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体重卸载对对称站位时下肢体伤害性撤回反射的调节作用。

Modulating effects of bodyweight unloading on the lower limb nociceptive withdrawal reflex during symmetrical stance.

机构信息

Department of Medico-Surgical Sciences and Biotechnologies, Sapienza University of Rome, Italy.

出版信息

Clin Neurophysiol. 2012 May;123(5):1035-43. doi: 10.1016/j.clinph.2011.09.006. Epub 2011 Oct 1.

Abstract

OBJECTIVE

To investigate the effects of bodyweight unloading on the excitability of the nociceptive withdrawal reflex (NWR) and of its receptive fields organisation during quiet stance in humans.

METHODS

The NWR was elicited in 14 volunteers by electrical stimulation of the sole of the foot at mid-forefoot, arch, and heel points. Participants stood upright and wore a whole-body harness connected via a rope to a pulley. Data were recorded at 0%, 10%, 25% and 40% of the bodyweight unloading. The root mean square of the EMG activity was measured bilaterally from several lower limb muscles. Kinematics of ankle, knee, and hip were measured bilaterally using goniometers.

RESULTS

Two-way ANOVA for repeated measures revealed higher reflex sizes at higher degrees of unloading in the tibialis anterior, soleus, and biceps femoris muscles and in the kinematics of the knee joint of the ipsilateral limb. No interaction between stimulation site and unloading was revealed.

CONCLUSIONS

Unloading induced a generalised enhancement of NWR excitability without modifying the reflex receptive field organisation.

SIGNIFICANCE

Our study indicates that bodyweight unloading in general enhances the NWR excitability and suggests that only load-related afferent inputs in concert with joint movements may modify the modular organisation of the NWR.

摘要

目的

研究人体在静息站立时,失重对伤害性撤退反射(NWR)的兴奋性及其感受野组织的影响。

方法

通过对足底中前脚、足弓和脚跟部位的电刺激,在 14 名志愿者中引出 NWR。参与者直立,全身安全带通过绳索与滑轮相连。在失重 0%、10%、25%和 40%的情况下记录数据。从几个下肢肌肉双侧测量肌电图活动的均方根。使用量角器双侧测量踝关节、膝关节和髋关节的运动学。

结果

重复测量的双因素方差分析显示,在前胫骨肌、比目鱼肌和股二头肌以及同侧膝关节运动学中,在更高程度的失重量下,反射尺寸更大。刺激部位与失重量之间没有相互作用。

结论

失重在没有改变反射感受野组织的情况下,引起了 NWR 兴奋性的普遍增强。

意义

我们的研究表明,一般的失重会增强 NWR 的兴奋性,并表明只有与关节运动相关的负荷相关传入输入可能会改变 NWR 的模块化组织。

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