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EMG-verhokäyrä×Käänteinen dynamiikka×Lihassynnergia-analyysi×Pan-Tompkins QRS-detektio×
TieteenalaBiomekaniikkaBiomekaniikkaBiomekaniikkaBiomekaniikka
MenetelmäperheProcess / pipelineProcess / pipelineProcess / pipelineProcess / pipeline
Syntyvuosi1999199019991985
KehittäjäRoberto MerlettiDavid WinterMarc TreschJiapu Pan
TyyppiDigital signal processing pipelineComputational analysis pipelineDimensionality reduction and pattern extractionDigital signal processing pipeline
AlkuperäislähdePhinyomark, A., Quaine, F., Charbonnier, S., & Serviere, C. (2012). Robust EMG feature extraction in the whitespace. IEEE Transactions on Biomedical Engineering, 59(5), 1505-1517. link ↗Winter, D. A. (1990). Biomechanics and Motor Control of Human Movement. Wiley-Interscience. link ↗Tresch, M. C., Saltiel, P., Bizzi, E., & Bizzi, E. (1999). The construction of movement by the spinal cord. Nature Neuroscience, 2(2), 162-167. DOI ↗Pan, J., & Tompkins, W. J. (1985). A real-time QRS detection algorithm. IEEE Transactions on Biomedical Engineering, BME-32(3), 230-236. DOI ↗
RinnakkaisnimetEMG linear envelope, RMS envelope, Activation envelopeInverse problem, Biomechanical inverse dynamicsMotor synergy, Synergy extraction, Motor primitivesQRS detection, R-peak detection, Heartbeat detection
Liittyvät3333
TiivistelmäElectromyography (EMG) envelope analysis extracts the amplitude modulation of muscle electrical activity to quantify muscle activation over time. By filtering and demodulating the raw EMG signal, practitioners obtain a smoothed activation profile that reflects when and how intensely a muscle is contracting during movement or fatigue.Inverse dynamics is a biomechanical analysis technique that estimates the forces and moments acting on joints during movement by working backward from observed motion and ground reaction forces. Introduced by David Winter in the early 1990s, it is fundamental to understanding how muscles and joints generate and control human motion.Muscle synergy analysis decomposes complex motor behavior into a small set of coactivated muscle groups (synergies or motor primitives). Pioneered by Marc Tresch and colleagues studying frog motor control, this approach reveals how the nervous system simplifies the control of many muscles by organizing them into task-relevant combinations.The Pan-Tompkins algorithm is a real-time QRS detection method for electrocardiograms (ECGs) that identifies the R-peaks (ventricular depolarization) and QRS complexes from continuous cardiac waveforms. Published by Jiapu Pan and Willis Tompkins in 1985, it remains a standard reference for ECG processing and is widely implemented in clinical monitoring systems.
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ScholarGateVertaile menetelmiä: EMG Envelope · Inverse Dynamics · Muscle Synergy Analysis · Pan-Tompkins QRS Detection. Haettu 2026-06-20 osoitteesta https://scholargate.app/fi/compare