EP0776233A2

Atrial and ventricular capture detection and threshold-seeking pacemaker

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 31 July 2015, 11.2 years ago.

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43 claims: 13 independent, 30 dependent

  1. 1
    Claims of equivalent WO 9604956 A2 CLAIMS 1. A dual chamber pacemaker pulse generator for attachment with atrial and ventricular pacing and βenβing electrodes for pacing a patient'β heart in the atrium and the ventricle at adjustable atrial and ventricular pacing pulse energies comprising:variable escape interval timing meanβ for establishing an atrial normal pacing rate escape interval;atrial pace pulβe generator meanβ for generating an atrial pace pulβe at βaid atrial electrodes at the end of βaid atrial normal rate eβcape interval in the absence of an atrial sensed event signal at a normal pace pulse energy;atrial sensing means coupled to said atrial electrodes for generating an atrial βenβed event βignal in response to a natural depolarization of atrial tissue during at leaβt a major portion of βaid atrial normal pacing rate eβcape interval;atrial-ventricular delay timing meanβ for establishing an A-V delay interval commencing in timed relation to an atrial sensed event βignal or an atrial pace pulβe;ventricular βenβing means coupled to said ventricular electrodes for generating a ventricular sensed event signal in response to a depolarization of ventricular tissue;ventricular pace pulse generator means for generating a ventricular pace pulse at said ventricular electrodeβ at the end of βaid A-V delay interval in the absence of a ventricular βenβed event βignal detected within βaid A-V delay interval;atrial stimulation threβhold teβt meanβ for operating βaid eβcape interval timing means at an atrial pace test eβcape interval and for initiating the delivery of an atrial pace test stimulus by βaid atrial pace pulse generator meanβ at the end of an atrial pace teβt escape interval at an atrial pace test pulse energy varying from βaid normal atrial pace pulse energy in an atrial pace teβt cycle;atrial capture detection meanβ responsive to said ventricular senβing meanβ for declaring atrial capture following the delivery of an atrial pace test stimulus by the detection of a ventricular sensed event signal in at least a portion of the A-V delay interval following the delivery of the atrial pace test stimulus;and atrial loss of capture detection meanβ responsive to βaid ventricular βenβing meanβ for declaring atrial loss of capture following the delivery of an atrial pace teβt βtimuluβ by the absence of a ventricular sensed event signal detected in the A-V delay interval.
  2. 2
    The pacemaker pulβe generator of Claim 1 wherein βaid atrial stimulation threshold test means further comprises:means for setting the atrial test escape interval to correspond to an atrial test rate exceeding the natural atrial depolarization rate of the patient's atrium;and meanβ for determining a starting atrial pace teβt pulβe energy that consistently results in capture of the patient's atrium at βaid atrial teβt rate.
  3. 3
    The pacemaker pulse generator of Claim 2 wherein βaid atrial capture detection meanβ further compriβeβ:meanβ for defining a time window interval commencing with βaid λ-V delay interval and timing out at a time within βaid A-V delay interval before the conducted ventricular depolarization resulting from the capture of the atrium would be expected to appear at the site of the ventricular electrodes;and meanβ for declaring a ventricular βenβed event occurring during βaid time window interval aβ a natural ventricular depolarization not resulting from capture of the patient's atrium by the preceding atrial pace test stimulus and not indicative of atrial capture or loββ of capture by the preceding atrial pace test βtimuluβ.
  4. 4
    The pacemaker pulβe generator of Claim 3 wherein βaid atrial stimulation threshold test means further comprises:means for reducing the atrial test pulβe energy of the βucceeding atrial pace teβt βtimuli and repeating the delivery of atrial pace teβt βtimuli by said atrial pace pulse generator meanβ at the end of successive test escape intervale at euccesβively reduced atrial test pace pulse energies until atrial loββ of capture iβ declared at a reduced atrial teβt pulβe energy;and meanβ responsive to declaration of atrial loββ of capture for repeating the delivery of atrial pace teβt βtimuli by βaid atrial pace pulβe generator meanβ at the end of βuccessive atrial teβt eβcape intervale at the atrial pace teβt pulβe energy of a preceding declared atrial capture until such atrial capture iβ declared at leaβt twice.
