Apparatus for measuring the frequency of cardiac pulses
First Claim
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1. An apparatus for examining the cardiacpulse frequency comprising:
- a. an input for accepting a cardiac-pulse signal;
b. a pulse shaper and means connecting the pulse shaper to said input;
c. a pulse generator capable of producing a train of pulses with a recurrence frequency which is greater than the cardiac-pulse frequency;
d. a gate and means connecting said pulse generator to an input of the gate;
e. a first control unit for enabling said gate during a period of time between two cardiac-pulses, the pulses being separated by at most only a few intervening cardiac-pulses, means connecting said pulse shaper to the first control unit, and means connecting the first control unit to said gate;
f. a first counter and means connecting an output of said gate to the first counter;
g. computing means for computing parameters relating to the cardiac-pulse frequency;
the parameters comprising an instantaneous cardiac-pulse frequency and a frequency flutter value; and
means connecting an output of the first counter to the computing means; and
h. display means for displaying parameters comprising the parameters listed in (g) and means connecting the computing means to the display means.
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Abstract
An apparatus is disclosed for examining and analyzing cardiac pulses which is capable of determining instantaneous cardiac pulse frequencies, short and long-time averages of the instantaneous frequencies, drifts in the short and long-time averages, average fluctuations of the instantaneous pulse frequencies about the short-time average value, and the average rate of change of the fluctuations. The instantaneous cardiac pulse frequency may be determined from as few as two successive cardiac pulses.
26 Citations
17 Claims
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1. An apparatus for examining the cardiacpulse frequency comprising:
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a. an input for accepting a cardiac-pulse signal; b. a pulse shaper and means connecting the pulse shaper to said input; c. a pulse generator capable of producing a train of pulses with a recurrence frequency which is greater than the cardiac-pulse frequency; d. a gate and means connecting said pulse generator to an input of the gate; e. a first control unit for enabling said gate during a period of time between two cardiac-pulses, the pulses being separated by at most only a few intervening cardiac-pulses, means connecting said pulse shaper to the first control unit, and means connecting the first control unit to said gate; f. a first counter and means connecting an output of said gate to the first counter; g. computing means for computing parameters relating to the cardiac-pulse frequency;
the parameters comprising an instantaneous cardiac-pulse frequency and a frequency flutter value; and
means connecting an output of the first counter to the computing means; andh. display means for displaying parameters comprising the parameters listed in (g) and means connecting the computing means to the display means. - View Dependent Claims (2, 3, 4)
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5. An apparatus for examining the cardiac pulse frequency comprising:
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a. an input for accepting a cardiac pulse signal b. a pulse shaper and means connecting the pulse shaper to said input, c. a pulse generator capable of producing a train of pulses with a recurrence frequency which is greater than the cardiac pulse frequency, d. a gate and means connecting said pulse generator to an input of the gate, e. a first control unit for enabling said gate during a period of time between two cardiac pulses, the pulses being separated by at most only a few intervening cardiac pulses, means connecting said pulse shaper to the first control unit, and means connecting the first control unit to said gate, f. a counter and means connecting an output of said gate to the counter, g. computing means for computing parameters relating to the cardiac pulse frequency;
the parameters comprising an instantaneous cardiac-pulse frequency, a short-time average cardiac-pulse frequency and a frequency flutter value;
the computing means comprising a second control unit and a digital arithmetic unit and means connecting an output of said counter to the arithmetic unit,h. storage registers for storing parameters comprising the parameters listed in (g) and means connecting the arithmetic unit to the storage registers, and i. display means for displaying parameters stored in said storage registers and means connecting said storage registers to the display means. - View Dependent Claims (6, 7, 8, 9)
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10. An apparatus for examining the cardiac pulse frequency comprising:
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a. an input for accepting a cardiac pulse signal, b. a pulse shaper and means connecting the pulse shaper to said input, c. a pulse generator capable of producing a train of pulses with a recurrence frequency which is substantially greater than the cardiac pulse frequency, d. a first frequency divider having a predetermined divisional factor and means connecting an output of said pulse generator with an input of the first frequency divider, the divisional factor being selected so that a frequency of the signal at an output of the first frequency divider is substantially lower than the recurrence frequency of the train of pulses of said pulse generator and substantially greater than the cardiac pulse frequency, e. a gate and means connecting an output of said first frequency divider to an input of the gate, f. a control unit for enabling said gate during a period of time between two cardiac pulses, the pulses being separated by at most only a few intervening cardiac pulses, means connecting said pulse shaper to the control unit, and means connecting the control unit to said gate, g. a first counter and means connecting an output of said gate to the counter, h. a second frequency divider having an adjustable divisional factor which may be set to the reciprocal of a selected number and means for setting the divider to a predetermined initial value, means connecting an output of said pulse generator to an input of the second frequency divider, and means for setting the adjustable divisional factor equal to the reciprocal of a number at an output of said first counter, i. a second counter, means connecting an input of the counter to an output of said second frequency divider, and means connecting an output of the second counter to the means of the second frequency divider for setting the divider to a predetermined initial value, j. a first integrating network for generating a signal substantially proportional to an instantaneous cardiac-pulse frequency characterized by an integration time constant of no greater than approximately the period of time between two cardiac pulses, the pulses being separated by at most only a few intervening cardiac pulses, and means connecting an output of the second frequency divider to an input of the first integrating network, k. a first display means for displaying an instantaneous cardiac pulse frequency and means connecting an output of the first integrating network to an input of the first display means, l. a second integrating network for generating a signal substantially proportional to a short-time average cardiac-pulse frequency characterized by an integration time constant substantially greater than the time constant of the first integrating network, means connecting an output of the first integrating network to an input of the second integrating network, and switching means for reducing the time constant to a shorter value, m. a second display means for displaying a short-time average cardiac-pulse frequency and means connecting an output of the second integrating network to an input of the second display means, n. a frequency flutter-value measuring circuit for producing a signal related to the difference between the instantaneous cardiac pulse frequency and a short-time average value of the cardiac pulse frequency comprising a differential amplifier having an inverting input and non-inverting input, means connecting an output of the first integrating network to one input of the differential amplifier, and means for applying a shorttime average value of a signal at an output of the first integrating network to another input of the differential amplifier, and o. a third display means for displaying the frequency flutter-value and means connecting an output of the frequency flutter-value measuring circuit to the third display means. - View Dependent Claims (11, 12, 13, 14, 15, 16, 17)
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Specification