Systems and methods for implanting electrode leads for use with implantable neuromuscular electrical stimulator
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
A61N-001/05
A61N-001/36
출원번호
US-0295153
(2014-06-03)
등록번호
US-9186501
(2015-11-17)
발명자
/ 주소
Rawat, Prashant Brijmohansingh
Demorett, Henry Thomas
Shiroff, Jason Alan
출원인 / 주소
Mainstay Medical Limited
대리인 / 주소
Foley & Lardner LLP
인용정보
피인용 횟수 :
1인용 특허 :
55
초록▼
A system of implanting electrode leads for restoring muscle function to the lumbar spine to treat low back pain is provided. The system provides efficient implantation of the leads, including the ability to verify deployment of anchoring mechanisms on the lead using an impedance assessment, such tha
A system of implanting electrode leads for restoring muscle function to the lumbar spine to treat low back pain is provided. The system provides efficient implantation of the leads, including the ability to verify deployment of anchoring mechanisms on the lead using an impedance assessment, such that the implanted lead may be secured within the patient and used to restore muscle function of local segmental muscles associated with the lumbar spine stabilization system.
대표청구항▼
1. A system for restoring muscle function to the lumbar spine, the system comprising: first and second electrodes configured to be implanted in or adjacent to tissue associated with control of the lumbar spine;a lead having the first and second electrodes disposed thereon;a fixation element coupled
1. A system for restoring muscle function to the lumbar spine, the system comprising: first and second electrodes configured to be implanted in or adjacent to tissue associated with control of the lumbar spine;a lead having the first and second electrodes disposed thereon;a fixation element coupled to the lead and disposed in proximity to the first electrode, the fixation element configured to transition from a delivery state, wherein the fixation element is positioned adjacent to the first electrode, to a deployed state, wherein the fixation element is spaced apart from the first electrode and is positioned to anchor the lead to an anchor site;a pulse generator coupled to the first and second electrodes via the lead, the pulse generator configured to cause the first or second electrode to emit energy such that the second or first electrode, respectively, receives a portion of the emitted energy, the pulse generator further configured to transmit a signal indicative of an impedance measurement based on the energy emitted and the portion of the energy received; andsoftware stored on a non-transient computer readable media configured to run on an external computer operatively coupled to the pulse generator, the software configured to cause the external computer to display the impedance measurement and to indicate whether the fixation element is in the delivery state or the deployed state based on the impedance measurement. 2. The system of claim 1, further comprising a second fixation element coupled to the lead distal to the fixation element, wherein the fixation element is angled distally relative to the lead and the second fixation element is angled proximally relative to the lead, and wherein the fixation element and the second fixation element are configured to sandwich the anchor site therebetween. 3. The system of claim 1, further comprising an external programmer coupled to the external computer, the external programmer configured to receive the signal indicative of the impedance measurement from the pulse generator and to transmit the signal to the external computer. 4. The system of claim 3, wherein the external programmer is configured to transfer programming data to the pulse generator. 5. The system of claim 4, wherein the software is configured to permit selection, adjustment, and display of the programming data. 6. The system of claim 4, wherein the programming data comprises at least one of: pulse amplitude, pulse width, stimulation rate, stimulation frequency, ramp timing, cycle timing, session timing, or electrode configuration. 7. The system of claim 4, further comprising a handheld activator configured to transfer a stimulation command to the pulse generator, wherein the stimulation command directs at least one of the first or second electrodes to stimulate the tissue in accordance with the programming data. 8. The system of claim 1, wherein the software is further configured to cause the external computer to display a second impedance measurement based on a second signal. 9. The system of claim 1, wherein the software is configured to determine whether the fixation element is in the delivery state or the deployed state. 10. The system of claim 1, wherein the impedance measurement is indicative of the fixation element being in the delivery state in a range and the impedance measurement is indicative of the fixation element being in the deployed state in a different range. 11. The system of claim 10, wherein the range is between 1501-3500 ohms, 1200-2500 ohms, 1000-2000 ohms, or 750-1750 ohms and the different range is between 500-1500 ohms, 500-1200 ohms, 500-1000 ohms, or 500-750 ohms. 12. A method of verifying deployment of a fixation element in a system for restoring muscle function to the lumbar spine, the method comprising: implanting a lead such that an electrode disposed on the lead is positioned in or adjacent to tissue associated with control of the lumbar spine, the lead coupled to a fixation element disposed in proximity to the electrode, the fixation element configured to transition from a delivery state, wherein the fixation element is positioned adjacent to the electrode, to a deployed state, wherein the fixation element is spaced apart from the electrode and is positioned to anchor the lead to an anchor site;causing the electrode to stimulate tissue using a pulse generator;transmitting a signal indicative of an impedance measurement to an external display;displaying the impedance measurement on the external display; anddetermining whether the fixation element is in the delivery state or the deployed state based on the displayed impedance measurement. 13. The method of claim 12, wherein the signal is transmitted from the pulse generator to an external programmer coupled to an external computer having the external display. 14. The method of claim 12, further comprising adjusting the lead if the fixation element is determined to be in the delivery state.
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이 특허에 인용된 특허 (55)
Brennen Kenneth R., Active fixation medical electrical lead having improved turning tool.
Friedman Harry G. (Plymouth MN) Wickham ; Jr. Robert W. (Harris MN), Apparatus and method for optimum electrode placement in the treatment of disease syndromes such as spinal curvature.
Dufresne Joel R. (St. Paul MN) Sondermann William L. (Minneapolis MN), Biological tissue stimulator with adjustable high voltage power supply dependent upon load impedance.
Kieturakis Maciej J. (San Carlos CA) Mollenauer Kenneth H. (Santa Clara CA) Monfort Michelle Y. (Los Gatos CA), Expansible tunneling apparatus for creating an anatomic working space.
Loeb, Gerald E.; Richmond, Francis J. R.; Mann, Carla M.; Faltys, Michael A.; Whitehurst, Todd K.; McGivern, James P., Implantable stimulator system and method for treatment of incontinence and pain.
Barolat,Giancarlo; Cameron,Tracy L.; Chavez,Christopher G., System and method for neurological stimulation of peripheral nerves to treat low back pain.
Pierre Andre Grandjean BE; David E. Francischelli ; Kendra K. Gealow ; Robert Leinders NL; Martinus A. G. M. Bakx NL; Koen J. Weijand NL, System and method of determining skeletal muscle contraction by serial lead impedance measurements.
King Gary W. ; Gielen Frans,NLX ; Petersen Daryle ; Rise Mark T. ; Schendel Michael ; Starkebaum Warren, Techniques for positioning therapy delivery elements within a spinal cord or a brain.
Shi,Jess Weigian; He,Yuping; Doan,Que T.; Peterson,David K. L., Techniques for sensing and adjusting a compliance voltage in an implantable stimulator device.
Sachs, Dan; Rawat, Prashant Brijmohansingh; Shiroff, Jason Alan; Crosby, Peter Andrew, Systems and methods for restoring muscle function to the lumbar spine.
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