EP4626301A1 - System and method for identifying premature ventricular contraction events - Google Patents
System and method for identifying premature ventricular contraction eventsInfo
- Publication number
- EP4626301A1 EP4626301A1 EP23804671.8A EP23804671A EP4626301A1 EP 4626301 A1 EP4626301 A1 EP 4626301A1 EP 23804671 A EP23804671 A EP 23804671A EP 4626301 A1 EP4626301 A1 EP 4626301A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- ventricular contraction
- value
- event
- events
- medical device
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Pending
Links
Classifications
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B5/00—Measuring for diagnostic purposes; Identification of persons
- A61B5/24—Detecting, measuring or recording bioelectric or biomagnetic signals of the body or parts thereof
- A61B5/316—Modalities, i.e. specific diagnostic methods
- A61B5/318—Heart-related electrical modalities, e.g. electrocardiography [ECG]
- A61B5/346—Analysis of electrocardiograms
- A61B5/349—Detecting specific parameters of the electrocardiograph cycle
- A61B5/364—Detecting abnormal ECG interval, e.g. extrasystoles, ectopic heartbeats
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B5/00—Measuring for diagnostic purposes; Identification of persons
- A61B5/68—Arrangements of detecting, measuring or recording means, e.g. sensors, in relation to patient
- A61B5/6846—Arrangements of detecting, measuring or recording means, e.g. sensors, in relation to patient specially adapted to be brought in contact with an internal body part, i.e. invasive
- A61B5/6847—Arrangements of detecting, measuring or recording means, e.g. sensors, in relation to patient specially adapted to be brought in contact with an internal body part, i.e. invasive mounted on an invasive device
- A61B5/686—Permanently implanted devices, e.g. pacemakers, other stimulators, biochips
Definitions
- the instant invention generally relates to a system for identifying premature ventricular contraction events in a patient and to a method for operating such a system.
- a system of the type concerned herein comprises an implantable medical device for sensing electrocardiogram signals, the implantable medical device comprising an arrangement of electrode poles configured to sense electrocardiogram signals.
- a processing arrangement is configured for processing electrocardiogram signals obtained by the implantable medical device.
- An implantable medical device of this kind may for example be a pacemaker, an implantable cardioverter defibrillator, a sensor device such as a bio-sensor, or a monitoring device.
- the implantable medical device herein is configured to sense electrocardiogram signals.
- An implantable medical device as for example described in EP 3 278 836 Bl may for example comprise a housing and an arrangement of electrode poles arranged on the housing.
- the electrode poles herein are arranged on the housing of the implantable medical device such that the electrode poles are aligned along a longitudinal axis along which the implantable medical device extends.
- the electrode poles may for example be formed by housing segments which are made from an electrically conductive material such as a metal material and are exposed to the outside such that they may be brought into electrical contact with surrounding tissue in order to establish an electrical coupling to the tissue in an implanted state of the implantable medical device.
- An implantable medical device as e.g. used in a home monitoring system shall allow for a reliable monitoring of a physiological state of a patient.
- the implantable medical device it shall be possible to reliably detect an abnormal cardiac state based on recorded electrocardiogram signals. If an abnormality is detected in electrocardiogram signals, the implantable medical device shall be enabled to communicate with for example an external device of a home monitoring system, e.g. in order to trigger a message to a service center to alert medical personnel of a potential need for attention.
- the abnormal timing associated with a PVC is not always the same, and the compensatory pause is not always the same duration. So both could be variable.
- the premature ventricular contractions (PVC) could have variable degrees of prematurity so detecting all types of premature beats is important for PVC detection and according algorithm(s).
- One or multiple quantities may be computed, accordingly, as one or multiple discrimination metric values.
- the discrimination metric value may for example be computed according to the maximum positive amplitude, the maximum negative amplitude, a maximum rectified amplitude, or a peak-to-peak amplitude of a waveform relating to a currently assessed ventricular contraction event.