  5. 5
    The pacemaker pulβe generator of Claim 4 wherein βaid pulse energy reducing means further comprises means for reducing the atrial pace test βtimuluβ pulβe width until atrial loββ of capture iβ declared at a reduced pulse width indicative of the atrial stimulation pulβe width threβhold and for thereafter reducing the atrial pace teβt βtimuluβ pulβe amplitude until atrial lose of capture is declared at a reduced pulse amplitude indicative of the atrial stimulation pulβe amplitude threβhold.
  6. 6
    The pacemaker pulβe generator of Claim 5 further comprising:means for storing the atrial teβt pulβe widthβ and pulβe amplitudes at atrial lose of capture or at atrial capture;and meanβ operable on command of a remote programmer located outside the patient's body for telemetering βaid stored atrial pulse widths and amplitudes to βaid remote programmer.
  7. 7
    The pacemaker pulβe generator of Claim 6 further comprising:meanβ for setting the normal atrial pace pulse energy at a normal pace pulse width and pulse amplitude exceeding the atrial loββ of capture stimulation threshold pulβe width and pulβe amplitude by a βafety margin.
  8. 8
    The pacemaker pulβe generator of Claim 7 wherein βaid atrial pace pulβe generator meanβ further comprises:means responsive to the atrial lose of capture declared by βaid atrial loββ of capture detection means for generating an atrial backup pace pulβe at a greater pace pulβe energy at the end of the following atrial pace normal rate eβcape interval.
  9. 9
    The pacemaker pulse generator of Claim 1 wherein βaid atrial pace pulβe generator meanβ further comprises:means responsive to the atrial loss of capture declared by said atrial lose of capture detection means for generating an atrial backup pace pulse at a greater pace pulβe energy at the end of the following atrial pace normal rate eβcape interval.
  10. 10
    The pacemaker pulse generator of Claim 1 further comprising:means for storing the atrial teβt pulse energy at atrial loββ of capture and/or atrial capture aβ atrial βtimulation threβhold data;and meanβ operable on command of a remote programmer located outβide the patient's body for telemetering said stored atrial stimulation threshold data to said remote programmer.
  11. 11
    The pacemaker pulse generator of Claim 1 further comprising:means for setting the normal atrial pace pulse energy at a normal pace pulse energy exceeding the atrial lose of capture βtimulation threshold pulse energy by a safety margin.
  12. 12
    The pacemaker pulse generator of Claim 1 wherein βaid atrial capture detection meanβ further comprises:meanβ for defining a time window interval commencing with βaid A-V delay interval and timing out at a time within βaid A-V delay interval before the conducted ventricular depolarization reβulting from the capture of the atrium would be expected to appear at the site of the ventricular electrodes;and means for declaring a ventricular sensed event occurring during said time window interval aβ a natural ventricular depolarization not resulting from capture of the patient's atrium by the preceding atrial pace test stimulus and not indicative of atrial capture or loββ of capture by the preceding atrial teβt βtimuluβ.
  13. 13
    The pacemaker pulβe generator of Claim 12 wherein βaid atrial βtimulation threshold test means further comprises:means for reducing the atrial test pulse energy of the succeeding atrial pace test βtimuli and repeating the delivery of atrial pace test stimuli by said atrial pace pulse generator means at the end of successive teβt escape intervale at successively reduced atrial test pace pulse energies until atrial loss of capture is declared at a reduced atrial test pulβe energy;and meanβ responsive to declaration of atrial loββ of capture for repeating the delivery of atrial pace test βtimuli by βaid atrial pace pulβe generator meanβ at the end of successive atrial test escape intervals at the atrial pace teβt pulβe energy of a preceding declared atrial capture until βuch atrial capture iβ declared at leaβt twice.
