Patents Assigned to Pacesetter
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Publication number: 20210205628Abstract: An implantable system including an atrial leadless pacemaker (aLP) and a ventricular leadless pacemaker (vLP), and methods for use therewith, are configured or used to terminate a pacemaker mediated tachycardia (PMT). In an embodiment, in response to the aLP detecting a PMT, the aLP initiates a PMT PA interval, and the aLP does not inform the vLP, via an i2i communication, of an atrial sensed event that caused the PMT to be detected, thereby preventing the vLP from initiating a PV interval during the PMT PA interval. The aLP selectively terminates the PMT PA interval. Additionally, the aLP informs the vLP, via an i2i communication, of an intrinsic atrial event being detected during the PMT PA interval, or of an atrial paced event being performed in response to the PMT PA interval expiring without an intrinsic atrial event being detected during the PMT PA interval.Type: ApplicationFiled: March 23, 2021Publication date: July 8, 2021Applicant: Pacesetter, Inc.Inventors: Chunlan Jiang, Matthew G. Fishler
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Publication number: 20210205604Abstract: Techniques for calibrating a low frequency (LF) clock of an IMD are disclosed, wherein the IMD also includes a high frequency (HF) clock. This includes determining an average, or a surrogate thereof, of how many HF clock cycles of a HF clock signal (produced by the HF clock) occur per LF clock cycle of a predetermined number N of LF clock cycles of the LF clock signal (produced by the LF clock), wherein N is an integer that is at least 2. This also includes comparing the average or a surrogate thereof to a corresponding target value that the average or the surrogate thereof would be equal to if the frequency of the LF clock signal equaled a target frequency for the LF clock, wherein the corresponding target value need not be an integer. The LF clock is calibrated by adjusting the frequency thereof based on results of the comparing.Type: ApplicationFiled: October 27, 2020Publication date: July 8, 2021Applicant: Pacesetter, Inc.Inventors: Dean Andersen, Eiji Shirai
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Patent number: 11045643Abstract: Methods and devices include making an incision at a single site of a patient. The single site located at an anterior of a chest or abdomen. The method also includes inserting a tunneling tool through the incision at the single site and preparing a first tunnel to a subcutaneous posterior location. A path of the first tunnel at least one of i) extends over a plurality of Intercostal gaps of the chest or ii) extends along and within one of the intercostal gaps. The method also includes positioning a first lead having an electrode within the first tunnel and preparing a second tunnel to a subcutaneous parasternal location along the chest. The method also includes positioning a second lead having an electrode within the second tunnel and positioning a pulse generator within a subcutaneous pocket and operatively coupling the first and second leads to the pulse generator.Type: GrantFiled: May 7, 2018Date of Patent: June 29, 2021Assignee: Pacesetter, Inc.Inventors: Avi Fischer, Xiaoyi Min, Kyungmoo Ryu, Gene A. Bornzin, Keith Victorine, Stuart Rosenberg, Shubha Asopa
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Publication number: 20210187285Abstract: Delivery of implantable active agent delivery components includes implanting a distal lead end of a lead into tissue at an implantation site. A delivery stylet is then inserted through a lead lumen of the lead. The delivery stylet includes a stylet body having a distal stylet end and an active agent delivery component detachably coupled to the distal stylet end. The active agent delivery component is inserted into the tissue at the implantation site by extending the distal stylet end of the delivery stylet from a distal lead end of the lead such that the active agent delivery component is inserted into the tissue at the implantation site. The active agent delivery component is then detached within the tissue at the implantation site and the delivery stylet may be retracted and removed from the lead lumen.Type: ApplicationFiled: December 15, 2020Publication date: June 24, 2021Applicant: Pacesetter, Inc.Inventor: Christopher Jenney
