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脊髓在从安静站立到行走的过渡中的适应行为。

Adaptive behaviour of the spinal cord in the transition from quiet stance to walking.

机构信息

Department of Medical and Surgical Sciences and Biotechnologies, Sapienza University of Rome, Polo Pontino, Latina, Italy.

出版信息

BMC Neurosci. 2012 Jul 16;13:80. doi: 10.1186/1471-2202-13-80.

Abstract

BACKGROUND

Modulation of nociceptive withdrawal reflex (NWR) excitability was evaluated during gait initiation in 10 healthy subjects to investigate how load- and movement-related joint inputs activate lower spinal centres in the transition from quiet stance to walking. A motion analysis system integrated with a surface EMG device was used to acquire kinematic, kinetic and EMG variables. Starting from a quiet stance, subjects were asked to walk forward, at their natural speed. The sural nerve was stimulated and EMG responses were recorded from major hip, knee and ankle muscles. Gait initiation was divided into four subphases based on centre of pressure and centre of mass behaviours, while joint displacements were used to categorise joint motion as flexion or extension. The reflex parameters were measured and compared between subphases and in relation to the joint kinematics.

RESULTS

The NWR was found to be subphase-dependent. NWR excitability was increased in the hip and knee flexor muscles of the starting leg, just prior to the occurrence of any movement, and in the knee flexor muscles of the same leg as soon as it was unloaded. The NWR was hip joint kinematics-dependent in a crossed manner. The excitability of the reflex was enhanced in the extensor muscles of the standing leg during the hip flexion of the starting leg, and in the hip flexors of the standing leg during the hip extension of the starting leg. No notable reflex modulation was observed in the ankle muscles.

CONCLUSIONS

Our findings show that the NWR is modulated during the gait initiation phase. Leg unloading and hip joint motion are the main sources of the observed modulation and work in concert to prepare and assist the starting leg in the first step while supporting the contralateral leg, thereby possibly predisposing the lower limbs to the cyclical pattern of walking.

摘要

背景

在 10 名健康受试者中,通过评估伤害性撤退反射(NWR)的兴奋度调制,研究了在从安静站立到行走的过渡过程中,负荷和运动相关的关节输入如何激活较低的脊髓中枢。运动分析系统与表面肌电图设备相结合,用于获取运动学、动力学和肌电图变量。受试者从安静站立开始,以其自然速度向前行走。刺激腓肠神经,记录主要髋关节、膝关节和踝关节肌肉的肌电图反应。根据压力中心和质心的行为,将步态启动分为四个亚相,同时根据关节运动将关节运动分类为屈曲或伸展。测量并比较了亚相之间和与关节运动学相关的反射参数。

结果

发现 NWR 与亚相有关。在起始腿的髋关节和膝关节屈肌中,在发生任何运动之前,以及在同一腿的膝关节屈肌中,在其负载被解除后,NWR 兴奋性增加。NWR 以交叉方式依赖于髋关节运动学。在起始腿的髋关节屈曲期间,站立腿的伸肌中反射的兴奋性增强,在起始腿的髋关节伸展期间,站立腿的髋关节屈肌中反射的兴奋性增强。在踝关节肌肉中没有观察到明显的反射调节。

结论

我们的发现表明,NWR 在步态启动阶段被调节。腿部卸载和髋关节运动是观察到的调制的主要来源,它们协同工作,为起始腿的第一步做好准备并提供帮助,同时支撑对侧腿,从而可能使下肢更容易进入周期性的行走模式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9209/3445852/40d0fa6a8926/1471-2202-13-80-1.jpg

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