Towards Scalable and Real-time Markerless Motion Capture
Ημερομηνία
2022Γλώσσα
en
Λέξη-κλειδί
Επιτομή
Human motion capture and perception without the need for complex systems with specialized cameras or wearable equipment is the holy grail for many human-centric applications. Here, we present a scalable markerless motion capture method that estimates 3D human poses in real-time using low-cost hardware. We do so by replacing the inefficient 3D joint reconstruction techniques, such as learnable triangulation and feature splatting, with a novel uncertainty-driven approach that exploits the available depth information and the edge sensors' spatial alignment to fuse the per viewpoint estimates into final 3D joint positions. © 2022 IEEE.
Collections
Related items
Showing items related by title, author, creator and subject.
-
Test–re-test reliability and concurrent validity of cervical active range of motion in young asymptomatic adults using a new inertial measurement unit device
Chalimourdas A., Dimitriadis Z., Kapreli E., Strimpakos N. (2021)Objectives: Cervical range of motion (CROM) is one of the first things evaluated in cervical disorders. DyCare-Lynx is an inertial measurement unit device that was recently designed to measure CROM. Therefore, the objectives ... -
Kinematic predictors of subjective outcome after anterior cruciate ligament reconstruction: An in vivo motion analysis study
Zampeli, F.; Pappas, E.; Giotis, D.; Hantes, M. E.; Georgoulis, A. D. (2012)Purpose: The purpose of this study was to test whether rotational knee kinematics during dynamic pivoting activities are predictive of subjective functional outcome (IKDC, Lysholm), objective laxity scores (KT max), and ... -
A Low-cost & Realtime Motion Capture System
Chatzitofis A., Albanis G., Zioulis N., Thermos S. (2022)Traditional marker-based motion capture requires excessive and specialized equipment, hindering accessibility and wider adoption. In this work, we demonstrate such a system but rely on a very sparse set of low-cost ...

