Apparatus and methods for communications with implanted active medical devices
First Claim
1. A device to extract a useful signal, emitted by an implanted medical apparatus, in an electromagnetic signal having a wavelength and including the useful signal mixed with a parasitic signal, comprising:
- a plurality of signal receivers located at distinct points and spaced apart relative to each other by a distance of separation, the distance of separation between said signal receivers being negligible relative to the wavelength of the electromagnetic signal, each signal receiver being sensitive to the magnetic component of the electromagnetic signal;
a plurality of amplifiers, each one of said plurality of amplifiers being coupled to one of the plurality of signal receivers and having an input, an adjustable gain, and an amplified output;
means for summing the amplified outputs and providing a consequent sum signal output;
means for evaluating a magnitude representative of the level of the consequent summed signal, andmeans for processing said magnitude and adjusting the gains of said plurality of amplifiers to minimize the magnitude in a preliminary step in the absence of the useful signal, and to maintain said amplifiers at said adjusted gains in a second step in the presence of the useful signal.
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Accused Products
Abstract
Process and apparatus for extracting a useful signal emitted by an implanted active medical device in the presence of parasitic signals. This device includes a plurality of signal receivers located at distinct points. The signal receivers are sensitive to the magnetic component of the electromagnetic signals and separated from each other by a distance that is negligible as compared to the wavelength of the electromagnetic signal. A plurality of amplifiers are provided with one amplifier being associated with each signal receiver and each amplifier having an adjustable gain. The amplified signals are summed by an adder, and the summed signal (V(t)) is evaluated using a magnitude (|V|) representative of the level of the summed signal. A processing means is used in the absence of the useful signal to adjust the gain of each amplifier, as appropriate, to minimize the magnitude in a preliminary step, and to maintain the amplifier gains at the adjusted values in a subsequent step, in the presence of the useful signal. As a result, the useful signal is acquired and the perturbing signals are suppressed.
30 Citations
21 Claims
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1. A device to extract a useful signal, emitted by an implanted medical apparatus, in an electromagnetic signal having a wavelength and including the useful signal mixed with a parasitic signal, comprising:
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a plurality of signal receivers located at distinct points and spaced apart relative to each other by a distance of separation, the distance of separation between said signal receivers being negligible relative to the wavelength of the electromagnetic signal, each signal receiver being sensitive to the magnetic component of the electromagnetic signal; a plurality of amplifiers, each one of said plurality of amplifiers being coupled to one of the plurality of signal receivers and having an input, an adjustable gain, and an amplified output; means for summing the amplified outputs and providing a consequent sum signal output; means for evaluating a magnitude representative of the level of the consequent summed signal, and means for processing said magnitude and adjusting the gains of said plurality of amplifiers to minimize the magnitude in a preliminary step in the absence of the useful signal, and to maintain said amplifiers at said adjusted gains in a second step in the presence of the useful signal. - View Dependent Claims (2, 3, 4)
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5. A process to extract a useful signal, emitted by an implanted medical apparatus, in an electromagnetic signal having a wavelength including the useful signal mixed with a parasitic signal, including the steps of:
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a) conducting a preliminary step of; (i) inhibiting the emission of the useful signal by the implanted apparatus; (ii) receiving the parasitic signal by a plurality of signal receivers located at different positions and spaced a distance apart relative to each other, each signal receiver including an associated amplifier having an adjustable gain and an amplified output and being sensitive to the magnetic component of the electromagnetic signal, the distance separating the signal receivers being negligible as compared to the wavelength of the electromagnetic signal; (iii) summing the amplified outputs delivered by the amplifiers and providing a sum signal output; (iv) evaluating the magnitude of the sum signal; and (v) adjusting the gain of each amplifier to the extent necessary to provide a minimum sum signal; and (b) conducting a subsequent step of; (i) causing the implanted device to emit the useful signal, (ii) collecting at the plurality of signal receivers the electromagnetic signal including the useful signal and the parasitic signal, and (iii) maintaining the values of the gains of the amplifiers at the values adjusted in the preliminary step (a) (v). - View Dependent Claims (6, 7, 8, 9, 10)
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11. An apparatus for separating a useful signal emitted by an implanted active medical device from an electromagnetic signal having a wavelength and including the useful signal and perturbing signals, comprising:
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a first plurality of signal receivers, said signal receivers being spaced apart relative to each other a distance that is negligible with respect to the electromagnetic signal wavelength, each receiver having a coil sensing a magnetic field component of the electromagnetic field and an output signal corresponding to the sensed magnetic field component; a second plurality of amplifiers associated with said first plurality of signal receivers so that each signal receiver is coupled to an amplifier, each amplifier having an input receiving a coil output signal, an adjustable gain, and an amplified output; an adder circuit summing the amplified outputs of said second plurality of amplifiers and having a sum signal output; means for processing said sum signal and controlling the plurality of amplifier gains in one of a first operating mode in the absence of said useful signal, to select the gains of said plurality of amplifiers to minimize the magnitude of said sum signal, and a second operating mode in the presence of said useful signal, to maintain the amplifier gains as selected in said first operating mode, thereby to obtain a sum signal representative of the useful signal in the second operating mode. - View Dependent Claims (12, 13, 14, 15, 16)
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17. An apparatus for receiving useful telemetry signals emitted at a first wavelength by an implanted active medical device in the presence of perturbing noise, comprising:
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a first receiver coil having a first coil output signal that is responsive to the magnetic field component of an electromagnetic signal at said first wavelength; a first amplifier having an input coupled to the first coil output signal, an adjustable gain, and an amplified output; a second receiver coil having a second coil output signal that is responsive to the magnetic field component of said electromagnetic signal at said first wavelength; a second amplifier having an input coupled to the second coil output signal, an adjustable gain, and an amplified output; an adder circuit having as inputs said first and second amplifier outputs and having an output corresponding to the sum of the first and second amplifier outputs; a circuit having an input receiving the adder circuit output and an output signal that is a magnitude representative of the magnitude of the adder circuit output; and means for processing said magnitude in a first operation in the absence of the useful telemetry signal to adjust the gains of the first and second amplifiers to first and second gain values, respectively, to minimize the magnitude, and in a second operation in the presence of the useful telemetry signal to acquire the useful telemetry signal based on said adjusted first and second amplifier gains suppressing said perturbing noise. - View Dependent Claims (18, 19, 20, 21)
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Specification