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Märgiteta liikumisjäädvustus×Pöörd- ehk inversdünaamika×
ValdkondBiomehaanikaBiomehaanika
PerekondProcess / pipelineProcess / pipeline
Tekkeaasta20171990
LoojaZhe CaoDavid Winter
TüüpDeep learning pipelineComputational analysis pipeline
AlgallikasCao, Z., Simon, T., Wei, S. E., & Sheikh, Y. (2017). Realtime multi-person 2D pose estimation using part affinity fields. IEEE Conference on Computer Vision and Pattern Recognition (CVPR). DOI ↗Winter, D. A. (1990). Biomechanics and Motor Control of Human Movement. Wiley-Interscience. link ↗
RööpnimetusedMarker-free tracking, Vision-based motion capture, Deep learning pose estimationInverse problem, Biomechanical inverse dynamics
Seotud33
KokkuvõteMarkerless motion capture infers the 3D positions and joint angles of a moving subject from video sequences using computer vision and machine learning. Pioneered by deep learning approaches such as OpenPose and MediaPipe, it eliminates the need for reflective markers or inertial sensors, making motion capture accessible and practical for real-world applications.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.
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ScholarGateVõrdle meetodeid: Markerless Motion Capture · Inverse Dynamics. Loetud 2026-06-18 aadressilt https://scholargate.app/et/compare