Patents Assigned to Pacesetter
  • Publication number: 20140200644
    Abstract: A bioelectric battery may be used to power implantable devices. The bioelectric battery may have an anode electrode and a cathode electrode separated by an insulating member comprising a tube having a first end and a second end, wherein said anode is inserted into said first end of said tube and said cathode surrounds said tube such that the tube provides a support for the cathode electrode. The bioelectric battery may also have a membrane surrounding the cathode to reduce tissue encapsulation. Alternatively, an anode electrode, a cathode electrode surrounding the cathode electrode, a permeable membrane surrounding the cathode electrode. An electrolyte is disposed within the permeable membrane and a mesh surrounds the permeable membrane. In an alternative embodiment, a pacemaker housing acts as a cathode electrode for a bioelectric battery and an anode electrode is attached to the housing with an insulative adhesive.
    Type: Application
    Filed: March 14, 2014
    Publication date: July 17, 2014
    Applicant: Pacesetter, Inc.
    Inventors: Naixiong Jiang, Gene A. Bornzin, John W. Poore, Sheldon Williams, Weiqun Yang, Taraneh Ghaffari Farazi
  • Patent number: 8781606
    Abstract: As described herein vascular anchoring systems are used to position an implant in a vascular area such as a bifurcated vasculature with relatively high fluid flow, for instance, in an area of a pulmonary artery with associated left and right pulmonary arteries. Implementations include an anchoring trunk member having a first anchoring trunk section and a second anchoring trunk section. Further implementations include a first anchoring branch member extending from the anchoring trunk member. Still further implementations include a second anchoring branch member extending from the anchoring trunk member.
    Type: Grant
    Filed: April 1, 2008
    Date of Patent: July 15, 2014
    Assignee: Pacesetter, Inc.
    Inventors: George W. Keilman, Timothy Johnson
  • Patent number: 8781605
    Abstract: An assembly for introducing a leadless intra-cardiac medical device includes a sheath having an internal passage, wherein the sheath is configured to be maneuvered into the heart of the patient. A housing may be retained within the internal passage, wherein the housing is configured to be pushed out of the sheath, the housing having a first anchoring member configured to anchor the housing to a first implant location within the heart. The assembly may also include an electrode trailing the housing within the internal passage, wherein the electrode is also configured to be pushed out of the sheath. The electrode has a second anchoring member configured to anchor the electrode to a second implant location within the heart. A conductive wire connects the housing to the electrode, wherein movement of the housing out of the sheath causes the electrode to follow the movement to a distal end of the sheath.
    Type: Grant
    Filed: January 17, 2012
    Date of Patent: July 15, 2014
    Assignee: Pacesetter, Inc.
    Inventors: Gene A. Bornzin, John W. Poore, Zoltan Somogyi
  • Patent number: 8768461
    Abstract: Techniques are provided for use with implantable medical devices equipped to deliver paired postextrasystolic potentiation (PESP) pacing within a patient having an intact ventricle and a weakened ventricle. A first interpulse interval is determined for use with paired PESP pacing of the intact ventricle sufficient to achieve only relatively minimal potentiation within the intact ventricle. A second interpulse interval is determined for use with paired PESP pacing of the weakened ventricle sufficient to achieve relatively more significant potentiation within the weakened ventricle. Then, paired PESP pacing is delivered to the intact ventricle using the first interpulse interval while paired PESP is also delivered to the weakened ventricle using the second interpulse interval to reduce contractility disequilibrium within the heart caused by the weakened ventricle to achieve a matching of natural contractilities. In this manner, dual ventricular, independently timed, continuous PESP is provided.
    Type: Grant
    Filed: September 6, 2011
    Date of Patent: July 1, 2014
    Assignee: Pacesetter, Inc.
