Patents by Inventor Stephen A. Morse

Stephen A. Morse 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).

  • Publication number: 20120302882
    Abstract: An ablation system comprises a catheter including a pulse-echo ultrasonic transducer disposed in a distal portion and arranged to emit and receive an acoustic beam. The transducer emits and receives acoustic pulses to provide transducer detected information regarding the targeted tissue region being ablated. A rotation mechanism rotates at least the distal portion around a longitudinal axis of the catheter. A control and interface system processes the transducer detected information and provides feedback to a user via a user interface and/or the control and interface system to be used to control ablation. The transducer detected information includes a detected lesion depth along a beam emanation direction. The control and interface system includes a lesion depth correction module which converts the detected lesion depth along the beam direction to a corrected lesion depth in a normal direction which is perpendicular to the tissue surface in contact with the ablation element.
    Type: Application
    Filed: May 23, 2011
    Publication date: November 29, 2012
    Applicant: ST. JUDE MEDICAL, INC.
    Inventors: John SLIWA, Zhenyi MA, Stephen MORSE
  • Publication number: 20120265184
    Abstract: An ablation catheter comprises an elongated catheter body; at least one ablation element disposed in a distal portion which is adjacent the distal end of the catheter body; an illumination optical element disposed in the distal portion, the illumination optical element being light-transmissive to emit light from the illumination optical element to the targeted tissue region; and a collection optical element disposed in the distal portion, the collection optical element being light-transmissive to collect one or more of returned, backscattered or newly excited light from the targeted tissue region. The illumination or excitation optical element and the collection optical element are axially spaced from one another and axially optically isolated from one another within the distal portion to substantially prevent light from traveling between the illumination optical element and the collection optical element along a path within the distal portion.
    Type: Application
    Filed: April 13, 2011
    Publication date: October 18, 2012
    Applicant: ST. JUDE MEDICAL, INC.
    Inventors: John SLIWA, Stephen MORSE, Zhenyi MA
  • Publication number: 20120265070
    Abstract: An ablation catheter comprises: an elongated catheter body extending along a longitudinal axis; at least one ablation element disposed in a distal portion which is adjacent the distal end of the catheter body to ablate a targeted tissue region outside the catheter body; a single pulse-echo ultrasonic transducer disposed in the distal portion and arranged to emit and receive an acoustic beam along a centroid in a beam direction, at a transducer angle of about 30-60 degrees relative to a distal direction of the longitudinal axis at a location of intersection between the longitudinal axis and the beam direction of the centroid of the acoustic beam; and a mechanism to manipulate the distal portion in movement including rotation of at least the distal portion around the longitudinal axis. The single ultrasonic transducer emits and receives acoustic pulses to provide lesion information in the targeted tissue region being ablated.
    Type: Application
    Filed: April 14, 2011
    Publication date: October 18, 2012
    Applicant: ST. JUDE MEDICAL, INC.
    Inventors: John SLIWA, Zhenyi MA, Stephen MORSE
  • Publication number: 20120265192
    Abstract: A system for ablation with acoustic feedback comprises: a catheter which includes an elongated catheter body; at least one ablation element to ablate a targeted tissue region; and a pulse-echo ultrasonic transducer arranged to emit and receive an acoustic beam along a centroid in a beam direction, at a transducer beam angle of between about 30 degrees and about 60 degrees relative to a distal direction of the longitudinal axis at a location of intersection between the longitudinal axis and the beam direction of the centroid of the acoustic beam of the ultrasonic transducer, wherein the transducer transmits and receives acoustic pulses to provide lesion information in the targeted tissue region; an ablation power subsystem; an ultrasonic transmit and receive subsystem to operate the ultrasonic transducer; a control subsystem to control operation of the ablation power subsystem and the ultrasonic transmit and receive subsystem; and a display.
    Type: Application
    Filed: July 27, 2011
    Publication date: October 18, 2012
    Applicant: ST. JUDE MEDICAL, INC.
