Patents Assigned to Farapulse, Inc.
  • Publication number: 20210045798
    Abstract: Systems, devices, and methods for electroporation ablation therapy are disclosed, with the device including a first jaw including a plurality of first electrodes and a second jaw including a plurality of second electrodes. The first jaw and the second jaw may be substantially rigid, elongate, and collectively define a longitudinal axis. The first jaw and the second jaw may be configured to engage tissue therebetween during use.
    Type: Application
    Filed: November 2, 2020
    Publication date: February 18, 2021
    Applicant: Farapulse, Inc.
    Inventors: Raju VISWANATHAN, Gary L. LONG
  • Publication number: 20210022794
    Abstract: Systems, devices, and methods for current control of energy delivery to ablate tissue are disclosed. A generator may include a set of electrode channels coupled to a set of electrodes during use. Each electrode channel from the set of electrode channels may include a first switch from a first set of switches and a second switch from a second set of switches. A set of energy sources may be coupled to a third set of switches. The third set of switches may be configured to switch from an OFF state to an ON state to couple the set of energy sources to the set of electrodes. A set of resistors may be coupled to the second set of switches. The second set of switches may be configured to switch from an OFF state to an ON state to couple the set of resistors to the set of electrodes.
    Type: Application
    Filed: August 7, 2020
    Publication date: January 28, 2021
    Applicant: Farapulse, Inc.
    Inventor: Raju VISWANATHAN
  • Patent number: 10893905
    Abstract: Systems, devices, and methods for electroporation ablation therapy are disclosed, with the system including a pulse waveform signal generator for medical ablation therapy, and an endocardial ablation device includes an inflatable member and at least one electrode for focal ablation pulse delivery to tissue. The signal generator may deliver voltage pulses to the ablation device in the form of a pulse waveform. The system may include a cardiac stimulator for generation of pacing signals and for sequenced delivery of pulse waveforms in synchrony with the pacing signal.
    Type: Grant
    Filed: March 12, 2020
    Date of Patent: January 19, 2021
    Assignee: Farapulse, Inc.
    Inventors: Raju Viswanathan, Gary L. Long
  • Publication number: 20200397505
    Abstract: Systems, devices, and methods for electroporation ablation therapy are disclosed. An apparatus may include a linear shaft including a distal portion positionable near a tissue wall. The linear shaft can be configured to deflect to position the distal portion near the tissue wall. The apparatus can include a plurality of electrodes disposed on the distal portion of the linear shaft, where the plurality of electrodes are configured to generate a pulsed electric field that produces an ablation zone in the tissue wall having a depth that is independent of an orientation of the distal portion relative to the tissue wall.
    Type: Application
    Filed: March 24, 2020
    Publication date: December 24, 2020
    Applicant: Farapulse, Inc.
    Inventors: Raju VISWANATHAN, Gary L. LONG
  • Publication number: 20200398050
    Abstract: Systems, devices, and methods for electroporation ablation therapy are disclosed in the context of esophageal ablation. An ablation device may include a first catheter defining a longitudinal axis and a lumen therethrough. A balloon may be coupled to the first catheter. The balloon may be configured to transition between a deflated configuration and an inflated configuration. A second catheter may extend from a distal end of the first catheter lumen. A set of splines including electrodes formed on a surface of each of the splines may couple to the distal end of the first catheter lumen and a distal portion of the second catheter. The second catheter may be configured for translation along the longitudinal axis to transition the set of splines between a first configuration and a second configuration.
    Type: Application
    Filed: March 30, 2020
    Publication date: December 24, 2020
    Applicant: Farapulse, Inc.
    Inventors: Raju VISWANATHAN, Gary LONG, Jean-Luc PAGEARD
  • Publication number: 20200397498
    Abstract: Systems, tools and methods are disclosed for the selective and rapid application of DC voltage to drive irreversible electroporation, with the system controller capable of being configured to apply voltages to independently selected subsets of electrodes and capable of generating at least one control signal to maintain the temperature near an electrode head within a desired range of values. Electrode clamp devices are also disclosed for generating electric fields to drive irreversible electroporation while modulating temperature to elevate the irreversible electroporation threshold utilizing a variety of means such as cooling fluid or solid state thermoelectric heat pumps.
    Type: Application
    Filed: April 2, 2020
    Publication date: December 24, 2020
    Applicant: Farapulse, Inc.
    Inventors: Steven R. MICKELSEN, Raju VISWANATHAN, Allan ZINGELER
  • Patent number: 10842561
    Abstract: Systems, devices, and methods for electroporation ablation therapy are disclosed, with the system including a pulse waveform signal generator for medical ablation therapy, and an endocardial ablation device includes at least one electrode for ablation pulse delivery to tissue. The signal generator may deliver voltage pulses to the ablation device in the form of a pulse waveform. The system may include a cardiac stimulator for generation of pacing signals and for sequenced delivery of pulse waveforms in synchrony with the pacing signal.
    Type: Grant
    Filed: October 7, 2019
    Date of Patent: November 24, 2020
    Assignee: Farapulse, Inc.