    Inventor: Paul M. Stein
  • Publication number: 20140172034
    Abstract: An assembly is provided for introducing a device within a heart of a patient. The assembly is comprised of a sheath having at least one internal passage. An intra-cardiac implantable medical device (IIMD) is retained within the at least one internal passage, wherein the IIMD is configured to be discharged from a distal end of the sheath. The IIMD has a housing with a first active fixation member configured to anchor the IIMD at a first implant location within a local chamber of the heart.
    Type: Application
    Filed: December 18, 2012
    Publication date: June 19, 2014
    Applicant: PACESETTER, INC.
    Inventors: Gene A. Bornzin, John W. Poore, Zoltan Somogyi, Xiaoyi Min, Didier Theret
  • Publication number: 20140172060
    Abstract: A leadless intra-cardiac medical device (LIMD) is configured to be implanted entirely within a heart of a patient. The LIMD comprises a housing configured to be securely attached to an interior wall portion of a chamber of the heart, and a stabilizing intra-cardiac (IC) device extension connected to the housing. The stabilizing IC device extension may include a stabilizer arm, and/or an appendage arm, or an elongated body or a loop member configured to be passively secured within the heart.
    Type: Application
    Filed: February 21, 2014
    Publication date: June 19, 2014
    Applicant: PACESETTER, INC.
    Inventors: Gene A. Bornzin, Xiaoyi Min, John W. Poore, Zoltan Somogyi, Didier Theret
  • Publication number: 20140172033
    Abstract: An implantable medical device is provided for detecting transportless ventricular rhythm of a heart lacking atrial transport and comprises a housing, sensors configured to be located proximate to a heart, a sensing module to sense cardiac signals representative of a rhythm originating from the heart and a rhythm detection module. The rhythm detection module determines a change in AV association and identifies a potential ventricular complex with loss of atrial transport (VCLAT) based on the change in AV association.
    Type: Application
    Filed: February 21, 2014
    Publication date: June 19, 2014
    Applicant: PACESETTER, INC.
    Inventors: Xing Pei, Paul A. Levine
  • Patent number: 8750993
    Abstract: Tachyarrhythmia is treated by applying anti-tachycardia pacing through at least one multi-site electrode set located on, in or around the heart. The electrode set is arranged and located such that an electrical activation pattern having a wave-front between substantially flat and concave is generated through a reentrant circuit associated with the tachyarrhythmia. The electrode set may be one of a plurality of predefined, multi-site electrode sets located on, in or around the atria. Alternatively, the electrode set may be formed using at least two selectable electrodes located on, in or around the atria.
    Type: Grant
    Filed: February 16, 2011
    Date of Patent: June 10, 2014
    Assignee: Pacesetter, Inc.
    Inventors: Kyungmoo Ryu, Jong Gill, Xiaoyi Min, Annapurna Karicherla, Gene A. Bornzin
  • Patent number: 8750975
    Abstract: In an implantable heart monitoring device and method, particularly for monitoring diastolic dysfunction, a control circuit (a) detects the heart rate, (b) derives information correlated to the stroke volume of the heart at the detected heart rate, and (c) stores the detected heart rate and the derived information correlated to the stroke volume in a memory. The control circuit automatically implements (a), (b) and (c) at a number of different occasions for a number of different, naturally varying heart rates, so that the memory contains information indicating the stroke volume as a function of the heart rate.
    Type: Grant
    Filed: August 20, 2013
    Date of Patent: June 10, 2014
    Assignee: Pacesetter, Inc.
    Inventors: Andreas Blomqvist, Michael Broome
  • Patent number: 8750981
    Abstract: Techniques are provided for use with an implantable medical device for detecting and assessing heart failure and for controlling cardiac resynchronization therapy (CRT) based on impedance signals obtained using hybrid impedance configurations. The hybrid configurations exploit right atrial (RA)-based impedance measurement vectors and/or left ventricular (LV)-based impedance measurement vectors. In one example, current is injected between the device case and a ring electrode in the right ventricle (RV) or RA. RA-based impedance values are measured along vectors between the device case and an RA electrode. LV-based impedance values are measured along vectors between the device case and one or more electrodes of the LV. Heart failure and other cardiac conditions are detected and tracked using the measured impedance values. CRT delay parameters are also optimized based impedance.