    Inventors: John SLIWA, Tho Hoang NGUYEN, Zhenyi MA, Stephen MORSE
  • Publication number: 20120265069
    Abstract: An ablation catheter with acoustic monitoring comprises an elongated catheter body; a distal member disposed adjacent a distal end and including an ablation element to ablate a biological member at a target region outside the catheter body; and one or more acoustic transducers each configured to direct an acoustic beam toward a respective target ablation region and receive reflection echoes therefrom. The distal member includes a transducer housing in which the acoustic transducers are disposed, the transducer housing including at least one transducer window which is the only portion in the distal member through which the acoustic beam passes, at least the at least one transducer window portion of the distal member being made of a material comprising at least 50% carbon by volume, the transducer window material having an acoustic impedance between that of the acoustic transducers and that of the biological member.
    Type: Application
    Filed: April 13, 2011
    Publication date: October 18, 2012
    Applicant: ST. JUDE MEDICAL, INC.
    Inventors: John SLIWA, Zhenyi MA, Stephen MORSE
  • Publication number: 20120172843
    Abstract: A deflectable, flexible device includes an elongate body, a convoluted tip portion at a distal end of the elongate body, and a lumen to receive one or more wires. The convoluted tip portion includes an electroformed pleated region which is formed by electrodepositing a metal on a mandrel having a pleated region. The convoluted tip portion may be hermetically sealed to permit repeated sterilization. The electroformed pleated region may include one or more fluid emission orifices. The convoluted tip portion extends or bends in response to fluid pressure manipulation, contact with tissue, manipulation with an internal spring or wire, or by a user pushing, pulling, or twisting the catheter directly or via an introducer sheath or the like. The convoluted tip portion may further include an RF ablation element or other energy-driven technique to create continuous linear lesions or a sensing element.
    Type: Application
    Filed: July 29, 2011
    Publication date: July 5, 2012
    Inventors: John W. Sliwa, Stephen A. Morse
  • Patent number: 8102734
    Abstract: A high intensity focused ultrasound transducer includes an ultrasonic emitter having a surface that emits ultrasonic energy along a beam path, at least one low attenuation polymeric ultrasonic lens acoustically coupled to the surface in the beam path of the ultrasonic energy, such that the lens can direct the ultrasonic energy in at least one direction, and at least one stress mitigation feature, such as a kerf, a heat sink, or an acoustic matching layer, to mitigate thermal expansion mismatch stresses within the transducer. For manufacturing simplicity, the first surface is typically either flat or monotonically curvilinear. The lens may take a variety of shapes, including Fresnel features, and may focus, collimate, or defocus the ultrasonic energy. Any orientation and positioning of the at least one ultrasonic lens relative to the first ultrasonic emitter is contemplated. Manufacture is further simplified by molding, casting, or thermoforming the lens.
    Type: Grant
    Filed: February 8, 2007
    Date of Patent: January 24, 2012
    Assignee: St. Jude Medical, Atrial Fibrillation Division, Inc.
    Inventors: John W. Sliwa, Peter Goetz, Zhenyi Ma, Jennifer Teng, Stephen Morse, Frank Callaghan, Timothy E. Ciciarelli
  • Publication number: 20110144491
    Abstract: A directable acoustic transducer assembly is presented for use in a medical insertion device (MID). In an embodiment, the assembly aims an acoustic signal in response to a sensed or detected force or load imposed on the MID. The directable acoustic transducer assembly includes a switch array and a plurality of directional acoustic transducer elements. The switch array responds to the force or load and activates the directional acoustic transducer elements closest to the source of the force or load. The switch array may include a plurality of switches, at least one of which responses to a force or load and may activate directional acoustic transducer elements having a target tissue in the field of view. The assembly includes embodiments that are responsive to various loads. A directable acoustic transducer assembly may be part of a diagnostic and/or therapeutic system, such as an RF ablation system.
    Type: Application
    Filed: December 15, 2009
    Publication date: June 16, 2011
    Inventors: John W. Sliwa, Stephen A. Morse
  • Publication number: 20100228162
    Abstract: A tissue ablation system facilitates lesioning deep tissue while preventing damage to superficial tissue and includes a probe having a distal end portion, at least one transducer carried on the distal end portion, and at least one acoustically transparent heat removal element thermally coupled to a target tissue within the beam path of the transducer. The transducer delivers acoustic energy to the tissue through the heat removal element in order to ablate the tissue; the heat removal element removes sufficient thermal energy from the tissue volume to prevent thermal necrosis in superficial tissue. The heat removal element may be a heat sink or a convective element. An optional temperature sensor provides advisory data to a practitioner and/or is coupled to a feedback control system operable to control delivery of acoustic energy to the tissue and/or a rate of thermal energy removal therefrom.
