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First Insights into Sensor-Based Ballistocardiographic Measurements in Patients with Heart Failure.

First Insights into Sensor-Based Ballistocardiographic Measurements in Patients with Heart Failure.

期刊: Studies in health technology and informatics 日期: 2026-06-29 PMID: 42394073 DOI: 10.3233/SHTI260911 浏览: 38
作者: Pickert MC, Bavendiek U, Soltani S, Rathje F, Marschollek M, Wolf KH
MC, P., U, B., S, S., F, R., M, M., & KH, W. (2026). First Insights into Sensor-Based Ballistocardiographic Measurements in Patients with Heart Failure.. Studies in health technology and informatics. https://doi.org/10.3233/SHTI260911
MC P, U B, S S, F R, M M, KH W. First Insights into Sensor-Based Ballistocardiographic Measurements in Patients with Heart Failure.. Studies in health technology and informatics. 2026; doi: 10.3233/SHTI260911
MC P, U B, S S, et al. First Insights into Sensor-Based Ballistocardiographic Measurements in Patients with Heart Failure.[J]. Studies in health technology and informatics. 2026. DOI: 10.3233/SHTI260911.
@article{mc2026,
  author = {Pickert MC and Bavendiek U and Soltani S and Rathje F and Marschollek M and Wolf KH},
  title = {First Insights into Sensor-Based Ballistocardiographic Measurements in Patients with Heart Failure.},
  journal = {Studies in health technology and informatics},
  year = {2026},
  doi = {10.3233/SHTI260911},
  note = {PMID: 42394073},
}
TY  - JOUR
AU  - Pickert MC
AU  - Bavendiek U
AU  - Soltani S
AU  - Rathje F
AU  - Marschollek M
AU  - Wolf KH
TI  - First Insights into Sensor-Based Ballistocardiographic Measurements in Patients with Heart Failure.
T2  - Studies in health technology and informatics
PY  - 2026
DO  - 10.3233/SHTI260911
AN  - PMID:42394073
ER  - 

摘要

Heart failure significantly impacts morbidity, mortality, physical functionality, and quality of life, presenting a high financial burden to healthcare systems. Early detection through non-invasive methods like ballistocardiography (BCG) and seismocardiography (SCG) can help monitor disease progression. Within our research, we developed an accelerometer-based sensor system for recording BCG and SCG signals and conducted a feasibility study with ten chronic heart failure patients. For each patient, seven triaxial accelerometers and a reference ECG recorded data during rest, a six-minute walk test, and recovery phases. Signal preprocessing involved calibration and band-pass filtering to obtain interpretable data. The resulting signals show recognizable SCG and BCG patterns. Future work will test the applicability of existing heart failure assessment algorithms to these new signals and investigate differences according to sensor position, physical exertion and NYHA classification.

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