Patents by Inventor Jeffery L. Bleich

Jeffery L. Bleich 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: 8092456
    Abstract: A method of accessing target tissue adjacent to a spinal nerve of a patient includes the steps of accessing a spine location of the patient by entering the patient through the skin at an access location, inserting a flexible tissue modification device through the access location to the spine location, advancing a distal portion of the first flexible tissue modification device from the spine location to a first exit location, passing through the first exit location and out of the patient, advancing the first or a second flexible tissue modification device through the same access location to the spine location and to a second exit location, and passing through the second exit location and out of the patient.
    Type: Grant
    Filed: January 13, 2009
    Date of Patent: January 10, 2012
    Assignee: Baxano, Inc.
    Inventors: Jeffery L. Bleich, Michael Sheinberg, Michael P. Wallace
  • Patent number: 8048080
    Abstract: Methods and devices are described for modifying tissue in a spine of a patient to treat or alleviate spinal stenosis. In one embodiment, a method may include: advancing at least a distal portion of an elongate tissue modification device into an epidural space and between target tissue and non-target tissue in the spine; positioning the tissue modification device so that at least one abrasive surface of the device faces target tissue and at least one non-abrasive surface faces non-target tissue; applying tensioning force at or near separate distal and proximal portions of the tissue modification device; and translating the tissue modification device back and forth while maintaining at least some tensioning force to abrade at least a portion of the target tissue with the at least one abrasive surface. Unwanted damage to the non-target tissue may be prevented via the at least one non-abrasive surface.
    Type: Grant
    Filed: May 4, 2006
    Date of Patent: November 1, 2011
    Assignee: Baxano, Inc.
    Inventors: Jeffery L. Bleich, Edwin J. Hlavka
  • Publication number: 20110224710
    Abstract: Described herein are methods, systems, and devices for performing a minimally invasive carpal tunnel release procedure to cut a target transverse carpal ligament. In some embodiments, the method may include the steps of advancing a probe percutaneously though a patient's skin from a first location, advancing a tissue modification device from the first location and between the target ligament and non-target tissue so that a proximal handle on the tissue modification device extends from the patient at the first location, attaching a distal handle in communication with the distal end of the tissue modification device. In some embodiments, a system may include a probe configured to be advanced percutaneously though a patient's skin from a first location, a tissue modification device comprising a proximal handle and a flexible distal region having uni-directional blades, and a distal handle configured to connect to the distal end of the tissue modification device.
    Type: Application
    Filed: May 20, 2011
    Publication date: September 15, 2011
    Inventor: Jeffery L. Bleich
  • Publication number: 20110224709
    Abstract: Described herein are methods, systems and devices for cutting a ligament of a patient. In some embodiments, the method may include the steps of advancing a cannulated probe into a patient, advancing the distal end of the tissue modification device assembly posteriorly through the skin of the patient such that it exits the patient, exposing at least one tissue modification element of the tissue modification device assembly, and reciprocating at least a portion of the tissue modification device assembly by alternately pulling on proximal and distal portions of the tissue modification device assembly to draw the at least one tissue modification element across the ligament to cut the ligament, in some embodiments, the system may include a probe, a tissue modification device, and a sheath. The tissue modification device may include a proximal handle, at least one tissue modification element configured cut ligament, and a sharp distal tip.
    Type: Application
    Filed: May 20, 2011
    Publication date: September 15, 2011
    Inventor: Jeffery L. Bleich
  • Publication number: 20110196257
    Abstract: Described herein are devices, systems and methods for determining if a nerve is nearby a device or a region of a device. In general, a device for determining if a nerve is nearby a device includes an elongate body having an outer surface with one or more bipole pairs arranged on the outer surface. Bipole pairs may also be referred to as tight bipoles. The bipole pairs may be arranged as a bipole network, and may include a cathode and an anode that are spaced relatively close together to form a limited broadcast field. In general, the broadcast filed is a controlled or “tight” broadcast field that extends from the bipole pair(s). Methods of using these devices and system are also described.
