State Key Laboratory of Robotics and System, Harbin Institute of Technology, Harbin, 150001, China.
Tianzhi Institute of Innovation and Technology, Weihai, 264209, China.
Sci Rep. 2023 Sep 26;13(1):16101. doi: 10.1038/s41598-023-36767-0.
Modeling and motion extraction of human upper limbs are essential for interpreting the natural behavior of upper limb. Owing to the high degrees of freedom (DOF) and highly dynamic nature, existing upper limb modeling methods have limited applications. This study proposes a generic modeling and motion extraction method, named Primitive-Based triangular body segment method (P-BTBS), which follows the physiology of upper limbs, allows high accuracy of motion angles, and describes upper-limb motions with high accuracy. For utilizing the upper-limb modular motion model, the motion angles and bones can be selected as per the research topics (The generic nature of the study targets). Additionally, P-BTBS is suitable in most scenarios for estimating spatial coordinates (The generic nature of equipment and technology). Experiments in continuous motions with seven DOFs and upper-limb motion description validated the excellent performance and robustness of P-BTBS in extracting motion information and describing upper-limb motions, respectively. P-BTBS provides a new perspective and mathematical tool for human understanding and exploration of upper-limb motions, which theoretically supports upper-limb research.
人体上肢的建模和运动提取对于解释上肢的自然行为至关重要。由于自由度(DOF)高且动态性质强,现有的上肢建模方法的应用受到限制。本研究提出了一种通用的建模和运动提取方法,名为基于基元的三角体段方法(P-BTBS),该方法遵循上肢的生理学原理,能够实现高精度的运动角度,并能高精度地描述上肢运动。为了利用上肢的模块化运动模型,可以根据研究主题选择运动角度和骨骼(研究目标的通用性)。此外,P-BTBS 适用于大多数场景下的空间坐标估计(设备和技术的通用性)。在具有七个自由度的连续运动和上肢运动描述的实验中,P-BTBS 在提取运动信息和描述上肢运动方面的出色性能和鲁棒性得到了验证。P-BTBS 为理解和探索上肢运动提供了新的视角和数学工具,从理论上支持上肢研究。