    Type: Grant
    Filed: August 25, 2011
    Date of Patent: June 10, 2014
    Assignee: Pacesetter, Inc.
    Inventors: Gene A. Bornzin, Xiaoyi Min, Laurence S. Sloman, Steve Koh
  • Patent number: 8751018
    Abstract: A method of manufacturing an implantable lead includes providing a core including at least one longitudinal lumen; providing a jacket comprising a reflowable material; positioning the core at least partially within the jacket; and, after positioning, applying heat to cause the material of the jacket to reflow and bond to the core. An implantable lead includes a core including at least one longitudinal lumen; and a jacket comprising a reflowable material. The core may be at least partially disposed within the jacket with the material of the jacket reflow-bonded to the core. The implantable lead may further include at least one lead component associated with at least one of the core and the jacket.
    Type: Grant
    Filed: September 13, 2007
    Date of Patent: June 10, 2014
    Assignee: Pacesetter Inc.
    Inventors: Dorab N. Sethna, Keith Victorine, Scott Salys
  • Patent number: 8750972
    Abstract: An implantable medical device system that senses physiologic processes via multiple sensor signal configurations. The device can further process the sensor configurations to obtain additional processed signal configurations. The device can utilize the processed configurations for ongoing sensing of the physiologic process. The device can also automatically evaluate the multiple sensor configurations as well as the processed configurations and select the configuration offering the best signal discrimination to reduce oversensing or erroneously interpreting secondary characteristics of the physiologic process as corresponding to primary characteristics of the process as in double-counting. The signal discrimination can be evaluated as an absolute margin and/or a ratio between amplitudes of the primary and secondary characteristics. The signal discrimination can also be evaluated based at least in part on a calculated mean and standard deviation according to each configuration.
    Type: Grant
    Filed: September 15, 2009
    Date of Patent: June 10, 2014
    Assignee: Pacesetter, Inc.
    Inventors: Steve Hofstadter, Christopher Koch, Mark W. Kroll
  • Patent number: 8747417
    Abstract: A lead implantation tool is disclosed herein. The tool may be configured to operably couple to a lead connector end of an implantable cardiac electrotherapy lead including an active fixation helix tip and wherein the lead connector end includes a contact pin proximally extending from the lead connector end. The tool may include a feature configured to couple to the contact pin and a first mechanism configured to convert linear movement into rotational movement of the contact pin relative to the lead connector end. The tool may further include a second mechanism that causes a stylet extending through the tool and into the contact pin to at least one of distally and proximally displace within the contact pin.
    Type: Grant
    Filed: February 25, 2009
    Date of Patent: June 10, 2014
    Assignee: Pacesetter, Inc.
    Inventor: Frank Truong
  • Publication number: 20140155966
    Abstract: Implementations described and claimed herein provide an implantable lead optimized for an implant environment and methods of manufacturing such implantable leads. The implantable lead includes an insulation layer having one or more transitions along a length of the insulation layer from a proximal end to a distal end. Each of the transitions is a seamless change from a section of the insulation layer having a set of performance characteristics to another section of the insulation layer having a different set of performance characteristics.
    Type: Application
    Filed: November 30, 2012
    Publication date: June 5, 2014
    Applicant: PACESETTER, INC.
    Inventors: Dorab N. Sethna, Steven R. Conger
  • Publication number: 20140155707
    Abstract: Implantable systems, and methods for use therewith, are provided for monitoring for an impending myocardial infarction. A signal indicative of changes in arterial blood volume is obtained. Such a signal can be a photoplethysmography signal or an impedance plethysmography signal. For each of a plurality of periods of time, a metric indicative of the areas under the curve of the signal or number of inflections in the signal is determined. An impending myocardial infarction is monitored for based on changes in the metric indicative of the area under the curve of the signal or number of inflections in the signal, and an alert and/or therapy is triggered in response to an impending myocardial infarction being predicted.