    Type: Application
    Filed: March 9, 2009
    Publication date: September 9, 2010
    Inventors: John W. Sliwa, Stephen A. Morse, John P. Goetz
  • Publication number: 20100168569
    Abstract: An ablation system comprises a tool including an shaft having proximal and distal end portions, a handle at the proximal end portion, and a lumen extending between the proximal and distal end portions. The system further includes an ablation subsystem comprised of an ablation element at the distal end portion of the shaft, and an ablation source connected to the ablation element. The system further includes an imaging subsystem comprising an ultrasound imaging transducer disposed proximate the ablation element. The transducer is pivotally attached to the shaft or the ablation element to allow the transducer to articulate between stowed and deployed positions. The imaging subsystem further comprises a processor connected to the transducer configured to receive image data acquired by the transducer, and to generate an image corresponding thereto. The imaging subsystem still further includes a display connected to the processor configured to display the generated image.
    Type: Application
    Filed: December 30, 2008
    Publication date: July 1, 2010
    Inventors: John W. Sliwa, Stephen A. Morse
  • Publication number: 20100168572
    Abstract: A system for ablating tissue includes a catheter having an elongate body, with at least one ablation element (e.g., RF electrode) and at least one acoustic transducer located within the body's tip region. The transducer receives acoustic signals from proximate the tip region. The system also includes a monitoring unit coupled to the transducer to interpret the received acoustic signals as data regarding at least one therapeutic parameter (e.g., pre-pop detection, lesion making progress, tissue interface detection, tissue contact force, tissue contact establishment, bubble spatial distribution, bubble depth, bubble size, bubble size distribution, tissue interface distance, tissue interface position, tissue attenuation, tissue thickness, lesion spectral fingerprint). The monitoring unit is operable to provide feedback to a practitioner, such as graphical, audible, and/or haptic output of sensed data, and may also be operable to control operation of the at least one ablation element in response thereto.
    Type: Application
    Filed: December 14, 2009
    Publication date: July 1, 2010
    Inventors: John W. Sliwa, Zhenyi Ma, John P. Goetz, Stephen A. Morse
  • Publication number: 20080194965
    Abstract: A high intensity focused ultrasound transducer includes an ultrasonic emitter having a surface that emits ultrasonic energy along a beam path, at least one low attenuation polymeric ultrasonic lens acoustically coupled to the surface in the beam path of the ultrasonic energy, such that the lens can direct the ultrasonic energy in at least one direction, and at least one stress mitigation feature, such as a kerf, a heat sink, or an acoustic matching layer, to mitigate thermal expansion mismatch stresses within the transducer. For manufacturing simplicity, the first surface is typically either flat or monotonically curvilinear. The lens may take a variety of shapes, including Fresnel features, and may focus, collimate, or defocus the ultrasonic energy. Any orientation and positioning of the at least one ultrasonic lens relative to the first ultrasonic emitter is contemplated. Manufacture is further simplified by molding, casting, or thermoforming the lens.
    Type: Application
    Filed: February 8, 2007
    Publication date: August 14, 2008
    Inventors: John W. Sliwa, Peter Goetz, Zhenyi Ma, Jennifer Teng, Stephen Morse, Frank Callaghan, Timothy E. Ciciarelli
  • Publication number: 20080194967
    Abstract: A high intensity focused ultrasound transducer includes an ultrasonic emitter having a surface that emits ultrasonic energy along a beam path, at least one low attenuation polymeric ultrasonic lens acoustically coupled to the surface in the beam path of the ultrasonic energy, such that the lens can direct the ultrasonic energy in at least one direction, and at least one stress mitigation feature, such as a kerf, a heat sink, or an acoustic matching layer, to mitigate thermal expansion mismatch stresses within the transducer. For manufacturing simplicity, the first surface is typically either flat or monotonically curvilinear. The lens may take a variety of shapes, including Fresnel features, and may focus, collimate, or defocus the ultrasonic energy. Any orientation and positioning of the at least one ultrasonic lens relative to the first ultrasonic emitter is contemplated. Manufacture is further simplified by molding, casting, or thermoforming the lens.