    Type: Application
    Filed: April 20, 2011
    Publication date: August 11, 2011
    Inventors: Gregory P. Schmitz, Michael P. Wallace, Jeffery L. Bleich, Eric C. Miller
  • Publication number: 20110190772
    Abstract: A device for modifying tissue in a spine may include: a shah having a proximal portion and a distal portion, the distal portion having dimensions which allow h to be passed into an epidural space of the spine and between target and non-target tissues at least one distal force application member extending from the distal portion of the shall and configured to facilitate application of at least one of anchoring force and tensioning force to the shaft; at least one movable tissue modifying member coupled with the shaft at or near its distal portion; at least one drive member coupled with the at least one tissue modifying member to activate the at least one tissue modifying member; and at least one power transmission member coupled with the at least one drive member to deliver power to the at least one drive member.
    Type: Application
    Filed: April 1, 2011
    Publication date: August 4, 2011
    Inventors: Vahid Saadat, Jeffery L. Bleich, Kenneth J. Michlitsch, John E. Ashley
  • Publication number: 20110160731
    Abstract: Methods and apparatus are provided for selective surgical removal of tissue, e.g., for enlargement of diseased spinal structures, such as impinged lateral recesses and pathologically narrowed neural foramen. In some embodiments, a surgical tissue removal device includes a flexible elongate body that is adapted to conform with the target anatomy and a guidewire connector at the distal end region of the flexible elongate body configured to removably connect to the end of a guidewire so that the guidewire and flexible elongate body can be pulled distally. The body may have at least one blade edge, and the flexible elongate body may be a thin, flat, ribbon shaped flexible body that comprises a profile having a width that is substantially greater than a height.
    Type: Application
    Filed: January 4, 2011
    Publication date: June 30, 2011
    Inventors: Jeffery L. Bleich, Edwin J. Hlavka, Vahid Saadat, David J. Miller, James R. Yurchenco
  • Patent number: 7963915
    Abstract: Methods and apparatus are provided for selective surgical removal of tissue. In one variation, tissue may be ablated, resected, removed, or otherwise remodeled by standard small endoscopic tools delivered into the epidural space through an epidural needle. The sharp tip of the needle in the epidural space, can be converted to a blunt tipped instrument for further safe advancement. The current invention includes specific tools that enable safe tissue modification in the epidural space, including a barrier that separates the area where tissue modification will take place from adjacent vulnerable neural and vascular structures. A nerve stimulator may be provided to reduce a risk of inadvertent neural abrasion.
    Type: Grant
    Filed: October 15, 2005
    Date of Patent: June 21, 2011
    Assignee: Baxano, Inc.
    Inventor: Jeffery L. Bleich
  • Patent number: 7959577
    Abstract: Described herein are devices, systems and methods for determining if a nerve is nearby a device or a region of a device. In general, a device for determining if a nerve is nearby a device includes an elongate body having an outer surface with one or more bipole pairs arranged on the outer surface. Bipole pairs may also be referred to as tight bipoles. The bipole pairs may be arranged as a bipole network, and may include a cathode and an anode that are spaced relatively close together to form a limited broadcast field. In general, the broadcast filed is a controlled or “tight” broadcast field that extends from the bipole pair(s). Methods of using these devices and system are also described.
    Type: Grant
    Filed: March 31, 2008
    Date of Patent: June 14, 2011
    Assignee: Baxano, Inc.
    Inventors: Gregory P. Schmitz, Michael P. Wallace, Jeffery L. Bleich, Eric C. Miller
  • Publication number: 20110112539
    Abstract: Described herein are elongate devices for modifying tissue having a plurality of flexibly connected and rungs or links, and methods of using them, including methods of using them to decompress stenotic spinal tissue. These devices may be included as part of a system for modifying tissue. In general, these devices include a plurality of blades positioned on for formed from) rungs that are flexibly connected and may be separated by one or more spacers. The rungs are typically wider than they are long (e.g., rectangular). The rungs may be arranged, ladder like, and may be connected by a flexible connector substrate or between two or more cables. Different sized rungs may be used, or rungs with different cutting properties. In some variations the tissue modification devices may have a non-linear axial shape, or may be converted from a first axial shape to a second axial shape.
    Type: Application
    Filed: January 14, 2011
    Publication date: May 12, 2011
    Inventors: Michael P. Wallace, Robert Garabedian, Gregory P. Schmitz, Jeffery L. Bleich, Nestor C. Cantorna, Ronald Leguidleguid, Roy Leguidleguild, Michael A. Sheinberg
  • Patent number: 7938830
    Abstract: A device for modifying tissue in a spine may include: a shaft having a proximal portion and a distal portion, the distal portion having dimensions which allow it to be passed into an epidural space of the spine and between target and non-target tissues; at least one distal force application member extending from the distal portion of the shaft and configured to facilitate application of at least one of anchoring force and tensioning force to the shaft; at least one movable tissue modifying member coupled with the shaft at or near its distal portion; at least one drive member coupled with the at least one tissue modifying member to activate the at least one tissue modifying member; and at least one power transmission member coupled with the at least one drive member to deliver power to the at least one drive member.
