Patents by Inventor Henry R. Halperin

Henry R. Halperin 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: 7966075
    Abstract: An energy management system that facilitates the transfer of high frequency energy induced on an implanted lead or a leadwire includes an energy dissipating surface associated with the implanted lead or the leadwire, a diversion or diverter circuit associated with the energy dissipating surface, and at least one switch for diverting energy in the implanted lead or the leadwire through the diversion circuit to the energy dissipating surface. In alternate configurations, the switch may be disposed between the implanted lead or the leadwire and the diversion circuit, or disposed so that it electrically opens the implanted lead or the leadwire when diverting energy through the diversion circuit to the energy dissipating surface. The switch may comprise a single or multi-pole double or single throw switch. The diversion circuit may be either a high pass filter or a low pass filter.
    Type: Grant
    Filed: November 3, 2010
    Date of Patent: June 21, 2011
    Assignee: Greatbatch Ltd.
    Inventors: Robert Shawn Johnson, Warren S. Dabney, Robert A. Stevenson, Christopher Michael Williams, Holly Noelle Moschiano, Scott Brainard, Daniel Robert Kaiser, Henry R. Halperin, Albert C. Lardo
  • Publication number: 20110054582
    Abstract: A shielded component or network for an active medical device (AMD) implantable lead includes (1) an implantable lead having a length extending from a proximal end to a distal end, all external of an AMD housing, (2) a passive component or network disposed somewhere along the length of the implantable lead, the passive component or network including at least one inductive component having a first inductive value, and (3) an electromagnetic shield substantially surrounding the inductive component or the passive network. The first inductive value of the inductive component is adjusted to a account for a shift in its inductance to a second inductive value when shielded.
    Type: Application
    Filed: September 27, 2010
    Publication date: March 3, 2011
    Applicant: GREATBATCH LTD.
    Inventors: Warren S. Dabney, Robert Shawn Johnson, Holly Noelle Moschiano, Robert A. Stevenson, Henry R. Halperin, Albert C. Lardo
  • Publication number: 20110040343
    Abstract: An energy management system that facilitates the transfer of high frequency energy induced on an implanted lead or a leadwire includes an energy dissipating surface associated with the implanted lead or the leadwire, a diversion or diverter circuit associated with the energy dissipating surface, and at least one switch for diverting energy in the implanted lead or the leadwire through the diversion circuit to the energy dissipating surface. In alternate configurations, the switch may be disposed between the implanted lead or the leadwire and the diversion circuit, or disposed so that it electrically opens the implanted lead or the leadwire when diverting energy through the diversion circuit to the energy dissipating surface. The switch may comprise a single or multi-pole double or single throw switch. The diversion circuit may be either a high pass filter or a low pass filter.
    Type: Application
    Filed: November 3, 2010
    Publication date: February 17, 2011
    Applicant: GREATBATCH LTD.
    Inventors: Robert Shawn Johnson, Warren S. Dabney, Robert A. Stevenson, Christopher Michael Williams, Holly Noelle Moschiano, Scott Brainard, Daniel Robert Kaiser, Henry R. Halperin, Albert C. Lardo
  • Publication number: 20110034836
    Abstract: A chest compression monitor for measuring the depth of chest compressions achieved during CPR. A displacement detector produces a displacement indicative signal indicative of the displacement of the CPR recipient's chest toward the recipient's spine. A signaling mechanism provides chest compression indication signals directing a chest compression force being applied to the chest and a frequency of such compressions.
    Type: Application
    Filed: October 18, 2010
    Publication date: February 10, 2011
    Inventors: Henry R. Halperin, Ronald D. Berger
  • Publication number: 20110022140
    Abstract: An energy management system facilitates the transfer of high frequency energy coupled into an implanted abandoned lead at a selected RF frequency or frequency band, to an energy dissipating surface. This is accomplished by conductively coupling the implanted abandoned lead to the energy dissipating surface of an abandoned lead cap through an energy diversion circuit including one or more passive electronic network components whose impedance characteristics are at least partially tuned to the implanted abandoned lead's impedance characteristics.
    Type: Application
    Filed: October 12, 2010
    Publication date: January 27, 2011
    Applicant: GREATBATCH LTD.
