Inc., Biosense Webster (Israel) Ltd.
    Inventors: Henry F. Salazar, Jetmir Palushi, William J. Kane, Fatemeh Akbarian, Ika Dekel, Noam Racheli, Helen Wolfson, Nawid Mehrzai, Jephrey S. Rodriguez, Ketan P. Muni, Andrew Drake, David A. Smith, Jr., Scott A. Kirchner, Todd A. Veloni, Itamar Bustan
  • Publication number: 20190374288
    Abstract: A surgical navigation system includes an endoscope having a body, a shaft having a distal shaft end, an optical conduit, and a moveable optical element. The moveable optical element is configured to provide a field of view defining a line of sight, and is operable to capture an image within the field of view. The system further includes a drive mechanism operable to move the movable optical element to adjust a direction of the line of sight, a navigation sensor operable to generate a signal corresponding to a location of the distal shaft end within a patient, and a processor. The processor is operable to determine a location of the distal shaft end within the patient based on the signal, and command the drive mechanism to position the movable optical element so the line of sight is directed toward a selected point of interest within the patient.
    Type: Application
    Filed: June 8, 2018
    Publication date: December 12, 2019
    Inventors: Jetmir Palushi, Itzhak Fang, William J. Kane, David A. Smith, JR.