    Type: Grant
    Filed: April 17, 2006
    Date of Patent: May 10, 2011
    Assignee: Baxano, Inc.
    Inventors: Vahid Saadat, Jeffery L. Bleich, Kenneth Michlitsch, John E. Ashley
  • Patent number: 7918849
    Abstract: Methods are provided for access to a compressed space in the spinal anatomy. These methods may be used for selective surgical removal of tissue, e.g., for enlargement of diseased spinal structures, such as impinged lateral recesses and pathologically narrowed neural foramen. In one variation, tissue may be ablated, resected, removed, or otherwise remodeled by standard small endoscopic tools delivered into the epidural space. In one variation, a tissue abrasion device is provided. A cannulated probe may be placed through the neural foramina of the spine and used to position a guidewire around the anterior border of a facet joint. Once properly positioned, a medical practitioner may use the guidewire with an abrasion device to enlarge the lateral recess and neural foramina. A nerve stimulator may be provided to reduce a risk of inadvertent neural abrasion.
    Type: Grant
    Filed: October 15, 2005
    Date of Patent: April 5, 2011
    Assignee: Baxano, Inc.
    Inventors: Jeffery L. Bleich, Steven A. Spisak
  • Publication number: 20110060314
    Abstract: Described herein are devices, systems and methods for treating target tissue in a patient's spine. In general, the methods include the steps of advancing a wire into the patient from a first location, through a neural foramen, and out of the patient from a second location; connecting a tissue modification device to the wire; positioning the tissue modification device through the neural foramen using the wire; modifying target tissue in the spine by moving the tissue modification device against the target tissue; and delivering an agent to modified target tissue, wherein the agent is configured to inhibit blood flow from the modified target tissue. In some embodiments, the step of modifying target tissue comprises removing target tissue located ventral to the superior articular process while avoiding non-target tissue located lateral to the superior articular process.
    Type: Application
    Filed: October 25, 2010
    Publication date: March 10, 2011
    Inventors: Michael P. Wallace, Robert Garabedian, Gregory B. Arcenio, Jeffery L. Bleich, Vahid Saadat, Winnie Chung
  • Publication number: 20110046613
    Abstract: A method and system for guiding at least a portion of a surgical device to a desired position between two tissues in a patient's body involves coupling a guidewire to the device and pulling the distal end of the guidewire to guide at least a portion of the surgical device to a desired position between the two tissues. The surgical device generally includes one or more guidewire coupling members and may comprise a tissue access device. A system may include a guidewire and a surgical device. In some embodiments, a guidewire, a tissue access device, and one or more additional devices to use with the access device may be provided. Methods, devices and systems may be used in open, less-invasive or percutaneous surgical procedures, in various embodiments.
    Type: Application
    Filed: November 1, 2010
    Publication date: February 24, 2011
    Inventors: Gregory Schmitz, Jefferey Bleam, Roy Leguidleguid, Jeffery L. Bleich
  • Patent number: 7887538
    Abstract: A method for modifying tissue in a patient may involve one or more of the following steps: advancing at least a distal portion of at least one elongate, at least partially flexible tissue modification device into a patient and between one or more target tissues and one or more non-target tissues; positioning at least one tissue modifying member of the tissue modification device adjacent the target tissue such that the tissue modifying member(s) face the target tissue and do not face the non-target tissue; applying an anchoring force to the tissue modification device at or near the distal portion or a proximal portion of the device; applying a tensioning force to the tissue modification device at or near an opposite end of the device relative to the end to which anchoring force is applied, while maintaining the anchoring force, to urge the tissue modifying member(s) against the target tissue; and modifying the target tissue, using the tissue modifying member(s), while preventing the tissue modifying member(s)
    Type: Grant
    Filed: March 13, 2006
    Date of Patent: February 15, 2011
    Assignee: Baxano, Inc.