    Inventors: Raju Viswanathan, Gary Long, Jean-Luc Pageard, Brittney Hachey
  • Patent number: 10842572
    Abstract: Systems, devices, and methods for electroporation ablation therapy are disclosed. An apparatus may be configured to activate a field generator to generate an electric or magnetic field such that signals are received by a receiver coupled to an ablation device disposed adjacent to a tissue surface. Processed data associated with the signals may be obtained. A position and an orientation of the ablation device may be determined based on the processed data. An expected ablation zone of the ablation device in the tissue surface may be determined based on the position and the orientation of the ablation device. A map of the tissue surface and a visual representation of the expected ablation zone disposed in the map of the tissue surface may be displayed.
    Type: Grant
    Filed: February 7, 2020
    Date of Patent: November 24, 2020
    Assignee: Farapulse, Inc.
    Inventor: Raju Viswanathan
  • Patent number: 10835314
    Abstract: An apparatus includes a shaft, the shaft including a plurality of stepped sections along the length of the shaft. The apparatus further includes a plurality of electrodes disposed along the length of the shaft, each electrode characterized by a geometric aspect ratio of the length of the electrode to the outer diameter of the electrode. Each electrode is located at a different stepped section of the plurality of stepped sections of the shaft and includes a set of leads. Each lead of the set of leads is configured to attain an electrical voltage potential of at least about 1 kV. The geometric aspect ratio of at least one electrode of the plurality of electrodes is in the range between about 3 and about 20.
    Type: Grant
    Filed: April 11, 2017
    Date of Patent: November 17, 2020
    Assignee: Farapulse, Inc.
    Inventors: Gary Long, Raju Viswanathan
  • Publication number: 20200297411
    Abstract: A catheter device for renal denervation ablation includes a flexible catheter shaft having an electrically insulating expandable member in its distal portion with at least one electrode located proximal to the member, at least one electrode located distal to the member, and with openings in the distal shaft with at least one opening proximal to the proximal electrode and one opening distal to the distal electrode of said electrode pair, said openings connected through an inner lumen in the catheter that provides a path for blood to flow through the expandable member. In one embodiment, the device comprises a flexible catheter shaft with a multiplicity of recessed paired electrodes disposed in recessed spaces in its distal portion, such that an electrically conducting portion of each electrode is exposed to the exterior of the catheter within a recessed space, and with an electrical insulator separating the electrodes of each pair.
    Type: Application
    Filed: December 18, 2019
    Publication date: September 24, 2020
    Applicant: Farapulse, Inc.
    Inventor: Gary LONG
  • Publication number: 20200289197
    Abstract: Systems, devices, and methods for electroporation ablation therapy are disclosed, with the device including a set of splines coupled to a catheter for medical ablation therapy. Each spline of the set of splines may include a set of electrodes formed on that spline. The set of splines may be configured for translation to transition between a first configuration and a second configuration. The devices described herein may be used to form a lesion via focal ablation.
    Type: Application
    Filed: May 28, 2020
    Publication date: September 17, 2020
    Applicant: Farapulse, Inc.
    Inventors: Raju VISWANATHAN, Allan ZINGELER, Gary LONG, Jean-Luc PAGEARD, Brittney HACHEY
  • Publication number: 20200230403
    Abstract: Systems, devices, and methods for electroporation ablation therapy are disclosed, with the system including a pulse waveform signal generator for medical ablation therapy that may be coupled to an ablation device including at least one electrode for ablation pulse delivery to tissue. The signal generator may generate and deliver voltage pulses to the ablation device in the form of a pulse waveform in a predetermined sequence where the signal generator may independently configure a set of electrodes of an ablation device. The signal generator may further perform active monitoring of a set of electrode channels and discharge excess energy using the set of electrode channels.
    Type: Application
    Filed: October 25, 2019
    Publication date: July 23, 2020
    Applicant: Farapulse, Inc.
    Inventors: William BOWERS, Raju VISWANATHAN, Gary LONG
  • Patent number: 10709502
    Abstract: A system includes a pulse waveform generator and an ablation device coupled to the pulse waveform generator. The ablation device includes at least one electrode configured for ablation pulse delivery to tissue during use. The pulse waveform generator is configured to deliver voltage pulses to the ablation device in the form of a pulsed waveform. The pulsed waveform can include multiple levels of hierarchy, and multiple sets of electrodes can be activated such that their pulsed delivery is interleaved with one another.
    Type: Grant
    Filed: December 20, 2019
    Date of Patent: July 14, 2020
    Assignee: Farapulse, Inc.
    Inventor: Raju Viswanathan
  • Patent number: 10709891
    Abstract: A system includes a pulse waveform generator and an ablation device coupled to the pulse waveform generator. The ablation device includes at least one electrode configured for ablation pulse delivery to tissue during use. The pulse waveform generator is configured to deliver voltage pulses to the ablation device in the form of a pulsed waveform. A first level of a hierarchy of the pulsed waveform includes a first set of pulses, each pulse having a pulse time duration, with a first time interval separating successive pulses. A second level of the hierarchy of the pulsed waveform includes a plurality of first sets of pulses as a second set of pulses, a second time interval separating successive first sets of pulses, the second time interval being at least three times the duration of the first time interval.
