Noninvasive continuous cardiac output monitor
First Claim
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1. A method for noninvasive, continuous determination of cardiac output comprising:
- (a) generating a sequence of noninvasive cardiography signals which are quantitatively dependent upon cardiac output;
(b) transmitting said sequence of noninvasive cardiography signals to a computer system and associated neural network programmed to be capable of generating a single output signal from the combined sequence of signals;
(c) processing said sequence of signals according to the programming incorporated in said computer system and associated neural network by;
(i) applying previously-determined weighting factors incorporated in said neural network to said sequence of signals, which weighting factors cause the output signal of the neural network to match the value of cardiac output determined, by invasive cardiography signals, to correspond to said sequence of noninvasive cardiography signals; and
(d) reporting said single output signal as the determined value of cardiac output corresponding to said sequence of noninvasive cardiography signals.
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Abstract
Method and apparatus for continuous, non-invasive determination of cardiac output which processes a sequence of non-invasive cardiography signals which are quantitatively dependent upon cardiac output within a computer system and associated neural network capable of generating a single output signal for the combined input signals, wherein the neural network applies weighting factors determined during a training phase to force the output signal to match the known value of cardiac output determined by invasive means and reports the single output signal as the determined value of cardiac output.
125 Citations
7 Claims
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1. A method for noninvasive, continuous determination of cardiac output comprising:
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(a) generating a sequence of noninvasive cardiography signals which are quantitatively dependent upon cardiac output;
(b) transmitting said sequence of noninvasive cardiography signals to a computer system and associated neural network programmed to be capable of generating a single output signal from the combined sequence of signals;
(c) processing said sequence of signals according to the programming incorporated in said computer system and associated neural network by;
(i) applying previously-determined weighting factors incorporated in said neural network to said sequence of signals, which weighting factors cause the output signal of the neural network to match the value of cardiac output determined, by invasive cardiography signals, to correspond to said sequence of noninvasive cardiography signals; and
(d) reporting said single output signal as the determined value of cardiac output corresponding to said sequence of noninvasive cardiography signals. - View Dependent Claims (2, 3, 4, 5, 6, 7)
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Specification