    Type: Application
    Filed: February 4, 2014
    Publication date: June 5, 2014
    Applicant: Pacesetter, Inc.
    Inventors: Timothy A. Fayram, Daniell Dokko, Taraneh Ghaffari Farazi, Mark Carlson
  • Patent number: 8744583
    Abstract: A feedthrough assembly for use with implantable medical devices having a shield structure, the feedthrough assembly engaging with the remainder of the associated implantable medical device to form a seal with the medical device to inhibit unwanted gas, liquid, or solid exchange into or from the device. One or more feedthrough wires extend through the feedthrough assembly to facilitate transceiving of the electrical signals with one or more implantable patient leads. The feedthrough assembly is connected to a mechanical support which houses one or more filtering capacitors that are configured to filter and remove undesired frequencies from the electrical signals received via the feedthrough wires before the signals reach the electrical circuitry inside the implantable medical device.
    Type: Grant
    Filed: March 6, 2012
    Date of Patent: June 3, 2014
    Assignee: Pacesetter, Inc.
    Inventor: Zeev Lavie
  • Publication number: 20140142443
    Abstract: Techniques are provided for use with a pulmonary artery pressure (PAP) monitor having an implantable PAP sensor. In one example, a PAP signal is sensed that is representative of beat-by-beat variations in PAP occurring during individual cardiac cycles of the patient. The PAP monitor detects intervals within the signal corresponding to the durations of cardiac cycles, then detects cardiac rhythm irregularities based on the intervals. For example, the PAP monitor can detect and distinguish atrial fibrillation, ventricular fibrillation and ventricular tachycardia based on the stability of the intervals of the PAP signal along with other information such as ventricular rate. The PAP monitor can also detect and distinguish premature contractions based on durations of the intervals. Examples where the PAP monitor is a component of an implantable cardiac rhythm management device (CRMD) are also provided.
    Type: Application
    Filed: November 19, 2012
    Publication date: May 22, 2014
    Applicant: PACESETTER, INC.
    Inventors: Thao Ngo, Kathleen Kresge, Michael Kane, Scott Patrick Simon
  • Publication number: 20140142444
    Abstract: Techniques are provided for use with a pulmonary artery pressure (PAP) monitor having an implantable PAP sensor. In one example, a PAP signal is sensed that is representative of beat-by-beat variations in PAP occurring during individual cardiac cycles of the patient. The PAP monitor detects peaks within the PAP signal corresponding to valvular regurgitation within the heart, then detects mitral regurgitation (MR) based on the peaks. In other examples, the PAP monitor optimizes pacing parameters based on the PAP signal and corresponding electrical cardiac signals. Examples are provided where the PAP monitor is an external system and other examples are provided where the PAP monitor is a component of an implantable cardiac rhythm management device.
    Type: Application
    Filed: November 19, 2012
    Publication date: May 22, 2014
    Applicant: PACESETTER, INC.
    Inventors: Thao Ngo, Kathleen Kresge, Michael Kane, Scott Patrick Simon
  • Publication number: 20140142406
    Abstract: An apparatus and method for quantifying myocardial kinetics by positioning two sensors on a myocardial substrate site so that one sensor is directly opposing the other along a ventricular wall; tracking a relative displacement between the two sensors; and determining whether there is an infarct based on the tracked relative displacement.
    Type: Application
    Filed: November 20, 2012
    Publication date: May 22, 2014
    Applicant: PACESETTER, INC.
    Inventors: Allen Keel, Rupinder Bharmi, Stuart Rosenberg, Hedi Razavi
  • Publication number: 20140142449
    Abstract: Embodiments of the present invention relate to implantable systems, and methods for use therein, that can detect T-wave alternans and analyze the detected alternans to provide information regarding cardiac instabilities and predict impending arrhythmias.
    Type: Application
    Filed: January 27, 2014
    Publication date: May 22, 2014
    Applicant: Pacesetter, Inc.
    Inventors: Fujian Qu, Riddhi Shah