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Patent number: 11040210Abstract: An implantable medical device including a can, a feedthrough and an antenna assembly. The can includes a lead connector assembly, electronics, and a metal wall defining a hermetic sealed compartment. The electronics and lead connector assembly are located in the hermetic sealed compartment. The feedthrough extends through the metal wall between the hermetic sealed compartment and exterior the metal wall. The antenna assembly includes an antenna extending along the metal wall in a spaced-apart manner from the metal wall and encased in a dielectric material. The dielectric material occupies a space between the antenna and the metal wall. The antenna is electrically connected to the electronics via an RF conductor of the feedthrough.Type: GrantFiled: April 2, 2018Date of Patent: June 22, 2021Assignee: Pacesetter, Inc.Inventors: Wisit Lim, Perry Li
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Patent number: 11040213Abstract: Methods and devices are provided for detecting a magnetic field in a presence of an implantable medical device (IMD). The IMD includes at least one electrode and a magnetic detection sensor configured to detect a magnetic field of an external magnetic source. The IMD includes a notification circuit, and an arrhythmia circuit configured to analyze cardiac signals sensed by the electrode and to deliver a therapy based on the cardiac signals. The IMD includes an electronics circuit that is configured to suspend the delivery of the therapy in response to detection of the magnetic field by the magnetic field sensor. The electronics circuit is configured to trigger the notification circuit to generate a notification output in response to the detection of the magnetic field indicating that the therapy has been suspended.Type: GrantFiled: March 6, 2018Date of Patent: June 22, 2021Assignee: PACESETTER, INC.Inventors: Anthony J. Li, Xing Pei
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Patent number: 11041912Abstract: A method of screening a battery for failure mechanisms is provided. The method may include activating an electrochemical cell. Within 5 minutes to two hours of activating the cell, the open circuit voltage of the cell is measured over a period of time to determine a voltage versus time function. The cell is then screened for the presence of a failure mechanism by checking the voltage versus time function for a failure criteria.Type: GrantFiled: April 2, 2020Date of Patent: June 22, 2021Assignee: Pacesetter, Inc.Inventors: Steven Davis, Xiaofei Jiang, Joseph Beauvais
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Patent number: 11040195Abstract: The present disclosure provides systems and methods for reducing RF heating in implantable leads. An implantable lead includes a first electrode, and a coupling component spaced from the first electrode, wherein the first electrode and the coupling component form a capacitor, wherein the first electrode and the coupling component are electrically isolated from one another at therapy frequencies, and wherein the first electrode and the coupling component are electrically coupled to one another at magnetic resonance imaging (MRI) frequencies.Type: GrantFiled: November 16, 2018Date of Patent: June 22, 2021Assignee: PACESETTER, INC.Inventors: Xi Lin Chen, Shiloh Sison
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Publication number: 20210184320Abstract: A battery includes a case having a feedthrough port, a feedthrough assembly disposed in the feedthrough port, and a cell stack disposed within the case. The feedthrough port includes an inner conductor and an insulator core separating the inner conductor from the case. The cell stack includes an anode, a cathode, and a separator insulating the anode from the cathode, wherein the anode and cathode are offset from one another. An insulating boot surrounding the cell stack insulates the cell stack from the case. The insulating boot has an opening configured to receive therein the feedthrough assembly, which may include overmolded insulation. The interior surfaces and interior walls of the battery case may be thermal spray-coated with a dielectric material to prevent lithium dendrite formation between cathode and anode surfaces.Type: ApplicationFiled: February 19, 2021Publication date: June 17, 2021Applicant: Pacesetter, Inc.Inventors: Russell Bruch, Joseph Beauvais, Jeffrey Armstrong, Del Charles Brooks III, Christopher Hallmark, John Duggan
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Patent number: 11026590Abstract: Systems for monitoring left atrial pressure using implantable cardiac monitoring devices and, more specifically, to a left atrial pressure sensor implanted through a septal wall are presented herein.Type: GrantFiled: September 24, 2018Date of Patent: June 8, 2021Assignee: PACESETTER, INC.Inventors: Phong D. Doan, Apratim Dixit