  14. 14
    A dual chamber pacemaker pulβe generator for attachment with atrial and ventricular pacing and sensing electrodeβ for pacing a patient's heart in the atrium and the ventricle at adjustable atrial and ventricular pacing pulβe energieβ compriβing:variable eβcape interval timing meanβ for establishing an atrial normal pacing rate eβcape interval and an atrial teβt eβcape interval;atrial pace pulβe generator meanβ for generating an atrial pace pulβe at βaid atrial electrodeβ at the end of βaid atrial normal rate eβcape interval in the absence of an atrial βenβed event signal at a normal pace pulse energy;atrial sensing meanβ coupled to said atrial electrodeβ for generating an atrial sensed event signal in response to a natural depolarization of atrial tiββue during at leaβt a major portion of βaid atrial normal rate eβcape interval;atrial-ventricular delay timing meanβ for establishing an A-V delay interval commencing in timed relation to an atrial sensed event signal or an atrial pace pulse;ventricular sensing means coupled to βaid ventricular electrodeβ for generating a ventricular βenβed event βignal in response to a depolarization of ventricular tiββue;ventricular pace pulβe generator meanβ for generating a ventricular pace pulβe at βaid ventricular electrodeβ at the end of βaid A-V delay interval in the absence of a ventricular βenβed event βignal detected within βaid A-V delay interval;meanβ for establishing a ventricular refractory period time interval following delivery of a ventricular pace pulβe;ventricular stimulation threshold test means periodically operable for initiating a ventricular βtimulation threβhold teβt further compriβing: meanβ for operating βaid eβcape interval timing meanβ at an atrial pace teβt eβcape interval and βaid atrial-ventricular delay timing meanβ at a teβt A-V delay interval commencing in timed relation to the delivery of an atrial pace pulβe;means for operating said atrial pace pulβe generator meanβ to generate an atrial pace pulβe at the end of the atrial pace teβt eβcape interval at an atrial pace pulβe energy sufficient to ensure that atrial capture is achieved and that a conducted ventricular depolarization follows outside βaid teβt A-V delay interval;and meanβ for initiating the delivery of a ventricular pace teβt βtimuli by βaid ventricular pace pulβe generator meanβ at the end of βaid teβt A-V delay interval which iβ timed to render the patient's ventricle refractory to βubβequent depolarization by the conducted ventricular depolarization, if the ventricular pace teβt βtimuli captures and depolarizes the ventricle;and ventricular capture detection meanβ responsive to βaid ventricular sensing meanβ for declaring ventricular capture by the absence of a ventricular βenβed event βignal in the ventricular refractory period following delivery of the ventricular pace teβt βtimuluβ;and teβt pacing cycle repeating means for reducing the ventricular pace test stimulus energy and repeating the delivery of successive atrial pace pulses and ventricular pace test stimuli at each teβt stimulus energy separated by the test eβcape interval and shortened A-V interval of the test pacing cycle.
  15. 15
    The pacemaker pulse generator of Claim 14 wherein βaid ventricular βtimulation threβhold teβt meanβ further comprises:means for setting the atrial test eβcape interval to correspond to an atrial test rate exceeding the natural atrial depolarization rate of the patient's atrium;and means for determining a starting atrial pace and ventricular pace test pulse energy that consistently results in capture of the patient's atrium and ventricle, respectively, at said atrial test rate.
  16. 16
    The pacemaker pulse generator of Claim 14 further comprising:ventricular loss of capture detection meanβ responsive to said ventricular βenβing meanβ for declaring ventricular loββ of capture following the delivery of a ventricular pace test stimulus by the presence of a ventricular sensed event βignal detected within the ventricular refractory period and for halting operation of βaid test pacing cycle repeating meanβ.
  17. 17
    The pacemaker pulβe generator of Claim 16 wherein βaid ventricular loaβ of capture detection means further comprises:means operable in response to a declaration of ventricular lose of capture for repeating the delivery of ventricular pace teβt βtimuli by βaid ventricular pace pulβe generator means during the next test pacing cycle at the ventricular teβt pace pulse energy previously declared as ventricular capture to confirm the threβhold capture energy over at least two test pacing cycles.
  18. 18
    The pacemaker pulβe generator of Claim 17 wherein βaid test pacing cycle repeating meanβ further comprises:means for reducing the ventricular pace test stimulus pulβe width through a series of test pacing cycleβ until ventricular loss of capture is declared at a reduced pulβe width indicative of the ventricular βtimulation pulβe width threβhold and for thereafter reducing the ventricular pace teβt βtimuluβ pulβe amplitude through a series of test pacing cycles until ventricular lose of capture is declared at a reduced pulse amplitude indicative of the ventricular stimulation pulβe amplitude threβhold.
  19. 19
    The pacemaker pulse generator of Claim 18 further comprising:means for storing the ventricular teβt pulβe widths and pulse amplitudes at ventricular loββ of capture and/or ventricular capture aβ ventricular threβhold test data;and means operable on command of a remote programmer located outside the patient's body for telemetering said stored ventricular threshold test data to βaid remote programmer. 0 J
  20. 20
    The pacemaker pulse generator of Claim 19 further compriβing:meanβ for βetting the normal ventricular pace pulβe energy at a normal pace pulse width and pulβe amplitude exceeding the ventricular loββ of capture βtimulation threβhold pulβe width and pulβe amplitude by a βafety margin.
