Pacemaker which adapts to minimize current drain and provide desired capture safety margin
First Claim
1. A cardiac pacemaker, comprising:
- a pacing pulse generator;
means for defining a set of available pulse amplitude and pulse width combinations;
means for selecting a desired pulse width and amplitude combination from said set of available pulse amplitude and width combinations; and
control means for causing said pulse generator to generate pacing pulses at said selected pulse amplitude and pulse width combination;
wherein said selecting means comprises;
means for determining a current drain associated with delivery of pacing pulses at each of said available pulse amplitude and pulse duration combinations;
means for determining a strength/duration relationship for stimulation of a patient'"'"'s heart;
means for defining a desired safety margin;
means for determining which of said available pulse width and amplitude combinations provide said desired safety margin, based on said strength/duration relationship; and
means for selecting from those available pulse amplitude and pulse width combinations which provide said safety margin, the one of said available pulse amplitude and pulse width combinations which has a minimum current drain associated therewith.
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Accused Products
Abstract
A cardiac pacemaker improves battery longevity by automatically providing a safe threshold and an associated pulse width leading to minimum current drain. The pacemaker stores a matrix of current drain characteristics for all of the possible pulse width-voltage pairs, and a revisable strength-duration curve for a patient. Either periodically or as a result of a loss-of-capture episode--whichever occurs first--the pacemaker calculates for each possible pulse width, a new threshold value based upon a measured rheobase and a derived chronaxie. Each threshold is multiplied by a predetermined safety margin. The pacemaker chooses as the pacing stimulation signal, the voltage-pulse width pair having the lowest associated current drain, and satisfying the desired safety margin.
82 Citations
8 Claims
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1. A cardiac pacemaker, comprising:
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a pacing pulse generator; means for defining a set of available pulse amplitude and pulse width combinations; means for selecting a desired pulse width and amplitude combination from said set of available pulse amplitude and width combinations; and control means for causing said pulse generator to generate pacing pulses at said selected pulse amplitude and pulse width combination; wherein said selecting means comprises; means for determining a current drain associated with delivery of pacing pulses at each of said available pulse amplitude and pulse duration combinations; means for determining a strength/duration relationship for stimulation of a patient'"'"'s heart; means for defining a desired safety margin; means for determining which of said available pulse width and amplitude combinations provide said desired safety margin, based on said strength/duration relationship; and means for selecting from those available pulse amplitude and pulse width combinations which provide said safety margin, the one of said available pulse amplitude and pulse width combinations which has a minimum current drain associated therewith. - View Dependent Claims (2, 3)
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4. A method of cardiac pacing, comprising:
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defining a set of available pulse amplitude and pulse width combinations; selecting a desired pulse width and amplitude combination from said set of available pulse amplitude and width combinations; and generating pacing pulses at said selected pulse amplitude and pulse width combination; wherein said selecting step in turn comprises; determining a current drain associated with delivery of pacing pulses at each of said available pulse amplitude and pulse duration combinations; determining a strength/duration relationship for stimulation of a patient'"'"'s heart; defining a desired safety margin; determining which of said available pulse width and amplitude combinations provide said desired safety margin, based on said determined strength/duration relationship; and selecting from those available pulse amplitude and pulse width combinations which provide said safety margin, the one of said available pulse amplitude and pulse width combinations which has a minimum current drain associated therewith. - View Dependent Claims (5, 6)
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7. A cardiac pacemaker, comprising:
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a pacing pulse generator; means for defining a set of available pulse amplitude and pulse width combinations; means for selecting a desired pulse width and amplitude combination from said set of available pulse amplitude and width combinations; and control means for causing said pulse generator to generate pacing pulses at said selected pulse amplitude and pulse width combination; wherein said selecting means comprises; means for determining a strength/duration relationship for stimulation of a patient'"'"'s heart; means for updating said determined strength/duration relationship, comprising means for preventing an updated strength/duration relationship from varying more than a predetermined amount from a previously determined strength/duration relationship; means for defining a desired safety margin; and means for selecting one of said available pulse width and amplitude combinations providing said desired safety margin, based on said updated determined strength/duration relationship.
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8. A method of cardiac pacing, comprising:
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defining a set of available pulse amplitude and pulse width combinations; selecting a desired pulse width and amplitude combination from said set of available pulse amplitude and width combinations; and generating pacing pulses at said selected pulse amplitude and pulse width combination; wherein said selecting step comprises; determining a strength/duration relationship for stimulation of a patient'"'"'s heart; updating said determined strength/duration relationship, said updating step comprising the step of preventing an updated strength/duration relationship from varying more than a predetermined amount from a previously determined strength/duration relationship; defining a desired safety margin; and selecting one of said available pulse width and amplitude combinations providing said desired safety margin, based on said updated determined strength/duration relationship.
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Specification