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人类脊髓损伤中对长时间屈肌反射刺激的反弹反应。

Rebound responses to prolonged flexor reflex stimuli in human spinal cord injury.

作者信息

Wu Ming, Kahn Jennifer H, Hornby T George, Schmit Brian D

机构信息

Sensory Motor Performance Program, Rehabilitation Institute of Chicago, 345 East Superior Street, Room 1406, Chicago, IL 60611, USA.

出版信息

Exp Brain Res. 2009 Feb;193(2):225-37. doi: 10.1007/s00221-008-1614-3. Epub 2008 Oct 30.

Abstract

The purpose of this study was to examine the reflex effects of electrical stimulation applied to the thigh using skin electrodes, targeting the sensory fibers of the rectus femoris and sartorius, in people with spinal cord injury (SCI). Thirteen individuals with SCI were recruited to participate in experiments using prolonged electrical stimuli on the right medial thigh over the regions of the sartorius and rectus femoris muscles. Three stimuli, spaced 20 s apart, were applied at 30 Hz for 1 s at four different intensities (15-60 mA) while subjects rested in a seated position. Isometric joint torques of the hip, knee and ankle, and electromyograms (EMGs) from six muscles of the leg were recorded during the stimulation. Early in the stimulation, a flexion response was observed at the hip and ankle, analogous to a flexor reflex; however, this response was usually followed by a "rebound" response consisting of hip extension, knee flexion and ankle plantarflexion, occurring in 10/13 subjects. Stimuli applied in a more lateral (mid thigh) electrode position (i.e. over the rectus femoris) were less effective in producing the response than medial placement, despite vigorous quadriceps activation. This complex reflex response is consistent with activation of a coordinating spinal circuit that could play a role in motor function. The reversal of the reflex pattern emphasizes the potential connection between skin/muscle afferents of the thigh, possibly including sartorius muscle afferents and locomotor reflex centers. This knowledge may be helpful in identifying rehabilitation strategies for enhancing gait training in human SCI.

摘要

本研究的目的是,针对脊髓损伤(SCI)患者,使用皮肤电极对大腿进行电刺激,刺激目标为股直肌和缝匠肌的感觉纤维,以检验其反射效应。招募了13名脊髓损伤患者参与实验,在右侧大腿内侧缝匠肌和股直肌区域施加持续的电刺激。在受试者坐姿休息时,以四种不同强度(15 - 60 mA)、30 Hz频率施加三次刺激,每次刺激持续1 s,间隔20 s。在刺激过程中记录髋、膝和踝关节的等长关节扭矩,以及腿部六块肌肉的肌电图(EMG)。在刺激初期,在髋部和踝关节观察到屈曲反应,类似于屈肌反射;然而,这种反应之后通常会出现“反弹”反应,包括髋部伸展、膝关节屈曲和踝关节跖屈,13名受试者中有10名出现这种情况。尽管股四头肌被有力激活,但在更外侧(大腿中部)电极位置(即股直肌上方)施加的刺激产生该反应的效果不如内侧位置。这种复杂的反射反应与一个可能在运动功能中起作用的协调脊髓回路的激活一致。反射模式的反转强调了大腿皮肤/肌肉传入神经之间的潜在联系,可能包括缝匠肌传入神经和运动反射中枢。这些知识可能有助于确定增强人类脊髓损伤患者步态训练的康复策略。

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