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Patent number: 11027136Abstract: Systems and methods for His bundle pacing using a stimulation device include applying an impulse to a His bundle of a patient heart using the stimulation device. The stimulation device then measures a response of the patient heart to application of the impulse that includes a response of a ventricle of the patient heart. The stimulation device calculates a ventricular delay as a time from application of the impulse to onset of the response of the ventricle and delivers, using a lead of the stimulation device, a backup impulse to the ventricle when at least the ventricular delay exceeds a delay value stored in a memory of the stimulation device. The stored delay may, for example, correspond to a previously determined value indicative of selective or other His bundle capture.Type: GrantFiled: September 21, 2018Date of Patent: June 8, 2021Assignee: PACESETTER, INC.Inventors: Jan O. Mangual-Soto, Wenwen Li, Nima Badie, Luke C. McSpadden
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Patent number: 11027119Abstract: In at least one embodiment, a system and method for implanting an implantable medical device (IMD) within a patient may include an IMD including a housing and an attachment member, and a delivery catheter including a tethering snare that is configured to be selectively extended out of the delivery catheter and retracted into the delivery catheter. In at least one embodiment, a system and method for implanting an implantable medical device (IMD) within a patient may include an IMD including a housing and an attachment member, wherein the attachment member includes a central passage connected to a connection chamber, and a delivery catheter including first and second tethers that may be moved outwardly from and retracted into the delivery catheter.Type: GrantFiled: November 13, 2018Date of Patent: June 8, 2021Assignee: PACESETTER, INC.Inventors: Thomas B. Eby, Alan Klenk
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Publication number: 20210167488Abstract: Systems and methods for an implantable medical device which utilizes a patch antenna for communicating with an external device. The implantable medical device includes a housing, a header, and a patch antenna formed using an RF plate and a ground plate, which may be or include a metal surface of the housing. Also, a material of the header forms a dielectric of the patch antenna.Type: ApplicationFiled: February 12, 2021Publication date: June 3, 2021Applicant: Pacesetter, Inc.Inventors: Perry Li, Lequan Zhang
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Patent number: 11020036Abstract: Computer implemented methods and systems for detecting arrhythmias in cardiac activity are provided. The method is under control of one or more processors configured with specific executable instructions. The method obtains a far field cardiac activity (CA) data set that includes far field CA signals for beats. The method applies a feature enhancement function to the CA signals to form an enhanced feature in the CA data set. The method calculates an adaptive sensitivity level and sensitivity limit based on the enhanced feature from one or more beats within the CA data set and automatically iteratively analyzes a beat segment of interest by comparing the beat segment of interest to the current sensitivity level to determine whether one or more R-waves are present within the beat segment of interest.Type: GrantFiled: May 7, 2018Date of Patent: June 1, 2021Assignee: PACESETTER, INC.Inventors: Fady Dawoud, Fujian Qu, Stuart Rosenberg, Gene A. Bornzin, Jong Gill, Neha Malhotra, Xiaoyi Min
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Patent number: 11017955Abstract: A cathode subassembly for use in an electrolytic capacitor may include a first separator sheet including a surface having first and second regions, where the second region extends from a perimeter of the first region to a first peripheral edge of the first sheet, a second peripheral edge of a second sheet is substantially aligned with the first peripheral edge, a conductive foil is sandwiched between the first and second sheets and disposed within the first region, the first and second sheets are adhered to each other in a sealing region extending from the second region to a region of a surface of the second sheet facing the second region, and the first sheet includes at least one first recessed portion at the first peripheral edge aligned with at least one second recessed portion at the second peripheral edge of the second sheet.Type: GrantFiled: January 17, 2018Date of Patent: May 25, 2021Assignee: Pacesetter, Inc.Inventors: David R. Bowen, Ralph Jason Hemphill, Thomas F. Strange, Troy L. McCurry, Peter Fernstrom