    Inventors: Jeffery L. Bleich, Vahid Saadat, Steven A. Spisak, John E. Ashley
  • Publication number: 20100331883
    Abstract: Described herein are methods and systems for precisely placing and/or manipulating devices within the body by first positioning a guidewire or pullwire through the body from a first location, around a curved pathway, and out of the body through a second location, so that the distal and proximal ends of the guidewire extend from the body, then pulling a device into position using the guidewire. The device to be positioned within the body is coupled to the proximal end of the guidewire, and the device is pulled into the body by pulling on the distal end of the guidewire that extends from the body. The device may be bimanually manipulated by pulling the guidewire distally, and an attachment to the device that extends proximally, allowing control of both the proximal and the distal ends. In this manner devices (and particularly implants such as innerspinous distracters, stimulating leads, and disc slings) may be positioned and/or manipulated within the body.
    Type: Application
    Filed: June 16, 2010
    Publication date: December 30, 2010
    Inventors: Gregory P. Schmitz, Michael P. Wallace, Winnie Chung, Amie R. Borgstrom, Jeffery L. Bleich, Gregory B. Arcenio, Ronald Leguidleguild, Roy Leguidleguild
  • Patent number: 7857813
    Abstract: A method and system for guiding at least a portion of a surgical device to a desired position between two tissues in a patient's body involves coupling a guidewire to the device and pulling the distal end of the guidewire to guide at least a portion of the surgical device to a desired position between the two tissues. The surgical device generally includes one or more guidewire coupling members and may comprise a tissue access device. A system may include a guidewire and a surgical device. In some embodiments, a guidewire, a tissue access device, and one or more additional devices to use with the access device may be provided. Methods, devices and systems may be used in open, less-invasive or percutaneous surgical procedures, in various embodiments.
    Type: Grant
    Filed: August 29, 2006
    Date of Patent: December 28, 2010
    Assignee: Baxano, Inc.
    Inventors: Gregory Schmitz, Jefferey Bleam, Roy Leguidleguid, Jeffery L. Bleich
  • Publication number: 20100274250
    Abstract: Described herein are devices, systems and methods for cutting tissue in a patient. In some embodiments, a tissue modification region of a device includes a pair of flexible elongate cutting members extending along the length of the tissue modification region. Each elongate cutting member may be configured to cut a discrete trough into tissue to a depth that is greater than the thickness of the cutting member. In some embodiments, the device includes a spacer. The spacer may be sized and configured to operate in one of two modes. A first mode, in which the spacer is coupled to the cutting members such that it holds a portion of each of the two cutting members a distance from one another, and a second mode, in which at least a portion of the spacer is moved away from a cutting member to allow the cutting members to cut further into tissue.
    Type: Application
    Filed: May 4, 2010
    Publication date: October 28, 2010
    Inventors: Michael P. Wallace, Robert Garabedian, Nestor C. Cantorna, Jeffery L. Bleich, Roy Leguidleguid, Ronald Leguidleguid
  • Patent number: 7740631
    Abstract: Methods and apparatus are provided for selective surgical removal of tissue. In one variation, tissue may be ablated, resected, removed, or otherwise remodeled by standard small endoscopic tools delivered into the epidural space through an epidural needle. The sharp tip of the needle in the epidural space, can be converted to a blunt tipped instrument for further safe advancement. The current invention includes specific tools that enable safe tissue modification in the epidural space, including a barrier that separates the area where tissue modification will take place from adjacent vulnerable neural and vascular structures. A nerve stimulator may be provided to reduce a risk of inadvertent neural abrasion.
    Type: Grant
    Filed: October 15, 2005
    Date of Patent: June 22, 2010
    Assignee: Baxano, Inc.
    Inventors: Jeffery L. Bleich, Edwin J. Hlavka
  • Patent number: 7738969
    Abstract: Methods and apparatus are provided for selective surgical removal of tissue. In one variation, tissue may be ablated, resected, removed, or otherwise remodeled by standard small endoscopic tools delivered into the epidural space through an epidural needle. The sharp tip of the needle in the epidural space, can be converted to a blunt tipped instrument for further safe advancement. The current invention includes specific tools that enable safe tissue modification in the epidural space, including a barrier that separates the area where tissue modification will take place from adjacent vulnerable neural and vascular structures. A nerve stimulator may be provided to reduce a risk of inadvertent neural abrasion.
    Type: Grant
    Filed: January 21, 2009
    Date of Patent: June 15, 2010
    Assignee: Baxano, Inc.
    Inventor: Jeffery L. Bleich