    Type: Application
    Filed: February 8, 2007
    Publication date: August 14, 2008
    Inventors: John W. Sliwa, Peter Goetz, Zhenyi Ma, Jennifer Teng, Stephen Morse, Frank Callaghan, Timothy E. Ciciarelli
  • Patent number: 7338486
    Abstract: An ablating device has a cover which holds an interface material such as a gel. The cover contains the interface material during initial placement of the device. The ablating device may also have a removable tip or a membrane filled with fluid. In still another aspect, the ablating device may be submerged in liquid during operation.
    Type: Grant
    Filed: September 10, 2002
    Date of Patent: March 4, 2008
    Assignee: St. Jude Medical, Atrial Fibrillation Division, Inc.
    Inventors: John W. Sliwa, Matthias Vaska, Jonathan L. Podmore, Scott C. Anderson, Gerard Champsaur, John E. Crowe, Stephen A. Morse, Gary Henry Miller
  • Publication number: 20070293855
    Abstract: An ablating device has a cover which holds an interface material such as a gel. The cover contains the interface material during initial placement of the device. The ablating device may also have a removable tip or a membrane filled with fluid. In still another aspect, the ablating device may be submerged in liquid during operation.
    Type: Application
    Filed: July 24, 2007
    Publication date: December 20, 2007
    Inventors: John Sliwa, Matthias Vaska, Jonathan Podmore, Scott Anderson, Gerard Champsaur, John Crowe, Stephen Morse, Gary Miller
  • Publication number: 20070078970
    Abstract: Techniques for managing tiered communication services in a composite communication service are disclosed. Component communication services for providing a composite communication service are arranged into tiers in a structure of the composite communication service. The tiers and order facilitate visualization of composite communication services and assessment of the effects of events which impact a portion of a composite communication service on other portions of the composite communication service, for example. Related data structures and user interfaces are also disclosed.
    Type: Application
    Filed: October 4, 2005
    Publication date: April 5, 2007
    Applicant: Alcatel
    Inventors: Attaullah Zabihi, Joel Calippe, Stephen Morse, Chi Zhang
  • Publication number: 20060236525
    Abstract: A method of manufacturing an ultrasound transducer is provided. The ultrasound transducer is activated and the activity across the transducer is measured to determine whether the activity at any area does not meet an acceptance criteria. The transducer is then modified so that the area meets the acceptance criteria. The transducer may be modified with a laser which removes material from the area which does not meet the accceptance criteria.
    Type: Application
    Filed: April 11, 2005
    Publication date: October 26, 2006
    Inventors: Jack Sliwa, Jonathan Podmore, Chris Bagley, John Crowe, Michael Holzbaur, Derek Hillstrom, Steve Schellenberg, Peter Goetz, Stephen Morse
  • Patent number: 6971394
    Abstract: An ablating device has a cover which holds an interface material such as a gel. The cover contains the interface material during initial placement of the device. The ablating device may also have a removable tip or a membrane filled with fluid. In still another aspect, the ablating device may be submerged in liquid during operation.
    Type: Grant
    Filed: September 10, 2002
    Date of Patent: December 6, 2005
    Assignee: Epicor Medical, Inc.
    Inventors: John W. Sliwa, Jr., Matthias Vaska, Jonathan L. Podmore, Scott C. Anderson, Gerard Champsaur, John E. Crowe, Stephen A. Morse, Gary Henry Miller
  • Publication number: 20050245918
    Abstract: An ablating device has a cover which holds an interface material such as a gel. The cover contains the interface material during initial placement of the device. The ablating device may also have a removable tip or a membrane filled with fluid. In still another aspect, the ablating device may be submerged in liquid during operation.
    Type: Application
    Filed: February 15, 2005
    Publication date: November 3, 2005
    Inventors: John Sliwa, Matthias Vaska, Jonathan Podmore, Gary Miller, Scott Anderson, Gerard Champsaur, John Crowe, Stephen Morse
  • Patent number: 6840936
    Abstract: An ablating device has a cover which holds an interface material such as a gel. The cover contains the interface material during initial placement of the device. The ablating device may also have a removable tip or a membrane filled with fluid. In still another aspect, the ablating device may be submerged in liquid during operation.
    Type: Grant
    Filed: February 15, 2002
    Date of Patent: January 11, 2005
    Assignee: Epicor Medical, Inc.
    Inventors: John W. Sliwa, Jr., Matthias Vaska, Jonathan L. Podmore, Scott C. Anderson, Gerard Champsaur, John E. Crowe, Stephen A. Morse, Gary Henry Miller