    Inventors: Robert A. Stevenson, Buehl E. Truex, Barry C. Muffoletto, Warren S. Dabney, Christine A. Frysz, Christopher Michael Williams, Holly Noelle Moschiano, Jeff Fleigle, Kishore Kumar Kondabatni, Richard L. Brendel, Robert Shawn Johnson, Scott Brainard, Henry R. Halperin, Albert C. Lardo
  • Publication number: 20100324639
    Abstract: An energy management system facilitates the transfer of high frequency energy coupled into an implanted abandoned lead at a selected RF frequency or frequency band, to an energy dissipating surface. This is accomplished by conductively coupling the implanted abandoned lead to the energy dissipating surface of an abandoned lead cap through an energy diversion circuit including one or more passive electronic network components whose impedance characteristics are at least partially tuned to the implanted abandoned lead's impedance characteristics.
    Type: Application
    Filed: August 5, 2010
    Publication date: December 23, 2010
    Applicant: GREATBATCH LTD.
    Inventors: Robert A. Stevenson, Buehl E. Truex, Barry C. Muffoletto, Warren S. Dabney, Christine A. Frysz, Christopher Michael Williams, Holly Noelle Moschiano, Jeff Fleigle, Kishore Kumar Kondabatni, Richard L. Brendel, Robert Shawn Johnson, Scott Brainard, Henry R. Halperin, Albert C. Lardo
  • Patent number: 7848788
    Abstract: Herein is disclosed a magnetic resonance imaging probe, having a probe shaft including a magnetic resonance antenna, and a spring tip attached to a distal end of the antenna.
    Type: Grant
    Filed: April 11, 2002
    Date of Patent: December 7, 2010
    Assignees: The Johns Hopkins University, SurgiVision, Inc.
    Inventors: Steve Tulley, Albert C. Lardo, Parag Karmarkar, Elliot McVeigh, Henry R. Halperin, Christine Enger McNamara, Paul A. Bottomley, Ergin Atalar, Xiaoming Yang
  • Patent number: 7844319
    Abstract: Herein is disclosed a probe, including a first electrode disposed at least partially on the probe surface, a second electrode disposed at least partially on the probe surface, a first conductor electrically coupled to the first electrode, a second conductor electrically coupled to the second electrode, and a reactive element electrically coupling the first conductor and the second conductor.
    Type: Grant
    Filed: April 15, 2002
    Date of Patent: November 30, 2010
    Inventors: Robert C. Susil, Gwyneth Susil, Ergin Atalar, Albert C. Lardo, Henry R. Halperin, Ronald D. Berger, Hugh Calkins, Paul Bottomley
  • Publication number: 20100280584
    Abstract: A lead extending exteriorly from an active implantable medical device (AIMD) is at least partially ensheathed within an electromagnetic interference (EMI) shield. The AIMD has a conductive equipotential surface to which the EMI shield may be conductively coupled. An impeding circuit may be provided for raising the high frequency impedance of the lead. An energy diversion circuit may also be provided for conductively coupling the lead to the EMI shield.
    Type: Application
    Filed: May 26, 2010
    Publication date: November 4, 2010
    Applicant: GREATBATCH LTD.
    Inventors: Robert Shawn Johnson, Robert A. Stevenson, Warren S. Dabney, Holly Noelle Moschiano, Kishore Kumar Kondabatni, Neal Nesselbeck, Joseph Spaulding, Henry R. Halperin, Albert C. Lardo
  • Patent number: 7822460
    Abstract: A system and method for using magnetic resonance imaging to increase the accuracy of electrophysiologic procedures is disclosed. The system in its preferred embodiment provides an invasive combined electrophysiology and imaging antenna catheter which includes an RF antenna for receiving magnetic resonance signals and diagnostic electrodes for receiving electrical potentials. The combined electrophysiology and imaging antenna catheter is used in combination with a magnetic resonance imaging scanner to guide and provide visualization during electrophysiologic diagnostic or therapeutic procedures. The invention further provides a system for eliminating the pickup of RF energy in which intracardiac wires are detuned by filtering so that they become very inefficient antennas. An RF filtering system is provided for suppressing the MR imaging signal while not attenuating the RF ablative current. Steering means may be provided for steering the invasive catheter under MR guidance.
    Type: Grant
    Filed: October 26, 2007
    Date of Patent: October 26, 2010
    Assignee: Surgi-Vision, Inc.
