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Wearables for Telemonitoring in ATTR-Amyloidosis: Current Perspectives.

Wearables for Telemonitoring in ATTR-Amyloidosis: Current Perspectives.

期刊: Sensors (Basel, Switzerland) 日期: 2026-05-11 PMID: 42197844 DOI: 10.3390/s26103035 浏览: 58
作者: Kind A, Pernice H, Barzen G, Gröschel J, Schumacher A, Werhahn S, Wetzel P, Edelmann F, Hindricks G, Hahn K
A, K., H, P., G, B., J, G., A, S., S, W., P, W., F, E., G, H., & K, H. (2026). Wearables for Telemonitoring in ATTR-Amyloidosis: Current Perspectives.. Sensors (Basel, Switzerland). https://doi.org/10.3390/s26103035
A K, H P, G B, J G, A S, S W, et al. Wearables for Telemonitoring in ATTR-Amyloidosis: Current Perspectives.. Sensors (Basel, Switzerland). 2026; doi: 10.3390/s26103035
A K, H P, G B, et al. Wearables for Telemonitoring in ATTR-Amyloidosis: Current Perspectives.[J]. Sensors (Basel, Switzerland). 2026. DOI: 10.3390/s26103035.
@article{a2026,
  author = {Kind A and Pernice H and Barzen G and Gröschel J and Schumacher A and Werhahn S and Wetzel P and Edelmann F and Hindricks G and Hahn K},
  title = {Wearables for Telemonitoring in ATTR-Amyloidosis: Current Perspectives.},
  journal = {Sensors (Basel, Switzerland)},
  year = {2026},
  doi = {10.3390/s26103035},
  note = {PMID: 42197844},
}
TY  - JOUR
AU  - Kind A
AU  - Pernice H
AU  - Barzen G
AU  - Gröschel J
AU  - Schumacher A
AU  - Werhahn S
AU  - Wetzel P
AU  - Edelmann F
AU  - Hindricks G
AU  - Hahn K
TI  - Wearables for Telemonitoring in ATTR-Amyloidosis: Current Perspectives.
T2  - Sensors (Basel, Switzerland)
PY  - 2026
DO  - 10.3390/s26103035
AN  - PMID:42197844
ER  - 

摘要

Wearable sensors enable continuous recording of electrocardiographic, photoplethysmographic, and inertial signals and have accelerated the development of digital biomarkers in cardiovascular medicine. Transthyretin amyloidosis (ATTR) is a progressive multisystem disease characterized by arrhythmia, conduction disturbances, hemodynamic impairment, autonomic dysfunction, and gait abnormalities, making it theoretically suitable for multimodal wearable monitoring. This review summarizes current knowledge on wearable applications in amyloidosis with ATTR serving as an illustrative case, evaluates the plausibility of extrapolating signal-based biomarkers from related cardiovascular and neurological cohorts, and outlines methodological and implementation challenges. ATTR-specific data remain limited to small observational studies, mainly on long-term rhythm monitoring and supervised functional assessment. More comprehensive findings support the extraction of metrics such as atrial fibrillation burden, activity patterns, gait variability, and heart rate variability. However, ATTR-related structural remodeling and high arrhythmia burden may distort conventional digital biomarkers, necessitating disease-specific preprocessing and prospective validation. Wearable monitoring in ATTR is technically feasible and biologically plausible but remains investigational. Before routine integration into care pathways can be recommended, standardized, phenotype-stratified studies are needed that link wearable-derived characteristics to assessed clinical outcomes.

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