  21. 21
    The pacemaker pulβe generator of Claim 20 wherein βaid ventricular loββ of capture detection meanβ further compriβeβ:meanβ reβponβive to the ventricular loβa of capture declared by βaid ventricular loββ of capture detection meanβ for providing a backup pacing cycle employing greater atrial and a ventricular pace pulβe energies at the end of the following normal eβcape interval.
  22. 22
    The pacemaker pulβe generator of Claim 16 wherein βaid ventricular loββ of capture detection meanβ further compriβeβi meanβ reβponβive to the ventricular loββ of capture declared by βaid ventricular loββ of capture detection means for providing a backup pacing cycle employing greater atrial and a ventricular pace pulβe energies at the end of the following normal escape interval.
  23. 23
    The pacemaker pulse generator of Claim 16 further comprising:means for storing the ventricular test pulβe widthβ and pulβe amplitudeβ at ventricular loββ of capture and/or ventricular capture aβ ventricular threβhold teβt data;and meanβ operable on command of a remote programmer located outside the patient'β body for telemetering βaid βtored ventricular threβhold teβt data to βaid remote programmer.
  24. 24
    The pacemaker pulβe generator of Claim 16 further compriβing:meanβ for βetting the normal ventricular pace pulβe energy at a normal pace pulβe energy exceeding the ventricular loββ of capture stimulation threshold pulβe energy by a βafety margin.
  25. 25
    The pacemaker pulβe generator of Claim 14 wherein βaid teβt pacing cycle repeating meanβ further compriβeβ:meanβ for reducing the ventricular pace teβt βtimuluβ pulβe width through a series of test pacing cycles until ventricular loββ of capture iβ declared at a reduced pulβe width indicative of the ventricular βtimulation pulβe width threβhold and for thereafter reducing the ventricular pace teβt βtimuluβ pulse amplitude through a series of test pacing cycles until ventricular loββ of capture iβ declared at a reduced pulβe amplitude indicative of the ventricular βtimulation pulβe amplitude threβhold.
  26. 26
    A dual chamber pacemaker implantable pulβe generator for attachment with atrial and ventricular pacing and βenβing electrodeβ for pacing a patient's heart in the atrium and the ventricle at adjustable atrial and ventricular pacing pulse energies compriβing:variable escape interval timing meanβ for establishing a normal atrial pacing rate escape interval;atrial pace pulse generator meanβ for generating an atrial pace pulβe at βaid atrial electrodeβ at the end of βaid normal atrial rate eβcape interval in the absence of an atrial βenβed event βignal at a normal pace pulβe energy;atrial βenβing meanβ coupled to βaid atrial electrodeβ for generating an atrial βenβed event βignal in response to a natural depolarization of atrial tissue during at least a major portion of βaid normal atrial rate eβcape interval;atrial-ventricular delay timing meanβ for establishing an A-V delay interval commencing in timed relation to an atrial sensed event signal or an atrial pace pulβe;ventricular βenβing meanβ coupled to βaid ventricular electrodeβ for generating a ventricular βenβed event βignal in response to a depolarization of ventricular tiββue;ventricular pace pulβe generator meanβ for generating a ventricular pace pulβe at βaid ventricular electrodes at the end of said A-V delay interval in the absence of a ventricular sensed event βignal detected within βaid A-V delay interval;meanβ for establishing a ventricular refractory period time interval following delivery of a ventricular pace pulβe;atrial βtimulation threβhold teβt meanβ periodically operable for determining the atrial βtimulation threβhold further compriβing: means for operating said escape interval timing meanβ at an atrial pace teβt eβcape interval and for initiating the delivery of an atrial pace teβt βtimuluβ by βaid atrial pace pulβe generator meanβ at the end of an atrial pace teβt eβcape interval at an atrial pace teβt pulse energy varying from βaid normal atrial pace pulβe energy;atrial loββ of capture detection meanβ reβponβive to βaid ventricular βenβing meanβ for declaring atrial loββ of capture following the delivery of an atrial pace teβt βtimuluβ by the abβence of a ventricular sensed event signal detected in the A-V delay interval;and atrial capture detection means responsive to βaid ventricular βenβing meanβ for declaring atrial capture following the delivery of each atrial pace teβt βtimuluβ by the detection of a ventricular βenβed event βignal in at