Laboratory of Motor Control and Learning, Department of Physical Education and Sport Science, Aristotle University of Thessaloniki, Greece.
Laboratory of Motor Control and Learning, Department of Physical Education and Sport Science, Aristotle University of Thessaloniki, Greece.
Hum Mov Sci. 2014 Feb;33:251-62. doi: 10.1016/j.humov.2013.09.005. Epub 2013 Nov 27.
In this study, we examined the interaction between central and peripheral proprioceptive afferent pathways by applying ankle tendon vibration during postural leaning in different directions. Twenty young participants stood for 60s over the midline of two adjacent force platforms in (a) neutral stance distributing Body Weight (BW) equally between the platforms, (b) forward leaning transferring 80% of BW to the front platform and (c) backward leaning transferring 80% of BW to the rear platform. Participants controlled the degree of leaning by receiving on-line visual feedback of BW distribution matched to a target line. Vibration (80Hz, 1.5-1.8mm) was applied over the Achilles or tibialis anterior tendon during the middle 20s of standing. This induced a postural shift towards the vibration side and an increase in the variability of the BW distribution that was greater in backward compared to forward leaning. EMG responses to tendon vibration were independent of the leaning direction. Antagonistic activity also increased in response to vibration, the amplitude of this increase however was direction dependent. These results favor the hypothesis about the central co-modulation of the vibration evoked proprioceptive inflow based on postural and visual feedback rather than muscle tension constraints.
在这项研究中,我们通过在不同方向的姿势倾斜期间应用踝关节肌腱振动来检查中枢和外周本体感受传入通路之间的相互作用。20 名年轻参与者在两个相邻力平台的中线(a)中立位以平台之间相等的体重(BW)分布,(b)前倾转移 80%的 BW 到前平台和(c)后倾转移 80%的 BW 到后平台上站立 60 秒。参与者通过接收与目标线匹配的 BW 分布的在线视觉反馈来控制倾斜程度。在站立的中间 20 秒期间,在跟腱或胫骨前肌肌腱上施加(80Hz,1.5-1.8mm)振动。这导致了向振动侧的姿势转移,BW 分布的变异性增加,后倾比前倾更大。肌腱振动的肌电图反应与倾斜方向无关。拮抗肌活动也对振动作出反应而增加,但是这种增加的幅度取决于方向。这些结果支持了基于姿势和视觉反馈而不是肌肉张力约束对振动诱发本体传入冲动进行中枢共同调节的假设。