Laboratory of Neurophysiology, Graduate School of Human and Environmental Studies, Kyoto University, Kyoto, Japan.
J Electromyogr Kinesiol. 2012 Dec;22(6):975-82. doi: 10.1016/j.jelekin.2012.05.006. Epub 2012 Jun 24.
The purpose of this study was to detect the characteristics of center of pressure (COP) movement during tiptoe standing (TS) compared to quiet standing (QS). Eight healthy subjects were asked to perform QS and TS on a force platform. During standing, surface electromyograms (EMGs) were recorded from the soleus (SOL), flexor hallucis brevis (FHB), medial gastrocnemius (MG), lateral gastrocnemius (LG), and tibialis anterior (TA) muscles. The path length and rectangular area of the COP trajectory were significantly larger during TS than during QS. In contrast, irrespective of standing condition, the scaling coefficients in the short and long regions were above and below 0.5, respectively. The coherence spectrum between the COP and EMG from the SOL and FHB muscles was statistically significant during TS at frequencies up to 17 Hz, while that for the QS was only significant below 1 Hz. In conclusion, the control of COP movement during TS was similar to that during QS despite large COP fluctuations during TS. Our results suggest that unstable posture during TS is compensated for by the activities of the SOL and FHB muscles, which enhance postural control.
本研究旨在检测与安静站立(QS)相比,踮脚站立(TS)时的压力中心(COP)运动特征。要求 8 名健康受试者在力台上进行 QS 和 TS。站立时,从比目鱼肌(SOL)、踇短屈肌(FHB)、腓肠肌内侧(MG)、腓肠肌外侧(LG)和胫骨前肌(TA)记录表面肌电图(EMG)。与 QS 相比,TS 时 COP 轨迹的路径长度和矩形面积明显更大。相反,无论站立条件如何,短区和长区的比例系数分别大于和小于 0.5。在 TS 时,COP 和 SOL 及 FHB 肌肉 EMG 之间的相干谱在高达 17 Hz 的频率下具有统计学意义,而 QS 时仅在低于 1 Hz 的频率下具有统计学意义。总之,尽管 TS 期间 COP 波动较大,但 COP 运动的控制在 TS 期间与 QS 期间相似。我们的结果表明,TS 期间不稳定的姿势通过增强姿势控制的 SOL 和 FHB 肌肉的活动得到补偿。