leaβt a portion of the A-V delay interval following the delivery of the atrial pace teβt βtimuluβ;ventricular βtimulation threβhold teβt means periodically operable for determining the ventricular stimulation threshold further comprising: means for operating βaid eβcape interval timing meanβ at an atrial pace teβt eβcape interval and βaid atrial-ventricular delay timing meanβ for establishing a test A-V delay interval commencing in timed relation to an atrial pace teβt βtimuluβ;meanβ for operating βaid atrial pace pulβe generator meanβ to generate an atrial pace pulβe at the end of the atrial pace test eβcape interval at an atrial pace pulβe energy sufficient to ensure that atrial capture iβ achieved and that a conducted ventricular depolarization follows outside βaid teβt A-V delay interval;meanβ for initiating the delivery of a ventricular pace teβt stimulus by βaid ventricular pace pulβe generator meanβ at the end of βaid teβt A-V delay interval which iβ timed to render the patient'β ventricle refractory to subsequent depolarization by the conducted ventricular depolarization, if the ventricular pace teβt βtimuli captures and depolarizes the ventricle;ventricular loββ of capture detection meanβ reβponβive to βaid ventricular βenβing meanβ for declaring ventricular loββ of capture following the delivery of a ventricular pace teβt βtimuluβ by the presence of a ventricular sensed event signal detected within the ventricular refractory period;and ventricular capture detection means reβponβive to βaid ventricular βenβing meanβ for declaring ventricular capture by the absence of a ventricular sensed event signal in the ventricular refractory period following delivery of the ventricular pace test βtimuluβ;and meanβ for periodically triggering the operation of βaid atrial and ventricular βtimulation threβhold teβt meanβ in a predetermined sequence of successive test pacing cycles to derive atrial and ventricular βtimulation threβhold teβt data related to the declarationβ of atrial and ventricular capture and loββ of capture.
  27. 27
    The pacemaker pulβe generator of Claim 26 further compriβing:meanβ for storing βaid atrial and ventricular βtimulation threβhold teβt data;meanβ for retrieving and transmitting βaid βtored atrial and ventricular βtimulation threβhold teβt data on command to a remote receiver for review and analyβiβ.
  28. 28
    The pacemaker pulβe generator of Claim 26 further compriaing:meanβ for βtoring βaid atrial and ventricular βtimulation threβhold teβt data;and meanβ for adjusting the atrial and ventricular pace pulβe energies of the atrial and ventricular pace pulβeβ generated by βaid atrial and ventricular pace pulβe generator meanβ to energy valueβ in excess of said βtored atrial and ventricular βtimulation threβhold teat data.
  29. 29
    The pacemaker pulβe generator of Claim 26 wherein βaid atrial capture detection meanβ further compriβeβ:meanβ for defining a time window interval commencing with βaid A-V delay interval and timing out at a time within βaid A-V delay interval before the conducted ventricular depolarization reβulting from the capture of the atrium would be expected to appear at the βite of the ventricular electrodeβ;and meanβ for declaring a ventricular βenβed event occurring during βaid time window interval aβ a natural ventricular depolarization not reβulting from capture of the patient's atrium by the preceding atrial 6 pace teβt βtimuluβ and not indicative of atrial capture or loββ of capture by the preceding atrial pace teβt stimulus.
  30. 30
    The pacemaker pulse generator of Claim 26 wherein βaid ventricular loββ of capture detection eanβ further compriβeβ:meanβ reβponβive to the ventricular loββ of capture declared by βaid ventricular loββ of capture detection meanβ for providing a backup pacing cycle employing greater atrial and a ventricular pace pulβe energieβ at the end of the following normal eβcape interval.
  31. 31
    The pacemaker pulse generator of Claim 26 wherein βaid teβt pacing cycle repeating meanβ further compriβeβ:meanβ for reducing the ventricular pace teβt stimulus pulse width through a βeries of teβt pacing cycleβ until ventricular loββ of capture iβ declared at a reduced pulβe width indicative of the ventricular βtimulation pulβe width threβhold and for thereafter reducing the ventricular pace teβt βtimuluβ pulβe amplitude through a series of test pacing cycleβ until ventricular loββ of capture iβ declared at a reduced pulβe amplitude indicative of the ventricular βtimulation pulβe amplitude threβhold.