- a discrimination metric value may be computed according to a maximum value of a first derivative or a second derivative of the waveform relating to the currently assessed ventricular contraction event.
- the discrimination metric value may be computed according to an area value indicative of an area under a curve relating to the currently assessed ventricular contraction event, wherein the area value may relate to the area until the first zero-crossing, to an area between the first zero-crossing and a second zero-crossing, or to an area between the second zero-crossing and a third zero-crossing.
- the discrimination metric value may be computed to be indicative of a time duration, for example between the initial detection of the ventricular contraction event and a first zero-crossing, between the first zero-crossing and a second zero-crossing, or between the second zero-crossing and a third zero-crossing, or between an upward crossing of a ventricular detection threshold, based on which the ventricular detection event is initially identified, and a downward crossing of the ventricular detection threshold.
- one or multiple discrimination metric values may be computed, wherein any combination of discrimination metric values may be used to identify a premature ventricular contraction event.
- Each discrimination metric value herein is compared to at least one of an associated first reference value and an associated second reference value, the particular reference value being indicative of a normal value for the particular discrimination metric value in question.
- Each reference value may be computed by applying a statistical analysis of prior ventricular contraction events and/or subsequent ventricular contraction events.
- the first reference value may be computed based on a first statistical measure relating to the first number of prior ventricular contraction events.
- the second reference value may be computed based on a second statistical measure relating to the second number of subsequent ventricular contraction events.
- the first reference value hence is determined by statistical analysis of prior ventricular contraction events.
- the second reference value is determined by statistical analysis of subsequent ventricular contraction events.
- the particular reference value in particular may be computed according to any standard statistical quantity obtained by statistical analysis.
- the first reference value and/or the second reference value may be computed according to a mean value, a standard deviation value, a coefficient of variation, a Shannon entropy value, an exponential moving average value e.g. according to a function with varying beats/varying weights associated with the surrounding beats, a median value, a percentile value, e.g. a 5% to 95% percentile value, a skew value, a kurtosis value, and/or a root mean square value e.g. of successive differences.
- the reference value is determined by e.g. an averaging or by another statistical measure of the maximum amplitude values of prior ventricular contraction events and/or subsequent ventricular contraction events. If the discrimination metric value in question is an area value relating to the waveform of the current ventricular contraction event or a time duration value, the reference value is determined by a statistical measure relating to the associated area value or time duration value of prior ventricular contraction events and/or subsequent ventricular contraction events.
- the processing arrangement is configured to classify the ventricular contraction event which is currently assessed as a premature ventricular contraction event if the at least one discrimination metric value deviates from the first reference value by more than a first margin and/or deviates from the second reference value by more than a second margin.
- the processing arrangement compares one or multiple computed discrimination metric values to one or multiple reference values relating to prior ventricular contraction events and/or subsequent ventricular contraction events.
- the one or the multiple discrimination metric values differ from associated reference values, this is interpreted to indicate that the waveform of the currently assessed ventricular contraction event is abnormal in that it differs from a waveform of a regular ventricular contraction event, and accordingly the ventricular contraction event may be classified as a premature ventricular contraction event (wherein potentially further conditions may be taken into account).
- the processing arrangement is configured to determine the first margin based on a percentage value of the first reference value and/or to determine the second margin based on a percentage value of the second reference value.
- the first reference value and the second reference value are dynamically determined based on a number of prior ventricular contraction events and/or based on a number of subsequent ventricular contraction events.
- Based on the current value for the first reference value and/or the second reference value the first margin and/or the second margin are set.
- the percentage value herein may be fixed, e.g. in a range between 1% to 50% or the like. In another embodiment the percentage value may be dynamically adapted, for example based on the current value of the first reference value and/or the second reference value.
- the processing arrangement is configured to compute multiple discrimination metric values for the ventricular contraction event and to compare the multiple discrimination metric values to multiple first reference values computed based on the first number of prior ventricular contraction events and/or multiple second reference values computed based on the second number of subsequent ventricular contraction events.