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Patent number: 11013533Abstract: Systems and methods for delivering and retrieving a leadless pacemaker are described. A leadless pacemaker retrieval system includes a catheter system having a snare assembly to capture the leadless pacemaker. The catheter system includes sheaths extending distally from a shaft, and the snare assembly includes several snare legs, such as segments of snare loops, that extend from one sheath to connect to another sheath. The snare loops can have bights that connect to opposing sheaths to form a docking space between the legs of the snare loops and radially between the sheaths. The snare assembly is movable between an engaged position and a disengaged position by translating the snare legs within lumens of the corresponding sheaths. In the engaged position, the snare assembly tightens around the leadless pacemaker to allow the leadless pacemaker to be retrieved. Other embodiments are also described and claimed.Type: GrantFiled: December 10, 2018Date of Patent: May 25, 2021Assignee: PACESETTER, INC.Inventors: Daniel Goodman, John Pocrnich
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Patent number: 11007370Abstract: A method is provided for establishing a communication session with an implantable medical device (“IMD”). The method includes configuring an IMD and an external device to communicate with one another through a protocol that utilizes a dedicated advertisement channel. The advertisement period and the scan period of the protocol are independent of one another such that the advertisement and scan periods at least partially overlap intermittently after a number of cycles. When the external device detects one of the advertisement notices, the method includes establishing a communications link between the external device and the IMD.Type: GrantFiled: January 2, 2018Date of Patent: May 18, 2021Assignee: PACESETTER, INC.Inventors: Reza Shahandeh, Richard Williamson, Gabriel A. Mouchawar, Brent Croft, William Winstrom, Robert McCormick, Jorge N. Amely-Velez, Thanh Tieu, Ali Dianaty, Samir Shah, Yongjian Wu
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Patent number: 11000189Abstract: Computer implemented methods, systems and devices are provided to monitor for potential heart failure (HF). Cardiac activity (CA) data is obtained and filtered to obtain respiration data indicative of a respiration pattern. The respiration data is analyzed to determine one or more respiration characteristics of interest (COI) that are recorded along with collection time information to form an HF monitoring log. Additionally or alternatively, the CA data is analyzed to detect an event of interest. The cardiac activity data is filtered to obtain respiration data indicative of a respiration pattern, and the respiration data is analyzed for respiration induced under detection of the event of interest from the CA data.Type: GrantFiled: November 3, 2017Date of Patent: May 11, 2021Assignee: PACESETTER, INC.Inventors: Stephanie C. Sun, Xiaoyi Min, Alan B. Vogel, Fujian Qu, Stuart Rosenberg
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Patent number: 11006296Abstract: A method for determining quality of a communications link between an external instrument (EI) and an implantable medical device (IMD) is provided. The method includes receiving, with a receiver of an EI, data packets sent at intervals from an IMD and determining, with a processor of the EI, an expected time interval between a first data packet and a second data packet. The processor of the EI determines a difference between the expected time interval between the first data packet and the second data packet and an actual time interval between the first data packet and the second data packet. The processor of the EI also provides a time variant communication quality indicator based on the difference between the expected time interval between the first data packet and the second data packet and the actual time interval between the first data packet and the second data packet.Type: GrantFiled: November 19, 2018Date of Patent: May 11, 2021Assignee: PACESETTER, INC.Inventor: Xing Pei
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Publication number: 20210134533Abstract: A capacitor and a method of processing an anode metal foil are presented. The method includes electrochemically etching the metal foil to form a plurality of tunnels. Next, the etched metal foil is disposed within a widening solution to widen the plurality of tunnels. Exposed surfaces of the etched metal foil are then oxidized. The method includes removing a section of the etched metal foil, where the section of the etched metal foil includes exposed metal along an edge. The section of the etched metal foil is placed into a bath comprising water to form a hydration layer over the exposed metal on the section of the etched metal foil. The method also includes assembling the section of the etched metal foil having the hydration layer as an anode within a capacitor.Type: ApplicationFiled: January 11, 2021Publication date: May 6, 2021Applicant: Pacesetter, Inc.Inventors: David R. Bowen, Ralph Jason Hemphill