Implant communication system with patient coil
First Claim
Patent Images
1. A pacing system which comprises:
- an implantable pacer having a tank circuit contained therein;
an external telemetry circuit for transmitting and receiving data to and from said pacer;
said external telemetry circuit being enclosed within a housing and including a variable frequency oscillator having a portion of a resonant tank circuit;
an inductor coil which forms another portion of said resonant tank circuit of said external telemetry circuit, said inductor coil being located outside of said housing for positioning externally on the patient in proximity to the implanted tank circuit;
electrical wire interconnecting the inductor coil and the enclosed telemetry circuit;
said variable frequency oscillator having means for generating a waveform that is frequency-responsive to the telemetry signals provided by the implanted tank circuit.
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Abstract
A system is provided for communicating with a tank circuit that is implanted in a patient. The system comprises a telemetry circuit including an oscillator enclosed within a housing. An inductor coil is located outside of the housing for positioning externally on the patient in proximity to the implanted tank circuit. The inductor coil is connected to the telemetry circuit by electrical wiring, with the inductor coil being operative to form at least a portion of a resonant tank for the oscillator.
109 Citations
11 Claims
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1. A pacing system which comprises:
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an implantable pacer having a tank circuit contained therein; an external telemetry circuit for transmitting and receiving data to and from said pacer; said external telemetry circuit being enclosed within a housing and including a variable frequency oscillator having a portion of a resonant tank circuit; an inductor coil which forms another portion of said resonant tank circuit of said external telemetry circuit, said inductor coil being located outside of said housing for positioning externally on the patient in proximity to the implanted tank circuit; electrical wire interconnecting the inductor coil and the enclosed telemetry circuit; said variable frequency oscillator having means for generating a waveform that is frequency-responsive to the telemetry signals provided by the implanted tank circuit. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9)
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10. A pacing system which comprises:
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an implantable pacer having a tank circuit contained therein; an external telemetry circuit for transmitting and receiving data to and from said pacer; said external telemetry circuit being enclosed within a housing and including a variable frequency oscillator having a portion of a resonant tank circuit; an inductor coil which forms another portion of said resonant tank circuit of said external telemetry circuit, said inductor coil being located outside of said housing for positioning externally on the patient in proximity to the implanted tank circuit; said inductor coil including a primary winding operating as a transmission coil from the oscillator to the implanted tank circuit; said inductor coil having circular configuration, and being generally disc-shaped, with a diameter that is at least 50 times its thickness; electrical wire interconnecting the inductor coil and the enclosed telemetry circuit; said variable frequency oscillator having means for generating a waveform that is frequency-responsive to the telemetry signals provided by the implanted circuit.
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11. A process for communicating with the tank circuit implanted in a patient, which comprises the steps of:
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providing an implantable pacer having a tank circuit contained therein; providing an external telemetry circuit for transmitting and receiving data to and from said pacer; said external telemetry circuit being enclosed within a housing and including a variable frequency oscillator having a portion of a resonant tank circuit; providing a separated inductor coil which forms another portion of said resonant tank circuit of said external telemetry circuit, said inductor coil being located outside of the housing and interconnected to the housing by electrical wire; providing the inductor coil with a primary coil operating as a transmission coil to transmit the signal generated by the oscillator to the implanted tank circuit; communicating with the implanted tank circuit by placing the inductor coil on the patient'"'"'s skin in proximity to the implanted tank circuit and locating the separated housing at a remote position from the implanted tank circuit; and providing said variable frequency oscillator with means for generating a waveform that is frequency-responsive to the telemetry signals provided by the implanted tank circuit.
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Specification