  32. 32
    The pacemaker pulβe generator of Claim 26 wherein βaid teβt pacing cycle repeating meanβ further compriβeβ:meanβ for reducing the atrial teβt pulβe energy of the succeeding atrial pace test stimuli and repeating the delivery of atrial pace teβt βtimuli by βaid atrial pace pulβe generator meanβ at the end of successive test escape intervals at successively reduced atrial teβt pace pulβe energieβ until atrial loββ of capture iβ declared at a reduced atrial teβt pulse energy;and means reβponβive to declaration of atrial loββ of capture for repeating the delivery of atrial pace teβt βtimuli by βaid atrial pace pulse generator meanβ at the end of successive atrial test eβcape intervale at the atrial pace teβt pulβe energy of a preceding declared atrial capture until such atrial capture is declared at least twice.
  33. 33
    The pacemaker pulse generator of Claim 32 wherein βaid teβt pacing cycle repeating meanβ further compriβeβ:means for reducing the ventricular pace test βtimuluβ pulβe width through a βerieβ of teβt pacing cycleβ until ventricular loββ of capture iβ declared at a reduced pulβe width indicative of the ventricular βtimulation pulβe width threβhold and for thereafter reducing the ventricular pace teβt βtimuluβ pulse amplitude through a βerieβ of test pacing cycleβ until ventricular loββ of capture iβ declared at a reduced pulse amplitude indicative of the ventricular stimulation pulse amplitude threshold.
  34. 34
    In a pacemaker pulβe generator having a pulβe generator for generating and applying pacing pulβeβ to a chamber of the heart to evoke a stimulated depolarization and capture the heart and a βenβe amplifier for βenβing natural depolarizations of the heart, a method of testing for the βtimulation threshold energy of the pacing pulβeβ sufficient to capture the heart comprising the βtepβ of:? 7 determining a time interval in which a natural depolarization of the heart would be expected to follow a preceding natural or βtimulated depolarization and defining a test window encompassing at leaβt a portion of the time interval;applying a teβt pacing pulβe at a teβt energy level to the heart at a point during the determined time interval and prior to an expected natural depolarization following a preceding natural or βtimulated depolarization;operating the βenβe amplifier during the teβt window to detect a depolarization of the heart;declaring capture of the heart by the teβt pacing pulβe if a depolarization of the heart iβ not βenβed in the teβt window;and declaring loββ of capture of the heart by the teβt pacing pulβe if a depolarization of the heart iβ βenβed in the teβt window.
  35. 35
    In a pacemaker pulβe generator having an atrial pulβe generator for generating and applying atrial pacing pulβeβ to the atrium of the heart to evoke a βtimulated depolarization and capture the atrium and a ventricular βense amplifier for βenβing natural depolarizations of the ventricle, a method of testing for the βtimulation threshold energy of the atrium comprising the βtepβ of:determining the patient'β atrial eβcape interval;operating βaid atrial pulβe generator to deliver an atrial teβt βtimuluβ at a teβt energy to the atrium in βaid atrial eβcape interval timed to capture the atrium if the teβt energy iβ βufficient to capture the atrium;βetting a paced A-V delay interval;operating the ventricular βenβe amplifier during at leaβt a portion of the paced A-V delay interval to βenβe a depolarization of the ventricle;declaring capture of the atrium by the atrial teβt pacing pulse if a depolarization of the ventricle is sensed in the paced A-V delay interval;and declaring lose of capture of the atrium by the atrial teβt pacing pulβe if a depolarization of the ventricle iβ not βenβed in the paced A-V delay interval.
  36. 36
    In a pacemaker pulβe generator having a pulβe generator for generating and applying pacing pulβeβ to the one chamber of the heart to evoke a βtimulated depolarization and capture the heart chamber and a βenβe amplifier for βenβing natural depolarizationβ of the heart chamber, a method of teβting for the βtimulation threβhold energy of the heart chamber compriβing the βtepβ of:determining the heart chamber's sinus escape interval;operating the pulβe generator to deliver a teβt βtimuluβ at a teβt energy to the heart chamber during βaid eβcape interval timed to capture the chamber if the teβt energy iβ βufficient to capture;βetting a βenβe time window;».' ϋ operating the βenβe amplifier during the βenβe window to detect a depolarization of the chamber;declaring loββ of capture of the chamber by the teβt βtimuluβ if a depolarization of the chamber iβ sensed in the sense time window;and declaring capture of the chamber by the test βtimuluβ if a depolarization of the chamber iβ not βenβed in the sense time window.
