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首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Withdrawal reflexes examined during human gait by ground reaction forces: site and gait phase dependency.
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Withdrawal reflexes examined during human gait by ground reaction forces: site and gait phase dependency.

机译:撤退反射是通过地面反作用力在人的步态中检查的:部位和步态相位依赖性。

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摘要

The objective of this study was to investigate the modulation of the nociceptive withdrawal reflex during gait measured using Force Sensitive Resistors (FSR). Electrical stimulation was delivered to four locations on the sole of the foot at three different time points between heel-off and toe-off. Peak force changes were measured by FSRs attached to the big toe, distal to the first and fourth metatarsophalangeal joints, and the medial process of the calcaneus on both feet. Force changes were assessed in five gait sub-phases. The painful stimulation led to increased ipsilateral unloading (10 +/- 1 N) and contralateral loading (12 +/- 1 N), which were dependent on stimulation site and phase. In contrast, the hallux of the ipsilateral foot plantar flexed, thus facilitating the push-off. The highest degree of plantar flexion (23 +/- 10 N; range, 8-44 N) was seen in the second double support phase following the stimulation. Site and phase modulation of the reflex were detected in the force signals from all selected anatomical landmarks. In the kinematic responses, both site and phase modulation were observed. For stimulations near toe-off, withdrawal was primarily accomplished by ankle dorsiflexion, while the strategy for stimulations at heel-off was flexion of the knee and hip joints.
机译:这项研究的目的是研究使用力敏电阻(FSR)测量的步态过程中伤害感受性退缩反射的调节。在脚跟着地和脚趾着地之间的三个不同时间点,电刺激被传递到脚底的四个位置。峰值力的变化通过附着在第一和第四F趾关节远端的大脚趾上的FSR以及双脚的跟骨内侧过程来测量。在五个步态亚阶段中评估了力的变化。疼痛刺激导致同侧负荷增加(10 +/- 1 N)和对侧负荷(12 +/- 1 N),这取决于刺激部位和阶段。相反,同侧足底的拇趾弯曲,从而促进下垂。在刺激后的第二个双支撑阶段,足底屈曲度最高(23 +/- 10 N;范围为8-44 N)。在所有选定的解剖学界标的力信号中检测到反射的位点和相位调制。在运动学响应中,观察到位点和相位调制。对于脚趾附近的刺激,退缩主要通过踝背屈来完成,而脚后跟刺激的策略是膝盖和髋关节的屈曲。

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