Department for Health, University of Bath, Bath BA2 7AY, UK.
School of Allied Health Sciences, Griffith University, 4222 Gold Coast, Australia.
Sensors (Basel). 2020 Oct 10;20(20):5749. doi: 10.3390/s20205749.
Wearable sensors and motion capture technology are accepted instruments to measure spatiotemporal variables during punching performance and to study the externally observable effects of fatigue. This study aimed to develop a computational framework enabling three-dimensional inverse dynamics analysis through the tracking of punching kinematics obtained from inertial measurement units and uniplanar videography. The framework was applied to six elite male boxers performing a boxing-specific punch fatigue protocol. OpenPose was used to label left side upper-limb landmarks from which sagittal plane kinematics were computed. Custom-made inertial measurement units were embedded into the boxing gloves, and three-dimensional punch accelerations were analyzed using statistical parametric mapping to evaluate the effects of both fatigue and laterality. Tracking simulations of a sub-set of left-handed punches were formulated as optimal control problems and converted to nonlinear programming problems for solution with a trapezoid collocation method. The laterality analysis revealed the dominant side fatigued more than the non-dominant, while tracking simulations revealed shoulder abduction and elevation moments increased across the fatigue protocol. In future, such advanced simulation and analysis could be performed in ecologically valid contexts, whereby multiple inertial measurement units and video cameras might be used to model a more complete set of dynamics.
可穿戴传感器和运动捕捉技术是测量拳击表现过程中时空变量以及研究疲劳外在可观察影响的公认工具。本研究旨在开发一个计算框架,通过从惯性测量单元和单平面录像中获取的跟踪拳击运动学来实现三维反向动力学分析。该框架应用于六名进行拳击特定疲劳协议的精英男性拳击手。OpenPose 用于标记左侧上肢地标,从中计算矢状面运动学。定制的惯性测量单元被嵌入拳击手套中,使用统计参数映射分析三维拳击加速度,以评估疲劳和侧别效应。一组左手拳击的跟踪模拟被制定为最优控制问题,并转换为非线性规划问题,使用梯形配置方法求解。侧别分析显示,疲劳的主导侧比非主导侧更疲劳,而跟踪模拟显示,随着疲劳协议的进行,肩部外展和抬高力矩增加。未来,这种先进的模拟和分析可以在生态有效情境中进行,其中可以使用多个惯性测量单元和摄像机来模拟更完整的动力学集。