EP0202748A1

Electronic system to distinguish between sinus and nonsinus atrial depolarizations.

Abstract

@ An electronic system for maintaining atrio-ventricular synchrony that distinguishes between sinus and nonsinus atrial depolarizations and that stimulates ventricular contraction only when the immediately preceding atrial contraction was a pacemaker stimulated or spontaneous sinus depolarization. Incorporated into the electronic system is a method of determining the sequence of atrial activation to distinguish sinus from nonsinus atrial activations. The atrial activation sequence is determined by comparing the time at which electrical activity is detected at one point in the atrium to the time at which electrical activity is detected at a point in the atrium closer to the ventricle.

EP0202748A1, drawing sheet 1
Sheet 1 of 10

Term

Term ended

Projected expiry passed 7 April 2006, 20.5 years ago.

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38 claims: 8 independent, 30 dependent

  1. 1
    An electronic system for pacing a heart that distinguishes between sinus and nonsinus atrial depolarizations and that does not stimulate ventricular depolarizations in response to nonsinus atrial depolarizations, comprising:an electric lead having first and second ends;at least two electrodes attached to the electric lead near the first end of the lead;a sensing circuit connected to the second end of the electric lead said sensing circuit for detecting voltage differences between one of the electrodes and an indifferent electrode and for detecting voltage differences between the two electrodes;a timing circuit connected to the sensing circuit said timing circuit for determining the time interval between the time a voltage difference is detected between one electrode and an indifferent electrode and the time a voltage difference is detected between the two electrodes;a logic circuit connected to the timing circuit said logic circuit for comparing the time intervals determined by the timing circuit to time intervals indicative of sinus atrial depolarizations;and ventricular stimulating circuit connected to the logic circuit said ventricular stimulating circuit that does not stimulate ventricular depolariation when the comparison made by the logic circuit indicates that the immediately preceding atrial depolarization was nonsinus.
  2. 5
    An electronic system for pacing a heart that distinguishes between sinus and nonsinus atrial depolarization and that does not stimulate ventricular depolarizations in response to nonsinus atrial depolarizations, comprising:an electric lead having first and second ends;at least two pairs of electrodes attached to the electric lead near the first end of the lead, the distance between the electrodes of each pair being less than the distance between the pairs of electrodes;a sensing circuit connected to the second end of the electric lead said sensing circuit for detecting voltage differences between the electrodes of each of the pairs of electrodes;a timing circuit connected to the sensing circuit said timing circuit for determining the time interval between the time a voltage difference is detected between the electrodes of one pair of electrodes and the time a voltage difference is detected between the electrodes of the other pair of electrodes;a logic circuit connected to the timing circuit said logic circuit for comparing the time interval determined by the timing circuit to the time interval indicative of sinus atrial depolarizations;and a ventricular stimulating circuit connected to the logic circuit said ventricular stimulating circuit that does not stimulate ventricular depolarizations when the comparison made by the logic circuit indicates that the immediately preceding atrial depolarization was nonsinus.
  3. 8
    Apparatus for distinguishing between sinus and non-sinus atrial depolarizations, comprising:an electric lead having first and second ends;at least two electrodes attached to the electric lead near the first end of the lead;detecting means connected to the second end of the electric lead for detecting voltage differences between one of the electrodes and an indifferent electrode and for detecting voltage differences between the two electrodes;and comparing means connected to the detecting means for comparing the time at which a voltage difference between one of the electrodes and an indifferent electrode is detected to the time at which a voltage difference between the two electrodes is detected.
  4. 12
    Apparatus for distinguishing between sinus and nonsinus atrial depolarizations, comprising:an electric lead having first and second ends;two pairs of electrodes attached to the electric lead near the first end of the lead, the distance between the electrodes of each pair being less than the distance between the pairs of electrodes;detecting means connected to the second end of the electric lead for detecting voltage differences between the electrodes of each pair of electrodes;and comparing means connected to the detecting means for comparing the time at which a voltage difference is detected between the electrodes of one pair of electrodes to the time at which a voltage difference is detected between the electrodes of the other pair of electrodes.
  5. 15
    Method of distinguishing between sinus and nonsinus atrial depolarizations, comprising:determining the direction of the electrical wave of atrial depolarization in a subject;and comparing the direction of the wave of atrial depolarization determined for the subject to the direction of the wave of atrial depolarization associated with sinus atrial depolarizations.
  6. 27
    Method of using a cardiac pacemaker to synchronize atrial activations and ventricular depolarizations, comprising:determining the direction of the electrical wave of atrial depolarization in a subject;comparing the direction of the wave of atrial depolarization determined for the subject to the direction of the wave of atrial depolarization associated with sinus atrial activation;and stimulating a ventricular depolarization only when the comparison made in the previous step indicates that the immediately preceding atrial depolarization was a spontaneous sinus or pacemaker stimulated sinus atrial depolarization.
  7. 28
    Method of using a cardiac pacemaker to synchronize atrial activations and ventricular depolarizations comprising:obtaining an electric lead having first and second ends that has at least two electrodes attached near the first end of the lead;positioning the first end of the lead to detect electrical activity in the atrium of the subject;using a sensing circuit connected to the second end of the lead to detect voltage differences between one of the electrodes and an indifferent electrode and between the two electrodes;using a timing circuit connected to the sensing circuit to determine the temporal relationship of the time when a voltage difference is detected between one of the electrodes and an indifferent electrode and the time when a voltage difference is detected between the two electrodes;using a logic circuit connected to the timing circuit to compare the temporal relationship determined in the previous step to the temporal relationship indicative of sinus atrial depolarizations;and using a ventricular stimulating circuit connected to the logic circuit to stimulate ventricular depolarization only when the comparison made by the logic circuit indicates that the immediately preceding atrial contraction was a spontaneous sinus or pacemaker stimulated atrial depolarization.
  8. 34
    Method of using a cardiac pacemaker to synchronize sinus atrial depolarizations and ventricular depolarizations, comprising:obtaining an electrical lead having first and second ends that has at least two pairs of electrodes attached near the first end of the lead;positioning the first end of the lead to detect electrical activity in the atrium of the subject;using a sensing circuit connected to the second end of the lead to detect voltage differences between the electrodes of one pair of electrodes and between the electrodes of the other pair of electrodes;using a timing circuit connected to the sensing circuit to determine the temporal relationship of the time when a voltage difference is detected between the electrodes of one pair of electrodes and the time when a voltage difference is detected between the electrodes of the other pair of electrodes;using a logic circuit connected to the timing circuit to compare the temporal relationship determined in the previous step to the temporal relationship indicative of sinus atrial depolarizations;and using a ventricular stimulating circuit connected to the logic circuit to stimulate ventricular depolarizations only when the comparison made by the logic circuit indicates that the immediately preceding atrial contraction was a spontaneous sinus or pacemaker stimulated atrial depolarization.