    Inventors: Henry R. Halperin, Ronald D. Berger, Ergin Atalar, Elliot R. McVeigh, Albert Lardo, Hugh Calkins, Joao Lima
  • Patent number: 7818049
    Abstract: An ECG signal processing system which removes the CPR-induced artifact from measured ECG signals obtained during the administration of CPR.
    Type: Grant
    Filed: November 13, 2007
    Date of Patent: October 19, 2010
    Assignee: Johns Hopkins University
    Inventors: Henry R. Halperin, Ronald D. Berger
  • Publication number: 20100222857
    Abstract: A band stop filter is provided for a lead wire of an active medical device (AMD). The band stop filter includes a capacitor in parallel with an inductor. The parallel capacitor and inductor are placed in series with the lead wire of the AMD, wherein values of capacitance and inductance are selected such that the band stop filter is resonant at a selected frequency. The Q of the inductor may be relatively maximized and the Q of the capacitor may be relatively minimized to reduce the overall Q of the band stop filter to attenuate current flow through the lead wire along a range of selected frequencies. In a preferred form, the band stop filter is integrated into a TIP and/or RING electrode for an active implantable medical device.
    Type: Application
    Filed: May 10, 2010
    Publication date: September 2, 2010
    Applicant: Greatbatch Ltd.
    Inventors: Henry R. Halperin, Robert A. Stevenson
  • Publication number: 20100222856
    Abstract: A band stop filter is provided for a lead wire of an active medical device (AMD). The band stop filter includes a capacitor in parallel with an inductor. The parallel capacitor and inductor are placed in series with the lead wire of the AMD, wherein values of capacitance and inductance are selected such that the band stop filter is resonant at a selected frequency. The Q of the inductor may be relatively maximized and the Q of the capacitor may be relatively minimized to reduce the overall Q of the band stop filter to attenuate current flow through the lead wire along a range of selected frequencies. In a preferred form, the band stop filter is integrated into a TIP and/or RING electrode for an active implantable medical device.
    Type: Application
    Filed: May 10, 2010
    Publication date: September 2, 2010
    Applicant: Greatbatch Ltd.
    Inventors: Henry R. Halperin, Robert A. Stevenson
  • Publication number: 20100217262
    Abstract: Decoupling circuits are provided which transfer energy induced from an MRI pulsed RF field to the housing for an active implantable medical device (AIMD) which serves as an energy dissipating surface. This is accomplished through broadband filtering or by resonant filtering. In a passive component network for an AIMD, a frequency selective energy diversion circuit is provided for diverting high-frequency energy away from an AIMD lead to the AIMD housing for dissipation of said high-frequency energy.
    Type: Application
    Filed: March 31, 2010
    Publication date: August 26, 2010
    Applicant: GREATBATCH LTD.
    Inventors: Robert A. Stevenson, Warren S. Dabney, Christine A. Frysz, Buehl E. Truex, Henry R. Halperin, Albert C. Lardo
  • Publication number: 20100198312
    Abstract: A bandstop filter having optimum component values is provided for a lead of an active implantable medical device (AIMD). The bandstop filter includes a capacitor in parallel with an inductor. The parallel capacitor and inductor are placed in series with the implantable lead of the AIMD, wherein values of capacitance and inductance are selected such that the bandstop filter is resonant at a selected frequency. The Q of the inductor may be relatively maximized and the Q of the capacitor may be relatively minimized to reduce the overall Q of the bandstop filter to attenuate current flow through the implantable lead along a range of selected frequencies.
    Type: Application
    Filed: February 17, 2010
    Publication date: August 5, 2010
    Applicant: GREATBATCH LTD.
    Inventors: Robert A. Stevenson, Warren S. Dabney, Robert Shawn Johnson, Holly Noelle Moschiano, Henry R. Halperin
  • Publication number: 20100191236
    Abstract: An energy management system that facilitates the transfer of high frequency energy induced on an implanted lead or a leadwire includes an energy dissipating surface associated with the implanted lead or the leadwire, a diversion or diverter circuit associated with the energy dissipating surface, and at least one non-linear circuit element switch for diverting energy in the implanted lead or the leadwire through the diversion circuit to the energy dissipating surface. In alternate configurations, the switch may be disposed between the implanted lead or the leadwire and the diversion circuit, or disposed so that it electrically opens the implanted lead or the leadwire when diverting energy through the diversion circuit to the energy dissipating surface. The non-linear circuit element switch is typically a PIN diode. The diversion circuit may be either a high pass filter or a low pass filter.