    Type: Grant
    Filed: December 20, 2019
    Date of Patent: July 14, 2020
    Assignee: Farapulse, Inc.
    Inventors: Raju Viswanathan, Gary Long
  • Publication number: 20200205892
    Abstract: Systems, devices, and methods for electroporation ablation therapy are disclosed, with the system including a pulse waveform signal generator for medical ablation therapy, and an endocardial ablation device includes an inflatable member and at least one electrode for focal ablation pulse delivery to tissue. The signal generator may deliver voltage pulses to the ablation device in the form of a pulse waveform. The system may include a cardiac stimulator for generation of pacing signals and for sequenced delivery of pulse waveforms in synchrony with the pacing signal.
    Type: Application
    Filed: March 12, 2020
    Publication date: July 2, 2020
    Applicant: Farapulse, Inc.
    Inventors: Raju VISWANATHAN, Gary L. LONG
  • Patent number: 10688305
    Abstract: Systems, apparatus, and methods for ablation therapy are described herein, with a processor for confirming pacing capture or detecting ectopic beats. An apparatus includes a processor for receiving cardiac signal data captured by a set of electrodes, extracting a sliding window of the cardiac signal data, identifying a peak frequency over a subrange of frequencies associated with the extracted sliding window, detecting ectopic activity based at least on a measure of the peak frequency over the subrange of frequencies, in response to detecting ectopic activity, sending an indication of ectopic activity to a signal generator configured to generate pulsed waveforms for cardiac ablation such that the signal generator is deactivated or switched off from generating the pulsed waveforms. An apparatus can further include a processor for confirming pacing capture of the set of pacing pulses based on cardiac signal data.
    Type: Grant
    Filed: January 13, 2020
    Date of Patent: June 23, 2020
    Assignee: Farapulse, Inc.
    Inventor: Raju Viswanathan
  • Patent number: 10687892
    Abstract: Systems, devices, and methods for electroporation ablation therapy are disclosed herein, including an inflatable member for positioning an ablation device within a pulmonary vein ostium. An apparatus can include first and second shafts moveable relative to one another, first and second electrodes configured to generate an electric field for ablating tissue, and an inflatable member disposed between the first and second electrodes. In some embodiments, the inflatable member is configured to transition from an undeployed configuration to a deployed configuration in response to movement of the first and second shafts. In some embodiments, the inflatable member in the deployed configuration can engage a wall of a pulmonary vein ostium and direct the electric field generated by the first and second electrodes toward the wall.
    Type: Grant
    Filed: September 19, 2019
    Date of Patent: June 23, 2020
    Assignee: Farapulse, Inc.
    Inventors: Gary L. Long, Raju Viswanathan, Jean-Luc Pageard, Benoit Thibault
  • Patent number: 10660702
    Abstract: Systems, devices, and methods for electroporation ablation therapy are disclosed, with the device including a set of splines coupled to a catheter for medical ablation therapy. Each spline of the set of splines may include a set of electrodes formed on that spline. The set of splines may be configured for translation to transition between a first configuration and a second configuration. The devices described herein may be used to form a lesion via focal ablation.
    Type: Grant
    Filed: April 4, 2019
    Date of Patent: May 26, 2020
    Assignee: Farapulse, Inc.
    Inventors: Raju Viswanathan, Allan Zingeler, Gary Long, Jean-Luc Pageard, Brittney Hachey
  • Publication number: 20200139114
    Abstract: A system includes a pulse waveform generator and an ablation device coupled to the pulse waveform generator. The ablation device includes at least one electrode configured for ablation pulse delivery to tissue during use. The pulse waveform generator is configured to deliver voltage pulses to the ablation device in the form of a pulsed waveform. A first level of a hierarchy of the pulsed waveform includes a first set of pulses, each pulse having a pulse time duration, with a first time interval separating successive pulses. A second level of the hierarchy of the pulsed waveform includes a plurality of first sets of pulses as a second set of pulses, a second time interval separating successive first sets of pulses, the second time interval being at least three times the duration of the first time interval.
    Type: Application
    Filed: December 20, 2019
    Publication date: May 7, 2020
    Applicant: Farapulse, Inc.
    Inventors: Raju VISWANATHAN, Gary LONG
  • Publication number: 20200129233
    Abstract: A system includes a pulse waveform generator and an ablation device coupled to the pulse waveform generator. The ablation device includes at least one electrode configured for ablation pulse delivery to tissue during use. The pulse waveform generator is configured to deliver voltage pulses to the ablation device in the form of a pulsed waveform. The pulsed waveform can include multiple levels of hierarchy, and multiple sets of electrodes can be activated such that their pulsed delivery is interleaved with one another.
    Type: Application
    Filed: December 20, 2019
    Publication date: April 30, 2020
    Applicant: Farapulse, Inc.
    Inventor: Raju VISWANATHAN