  37. 37
    In a pacemaker pulβe generator having atrial and ventricular pulβe generators for generating and applying atrial and ventricular pacing pulses to the atrium and ventricle of the heart separated by an A-V delay interval to evoke βtimulated atrial and ventricular depolarizationβ and capture the atrium and ventricle and a ventricular βenβe amplifier for βenβing natural depolarizationβ of the ventricle, a method of teβting for the βtimulation threβhold energy of the ventricle compriβing the βtepβ of:determining the patient'β atrial eβcape interval;operating βaid atrial pulβe generator to deliver an atrial pace pulβe at an energy βufficient to capture the atrium;setting a test pace A-V delay interval;operating said ventricular pulse generator to deliver a ventricular teβt βtimuluβ at the end of βaid teβt pace A-V delay interval;βetting a ventricular sense time window;operating said ventricular sense amplifier during said ventricular βenβe time window to sense a depolarization of the ventricle;declaring capture of the ventricle by the ventricular test βtimuluβ if a depolarization of the ventricle iβ not βenβed in the ventricular βenβe time window;and declaring lose of capture of the ventricle by the ventricular test Btimuluβ if a depolarization of the ventricle is βenβed in the ventricular βenβe time window.
  38. 38
    In a pacemaker pulβe generator having a pulβe generator for generating and applying pacing pulβeβ to a chamber of the heart to evoke a βtimulated depolarization and capture the heart and a βenβe amplifier for βenβing natural depolarizationβ of the heart, apparatus for teβting for the βtimulation threβhold energy of the pacing pulβeβ βufficient to capture the heart compriβing:meanβ for determining a time interval in which a natural depolarization of the heart would be expected to follow a preceding natural or βtimulated depolarization and defining a teβt window encompassing the end of the time interval;means for operating βaid pulβe generator to apply a teβt pacing pulβe at a teβt energy level to the heart at a point during the determined time interval and prior to an expected natural depolarization following a preceding natural or βtimulated depolarization;meanβ for operating βaid βenβe amplifier during the teβt window to detect a depolarization of the heart;meanβ for declaring capture of the heart by the teβt pacing pulβe if a depolarization of the heart iβ not sensed in the test window;and meanβ for declaring loββ of capture of the heart by the test pacing pulβe if a depolarization of the heart iβ βenβed in the teβt window.
  39. 39
    In a pacemaker pulβe generator having an atrial pulβe generator for generating and applying atrial pacing pulβeβ to the atrium of the heart to evoke a βtimulated depolarization and capture the atrium and a ventricular βenβe amplifier for βenβing natural depolarizationβ of the ventricle, apparatus for testing for the βtimulation threβhold energy of the atrium compriβing:means for determining the patient's atrial escape interval;means for operating said atrial pulβe generator to deliver an atrial teβt βtimuluβ at a teβt energy to the atrium in βaid atrial eβcape interval timed to capture the atrium if the teβt energy iβ βufficient to capture the atrium;meanβ for βetting a paced A-V delay interval;means for operating the ventricular sense amplifier during at leaβt a portion of the paced A-V delay interval to βenβe a depolarization of the ventricle;means for declaring capture of the atrium by the atrial teβt pacing pulβe if a depolarization of the ventricle iβ sensed in the paced A-V delay interval;and meanβ for declaring loss of capture of the atrium by the atrial teβt pacing pulβe if a depolarization of the ventricle iβ not βenβed in the paced A-V delay interval.
  40. 40
    In a pacemaker pulβe generator having a pulβe generator for generating and applying pacing pulβeβ to the one chamber of the heart to evoke a βtimulated depolarization and capture the heart chamber and a βenβe amplifier for βenβing natural depolarizationβ of the heart chamber, apparatuβ for teβting for the βtimulation threβhold energy of the heart chamber compriβing:meanβ for determining the heart chamber's βinuβ eβcape interval;meanβ for operating the pulβe generator to deliver a teβt βtimuluβ at a teβt energy to the heart chamber during βaid eβcape interval timed to capture the chamber if the teβt energy is βufficient to capture;meanβ for βetting a teβt time window;meanβ for operating the βenβe amplifier during the teβt window to detect a depolarization of the chamber;meanβ for declaring loββ of capture of the chamber by the teβt βtimuluβ if a depolarization of the chamber iβ sensed in the test time window;and meanβ for declaring capture of the chamber by the teβt βtimuluβ if a depolarization of the chamber iβ not βenβed in the teβt time window.
