Device for determining myocardial function and corresponding pro

Surgery: light – thermal – and electrical application – Light – thermal – and electrical application – Electrical therapeutic systems

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607 6, 128702, A61N 1365

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active

054963516

ABSTRACT:
The device senses Natural Heart Acceleration (NHA), isolating at least one segment (t) thereof corresponding to an isovolumetric phase, such as isovolumetric contraction (P1, P2) and/or isovolumetric relaxation (P3, P4). Preferentially, the action of isolation of the aforesaid segment is made starting from the electrocardiogram (ECG) signal. Among other things, the device may be used to carry out pacing functions (pacemaker, defibrillator, pacer cardioverter defibrillator) and/or to pick up, possibly by telemetry, data on the myocardial function and/or also to control a system of drug administration.

REFERENCES:
patent: 4936304 (1990-06-01), Kresh et al.
patent: 5304208 (1994-04-01), Inguaggiato et al.
AAMI 17th Annual Meeting, May 9-12, 1982, San Francisco, "An Interactive Microcomputer-based Graphic System for Analysis of Cardio-Dynamic Function".
Invited Speaker at 35th ACEMB Conference: Stimulation, Sensing, and Biocompatibility of Implanted Devices, Sep. 1982, "Pacing Sensors For Heart-Rate Control and Biophysical Telemetry", pp. 1-4.
Progress in Artificial Organs-1983, "Effects of Left Ventricular Bypass on Intramyocardial Mechanics", Kresh et al., pp. 107-116.
Heart Transplantation/vol. IV, No. 2, Feb. 1985, Organ Procurement & Organ Preservation, "The Intramyocardial Pressure", Kresh et al., pp. 241-264.
American College of Surgeons, 1985, Surgical Forum, vol. XXXVI, Kresh et al., "Continuous Intraoperative Monitoring of Myocardial Tissue Pressure: Experimental & Clinical Results", pp. 301-303.
Journal of Applied Physyiology, Mar. 1993, vol. 74, No. 3, "Ultrasonic Measurements In Vivo".
Sensor Review, vol. 13, No. 1, 1993, pp. 22-25, MCB University Press, Canhui Cai et al., "A Versatile Ultrasonic Ranging System".

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