- multiple discrimination metric values are determined for the currently assessed ventricular contraction event and are compared to associated first and/or the second reference values. Based on the comparison of the multiple discrimination metric values to the associated reference values, the currently assessed ventricular contraction event is classified as a premature ventricular contraction event (or not).
- the processing arrangement is configured to classify the ventricular contraction event as a premature ventricular contraction event if, based on the comparison, at least for a subset of the discrimination metric values a set of predefined conditions is fulfilled.
- the computed discrimination metric values are compared to the associated reference values. If at least for some discrimination metric values the comparison yields that the discrimination metric values for example differ from the associated reference values in each case by more than a certain margin, the currently assessed ventricular contraction event may be classified as a premature ventricular contraction event. For example, it may be generally required that for two out of three discrimination metric values the comparison yields that the discrimination metric values differ from the associated reference values by more than a certain margin, such that for two out of three discrimination metric values an associated condition is fulfilled.
- the processing arrangement is configured to classify the ventricular contraction event as a premature ventricular contraction event based on the comparison and in addition based on a first timing distance between the ventricular contraction event and an immediately prior ventricular contraction event and/or a second timing distance between the ventricular contraction event and an immediately subsequent ventricular contraction event.
- a premature ventricular contraction event the morphology of a waveform relating to the premature ventricular contraction event differs from the morphology of a regular ventricular contraction event. This is assessed by means of comparing discrimination metric values to associated reference values.
- the timing of the currently assessed ventricular contraction event may be evaluated in order to define an additional, necessary condition which must be fulfilled in order to classify the currently assessed ventricular contraction event as a premature ventricular contraction event.
- the system further comprises an external device configured to operate outside of the patient.
- the implantable medical device is configured to communicate with the external device outside of the patient, wherein the implantable medical device is configured to communicate information relating to identified ventricular contraction events, information relating to computed discrimination metric values, and/or information relating to classified premature ventricular contraction events to the external device.
- the information communicated to the external device may differ. If the implantable medical device carries out the entire processing for classifying ventricular contraction events as premature ventricular contraction events, the implantable medical device may communicate information relating to classified premature ventricular contraction events, for example a premature ventricular contraction burden (e.g. indicative of the number of premature ventricular contraction events per day) to the external device.
- a premature ventricular contraction burden e.g. indicative of the number of premature ventricular contraction events per day
- the implantable medical device may communicate information relating to the intermediate processing results to the external device. If the entire processing for classifying premature ventricular contraction events is carried out by processing equipment outside of the implantable medical device, the implantable medical device may for example communicate only information relating to recorded electrocardiogram signals to the external device, for example within the context of a home monitoring system.
- the implantable medical device may, in one embodiment, comprise multiple electrode poles, which for example are aligned along a longitudinal axis and hence are arranged at different axial positions on the implantable medical device.
- multiple electrode poles By means of the different electrode poles an electrical coupling to surrounding tissue is established when the implantable medical device is implanted in a patient, such that electrocardiogram signals may be sensed using the different electrode poles.
- a method for operating a system for identifying premature ventricular contraction events in a patient comprises: sensing, using an arrangement of electrode poles of an implantable medical device, electrocardiogram signals; and processing electrocardiogram signals obtained by the implantable medical device; wherein the processing includes: identifying a ventricular contraction event based on said electrocardiogram signals obtained by the implantable medical device, computing at least one discrimination metric value for said ventricular contraction event, comparing said at least one discrimination metric value to at least one of a first reference value computed based on a first number of prior ventricular contraction events and a second reference value computed based on a second number of subsequent ventricular contraction events, and classifying said ventricular contraction event as a premature ventricular contraction event based on said comparison.
- the implantable medical device may comprise a processing circuitry with may be configured to carry out at least some of the processing steps of the message. This however is not necessary.
- the implantable medical device is configured to sense electrocardiogram signals, but is not configured to process electrocardiogram signals by carrying out particular processing steps for classifying premature ventricular contraction events.
