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    • 1. 发明公开
    • DETECTION OF PRESSURE WAVES TRANSMITTED THROUGH CATHETER/LEAD BODY
    • 收购导管的方式或传输的行驱动的波
    • EP0835153A1
    • 1998-04-15
    • EP97916053.0
    • 1997-03-18
    • MEDTRONIC, INC.
    • ECKER, Robert, M.McCLURE, Lawrence, C.WAHLSTRAND, John, D.
    • A61B5A61N1
    • A61N1/3702A61N1/36514
    • Method and apparatus for detecting pressure waves caused by movement of a body organ, transmitted through a catheter (18) to an implanted medical device employing a pressure wave transducer (32) mounted in relation to the proximal end (40) of the catheter (18). The system may also include a reference transducer (34) having the same pressure wave response characteristics as the pressure wave transducer (32) but isolated from the proximal connector end (40) for providing a reference signal including common mode pressure wave noise that both transducers (32, 34) are simultaneously subjected to. The pressure wave signal and the reference signal are preferably amplified, bandpass filtered, stored, telemetered out or used to trigger a device operation. The pressure and reference wave transducers (32, 34) preferably are piezoelectric crystal transduces or accelerometers in direct or indirect mechanical contact with the proximal connector end (40) of the catheter and is encapsulated from the body within a device connector assembly (20). Cardiac pressure waves and respiration pressure waves are both transmitted proximally through the lead body (18) to the pressure wave transducer (32). Pressure wave signals may be derived in parallel to detect particular characteristic of the cardiac and/or respiratory cycle to provide timing signal(s) for controlling the device operations.
    • 2. 发明授权
    • DETECTION OF PRESSURE WAVES TRANSMITTED THROUGH CATHETER/LEAD BODY
    • 导管或主压力波方式收购TRANSMITTED
    • EP0835153B1
    • 2003-08-27
    • EP97916053.8
    • 1997-03-18
    • MEDTRONIC, INC.
    • ECKER, Robert, M.McCLURE, Lawrence, C.WAHLSTRAND, John, D.
    • A61N1/365A61N1/37
    • A61N1/3702A61N1/36514
    • Method and apparatus for detecting pressure waves caused by movement of a body organ, transmitted through a catheter (18) to an implanted medical device employing a pressure wave transducer (32) mounted in relation to the proximal end (40) of the catheter (18). The system may also include a reference transducer (34) having the same pressure wave response characteristics as the pressure wave transducer (32) but isolated from the proximal connector end (40) for providing a reference signal including common mode pressure wave noise that both transducers (32, 34) are simultaneously subjected to. The pressure wave signal and the reference signal are preferably amplified, bandpass filtered, stored, telemetered out or used to trigger a device operation. The pressure and reference wave transducers (32, 34) preferably are piezoelectric crystal transduces or accelerometers in direct or indirect mechanical contact with the proximal connector end (40) of the catheter and is encapsulated from the body within a device connector assembly (20). Cardiac pressure waves and respiration pressure waves are both transmitted proximally through the lead body (18) to the pressure wave transducer (32). Pressure wave signals may be derived in parallel to detect particular characteristic of the cardiac and/or respiratory cycle to provide timing signal(s) for controlling the device operations.