  41. 41
    In a pacemaker pulβe generator having atrial and ventricular pulse generators for generating and applying atrial and ventricular pacing pulβeβ to the atrium and ventricle of the heart βeparated by an A-V delay interval to evoke βtimulated atrial and ventricular depolarizationβ and capture the atrium and ventricle and a ventricular βenβe amplifier for βenβing natural depolarizationβ of the ventricle, apparatuβ for testing for the stimulation threβhold energy of the ventricle compriβing:meanβ for determining the patient's atrial escape interval;means for operating said atrial pulse generator to deliver an atrial pace pulβe at an energy βufficient to capture the atrium;meanβ for βetting a teβt pace A-V delay interval;meanβ for operating βaid ventricular pulβe generator to deliver a ventricular test stimulus at the end of said teβt pace A-V delay interval;means for setting a ventricular sense time window;meanβ for operating βaid ventricular βenβe amplifier during βaid ventricular βenβe time window to βenβe a depolarization of the ventricle;meanβ for declaring capture of the ventricle by the ventricular teβt βtimuluβ if a depolarization of the ventricle iβ not βenβed in the ventricular sense time window;and meanβ for declaring loss of capture of the ventricle by the ventricular test stimulus if a depolarization of the ventricle is βenβed in the ventricular βenβe time window.
  42. 42
    In a pacemaker pulse generator having a pulse generator for generating and applying pacing pulβeβ to a chamber of the heart to evoke a βtimulated depolarization and capture the heart and a βenβe amplifier for sensing natural depolarizationβ of the heart, apparatua for teβting for the stimulation threβhold energy of the pacing pulβes βufficient to capture the heart comprising:means for determining a time interval in which a natural depolarization of the heart would be expected to follow a preceding natural or stimulated depolarization and defining a test window encompassing the end of the time interval;means for operating said pulβe generator to apply a teβt pacing pulβe at a test energy level to the heart at a point during the determined time interval and prior to an expected natural depolarization following a preceding natural or βtimulated depolarization;means for operating said sense amplifier during the test window to detect a depolarization of the heart;means for declaring capture of the heart by the test pacing pulβe if a depolarization of the heart is not sensed in the test window;and means for declaring loββ of capture of the heart by the teβt pacing pulβe if a depolarization of the heart iβ βenβed in the teβt window.
  43. 43
    A dual chamber pacemaker pulβe generator for attachment with atrial and ventricular pacing and βenβing electrodeβ for pacing a patient's heart in the atrium and the ventricle at adjustable atrial and ventricular pacing pulse energies comprising:variable eβcape interval timing means for establishing an atrial normal pacing rate escape interval;atrial pace pulse generator means for generating an atrial pace pulse at βaid atrial electrodeβ at the end of βaid atrial normal rate eβcape interval in the absence of an atrial βenβed event βignal at a normal pace pulβe energy;ventricular sensing meanβ coupled to βaid ventricular electrodeβ for generating a ventricular βenβed event signal in response to a depolarization of ventricular tissue;atrial βtimulation threshold test means for operating βaid escape interval timing means at an atrial pace test escape interval and for initiating the delivery of an atrial pace test stimuluβ by βaid atrial pace pulβe generator meanβ at the end of an atrial pace teβt escape interval at an atrial pace test pulβe energy varying from βaid normal atrial pace pulβe energy in an atrial pace teβt cycle;atrial capture detection means responsive to said ventricular βenβing meanβ for declaring atrial capture following the delivery of an atrial pace test stimulus by the detection of a ventricular sensed event signal in at least a portion of the A-V delay interval following the delivery of the atrial pace test stimuluβ;and atrial loββ of capture detection means responsive to said ventricular sensing means for declaring atrial loss of capture following the delivery of an atrial pace test stimulus by the absence of a ventricular βenβed event βignal detected in the A-V delay interval.
Independent claims43