- some or all of the processing steps for classifying premature ventricular contraction events are carried out by a processing circuitry of the implantable medical device.
- the implantable medical device may, in one embodiment, be in communication connection with an external device, wherein the implantable medical device may communicate information relating to identify ventricular contraction events, information relating to computed discrimination metric values, and/or information relating to classify premature ventricular contraction events to the external device.
- Fig. 2 shows a schematic drawing of an embodiment of an implantable medical device comprising an arrangement of electrode poles
- Fig. 3 shows a schematic drawing of another embodiment of an implantable medical device
- Fig. 4 shows a waveform relating to a premature ventricular contraction event
- Fig. 5 shows a series of ventricular contraction events
- Fig. 6 shows a premature ventricular contraction event within a series of ventricular contraction events.
- a system comprises an implantable medical device 1 implanted (for example subcutaneously) into a patient for serving a therapeutic and/or diagnostic function.
- the implantable medical device 1 may for example be implanted subcutaneously into a patient P for monitoring cardiac activity of the patient’s heart H.
- the implantable medical device 1, for this, comprises an arrangement of electrode poles which are used to couple to surrounding tissue and to sense electrocardiogram signals originating from the heart H.
- the system furthermore comprises an external device 2 external to the patient P and being in communication connection with the implantable medical device 1.
- a first housing segment may receive and enclose the processing module 16, whereas a second housing segment receives and encloses the battery module 17.
- Another housing segment 11 longitudinally extends from the first and second housing segments and forms a header portion having reduced cross-sectional dimensions with respect to the other housing segments.
- a first electrode pole 12 is formed by the housing segment enclosing the battery module 17, a second electrode pole 13 is arranged at a far end of the housing segment
- the electrode poles 12, 13, 14 may be formed by portions of the housing 10 itself, the housing 10 being made for example from an electrically conductive material, in particular a metal material. By exposing portions of the housing 10 towards the outside, the electrode poles 12, 13, 14 are formed and may electrically contact with surrounding tissue in order to establish a coupling between the electrode poles 12, 13, 14 to the surrounding tissue.
- the first electrode pole 12 is formed at an end of a housing segment of the housing 10 encapsulating the battery module 17, whereas the electrode pole 14 is formed by an electrode element which is electrically insulated from other portions of the housing 10 by insulating segments 15.
- a multilayered pole element may be employed for forming the electrode pole 14, as it is described for example in EP 3 278 836 Bl.
- the electrode pole 13 again is formed at a far end of the housing segment 11 forming the header portion.
- electrocardiogram signals may be received and processed by the processing module 16. Based on the processing, a communication with an external device 2 may be established, for example to transmit alert messages to the external device 2 for example within the context of a home monitoring system for monitoring a physiological state of the patient P.
- the different electrode poles 12, 13, 14 herein define signal reception vectors A, B, C by means of which electrocardiogram signals may be received using pairs of associated electrode poles 12, 13, 14.
- a first signal reception vector A is formed between the first electrode pole 12 and the second electrode pole 13
- a second signal reception vector B is formed between the third electrode pole 14 and the first second electrode pole 13
- a third signal reception vector C is formed between the first electrode pole 12 and the third electrode pole 14.
- the associated signal reception vector A is longer than the other two signal reception vectors B, C.
- values for all or some of the discrimination metrics may be computed and may be assessed in order to identify whether an abnormal morphology potentially indicative of a premature ventricular contraction event is present.
- an associated first reference value may be computed based on the associated discrimination metric for the number n of prior ventricular contraction events E(i-n)...E(i-l).
- a second reference value may be computed based on the associated discrimination metric for the number m of subsequent ventricular contraction events E(i+1).. ,E(i+m).