    Type: Application
    Filed: February 17, 2010
    Publication date: July 29, 2010
    Applicant: GREATBATCH LTD.
    Inventors: Robert Shawn Johnson, Warren S. Dabney, Robert A. Stevenson, Christopher Michael Williams, Holly Noelle Moschiano, Scott Brainard, Daniel Robert Kaiser, Henry R. Halperin, Albert C. Lardo, Scott W. Kelley
  • Publication number: 20100174349
    Abstract: An energy management system facilitates the transfer of high frequency energy coupled into an implanted abandoned lead at a selected RF frequency or frequency band, to an energy dissipating surface. This is accomplished by conductively coupling the implanted abandoned lead to the energy dissipating surface of an abandoned lead cap through an energy diversion circuit including one or more passive electronic network components whose impedance characteristics are at least partially tuned to the implanted abandoned lead's impedance characteristics.
    Type: Application
    Filed: January 26, 2010
    Publication date: July 8, 2010
    Applicant: GREATBATCH LTD.
    Inventors: Robert A. Stevenson, Buehl E. Truex, Barry C. Muffoletto, Warren S. Dabney, Christine A. Frysz, Christopher Michael Williams, Holly Noelle Moschiano, Jeff Fleigle, Kishore Kumar Kondabatni, Richard L. Brendel, Robert Shawn Johnson, Scott Brainard, Henry R. Halperin, Albert C. Lardo
  • Patent number: 7751903
    Abstract: Decoupling circuits are provided which transfer energy induced from an MRI pulsed RF field to an energy dissipating surface. This is accomplished through broadband filtering or by resonant filtering. In a passive component network for an implantable leadwire of an active implantable medical device, a frequency selective energy diversion circuit is provided for diverting high-frequency energy away from a leadwire electrode to a point or an area spaced from the electrode, for dissipation of high-frequency energy.
    Type: Grant
    Filed: June 23, 2009
    Date of Patent: July 6, 2010
    Assignee: Greatbatch Ltd.
    Inventors: Robert A. Stevenson, Warren S. Dabney, Christine A. Frysz, Buehl E. Truex, Henry R. Halperin, Albert C. Lardo
  • Publication number: 20100168821
    Abstract: An energy management system that facilitates the transfer of high frequency energy induced on an implanted lead or a leadwire includes an energy dissipating surface associated with the implanted lead or the leadwire, a diversion or diverter circuit associated with the energy dissipating surface, and at least one switch for diverting energy in the implanted lead or the leadwire through the diversion circuit to the energy dissipating surface. In alternate configurations, the switch may be disposed between the implanted lead or the leadwire and the diversion circuit, or disposed so that it electrically opens the implanted lead or the leadwire when diverting energy through the diversion circuit to the energy dissipating surface. The switch may comprise a single or multi-pole double or single throw switch. The diversion circuit may be either a high pass filter or a low pass filter.
    Type: Application
    Filed: January 12, 2010
    Publication date: July 1, 2010
    Applicant: GREATBATCH LTD.
    Inventors: Robert Shawn Johnson, Warren S. Dabney, Robert A. Stevenson, Christopher Michael Williams, Holly Noelle Moschiano, Scott Brainard, Daniel Robert Kaiser, Henry R. Halperin, Albert C. Lardo
  • Publication number: 20100160997
    Abstract: An energy management system facilitates the transfer of high frequency energy coupled into an implanted lead at a selected RF frequency or frequency band, to an energy dissipating surface. This is accomplished by conductively coupling the implanted lead to the energy dissipating surface through an energy diversion circuit including one or more passive electronic network components whose impedance characteristics are at least partially tuned to the implanted lead's impedance characteristics.
    Type: Application
    Filed: January 12, 2010
    Publication date: June 24, 2010
    Applicant: GREATBATCH LTD.
    Inventors: Robert Shawn Johnson, Warren S. Dabney, Robert A. Stevenson, Christopher Michael Williams, Holly Noelle Moschiano, Scott Brainard, Daniel Robert Kaiser, Henry R. Halperin, Albert C. Lardo