- ventricular contraction event E(i) it for example is found that based on one or multiple discrimination metric values relating to one or multiple different discrimination metrics a substantial deviation of the morphology in comparison to prior ventricular events E(i-n)...E(i-l) and/or to subsequent ventricular events E(i+l)...E(i+m) is present, such that the ventricular contraction event E(i) is classified as a premature ventricular contraction event PVC.
- a premature ventricular contraction event PVC not only substantially differs in the morphology of the associated waveform, but also in the timing from a regular contraction event.
- a timing distance T1 of the ventricular contraction event E(i) is smaller than a first timing threshold, hence indicating that the ventricular contraction event E(i) occurs prematurely with respect to a prior ventricular contraction event E(i-l), as indicated in Fig. 6.
- a timing distance T2 of the ventricular contraction event E(i) is larger than a second timing threshold, hence indicating that after the ventricular contraction event E(i) a substantial pause occurs, longer than the length of a regular heartbeat, as visible in Fig. 6.
- the timing threshold for determining the short or premature interval may be determined in either a number of milliseconds or a percentage or the instantaneous or average cycle time. Furthermore, the threshold may be static as a programmable fixed number or could be a dynamic parameter that is adjusted based on the variation in the RR-intervals in the vicinity of the current QRS complex. The same principles may apply to the determination of the long interval threshold.
- the amplitude threshold may also be a static percentage (like 10%) or may be dynamically determined based on the amount of variation in previous or following signal amplitudes. In a second embodiment, similar principles are applied but a different discrimination metric is used. In this embodiment the critical quantity is the time-to-zero crossings.
- the solution proposed herein allows discrimination of premature ventricular contraction events from normal beats, indicative of cardiac dysfunction, electrical abnormalities, and worsening heart failure in a patient.
- the solution may be achievable e.g. using existing functionality in an implantable medical device such as a monitoring device, namely the use of timing criteria and simple signal characteristics like R-wave amplitude, morphology, or duration. Due to the simplicity, on-board hardware generally does not need to be changed and does not consume significant power in addition to normal operation.
- A, B, C Signal reception vector
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- Cardiology (AREA)
- Heart & Thoracic Surgery (AREA)
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- Biomedical Technology (AREA)
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Abstract
Description
Claims
Applications Claiming Priority (3)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US202263429627P | 2022-12-02 | 2022-12-02 | |
| EP23151915 | 2023-01-17 | ||
| PCT/EP2023/081310 WO2024115072A1 (en) | 2022-12-02 | 2023-11-09 | System and method for identifying premature ventricular contraction events |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| EP4626301A1 true EP4626301A1 (en) | 2025-10-08 |
Family
ID=88757528
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP23804671.8A Pending EP4626301A1 (en) | 2022-12-02 | 2023-11-09 | System and method for identifying premature ventricular contraction events |
Country Status (2)
| Country | Link |
|---|---|
| EP (1) | EP4626301A1 (en) |
| WO (1) | WO2024115072A1 (en) |
Family Cites Families (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US8457728B2 (en) * | 2011-04-28 | 2013-06-04 | Medtronic, Inc. | Automatic detection of premature ventricular complexes for heart rate turbulence measurements |
| US9968274B2 (en) * | 2016-04-29 | 2018-05-15 | Infobionic, Inc. | Systems and methods for processing ECG data |
| DE102016114155A1 (en) | 2016-08-01 | 2018-02-01 | Biotronik Se & Co. Kg | Electro-medical implant with an electrical feedthrough |
| JP2019534092A (en) * | 2016-11-04 | 2019-11-28 | アイセンティア インク | Computer-implemented method for handling ECG data |
| EP4039191A1 (en) * | 2021-02-04 | 2022-08-10 | Pacesetter, Inc. | System for identifying premature ventricular contractions |
-
2023
- 2023-11-09 WO PCT/EP2023/081310 patent/WO2024115072A1/en not_active Ceased
- 2023-11-09 EP EP23804671.8A patent/EP4626301A1/en active Pending
Also Published As
| Publication number | Publication date |
|---|---|
| WO2024115072A1 (en) | 2024-06-06 |
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