Chou Shih-Wei, Abraham Lawrence D, Huang Ing-Shiou, Pei Yu-Cheng, Lai Cheng-Hsiu, Wong Alice M K
Department of Physical Medicine and Rehabilitation, Chang Gung Memorial Hospital, Taipei, Taiwan.
J Formos Med Assoc. 2005 Jul;104(7):493-501.
Although both starting position and stretching velocity play an important role in reflex response, their interaction with stretch reflexes has not been thoroughly investigated. This study examined the interaction effect of starting position and stretching velocity on the reflex threshold angle (RTA) of the stretch reflex in the soleus muscle of normal and spastic subjects.
The spastic group included 11 ankles from 7 subjects with a history of upper motor neuron lesions. Their ages ranged from 22 to 40 years. Another 10 healthy subjects served as the control group. RTAs of the stretch reflex in the soleus muscle were measured for a matrix of starting positions and stretching velocities. The matrix design enabled the use of a 2-way analysis model to investigate the effect of starting position and stretching velocity on the RTA.
No interaction effect was found in either the phasic stretch reflex (PSR) or the tonic stretch reflex (TSR) in the spastic group, or in the PSR in the normal group. The RTA of the PSR in both spastic and normal groups was significantly affected by starting position but not by stretching velocity. In contrast, the RTA of the TSR in the spastic group was affected by both starting position and stretching velocity. Stretching velocity and starting position played independent roles in determining the RTA of both the PSR and the TSR of the spastic group and in the PSR of the normal group.
The lack of interaction between length-sensitive and velocity-sensitive muscle spindles in both normal and spastic subjects supports the hypothesis that they independently modulate the stretch reflex. Results for the RTA of the TSR demonstrated that spasticity results in disinhibition of motoneuron excitability with different thresholds.
尽管起始位置和拉伸速度在反射反应中都起着重要作用,但它们与牵张反射的相互作用尚未得到充分研究。本研究探讨了起始位置和拉伸速度对正常和痉挛受试者比目鱼肌牵张反射的反射阈值角度(RTA)的相互作用影响。
痉挛组包括来自7名有上运动神经元损伤病史受试者的11个踝关节。他们的年龄在22至40岁之间。另外10名健康受试者作为对照组。针对一系列起始位置和拉伸速度测量比目鱼肌牵张反射的RTA。该矩阵设计允许使用双向分析模型来研究起始位置和拉伸速度对RTA的影响。
在痉挛组的相位性牵张反射(PSR)或紧张性牵张反射(TSR)中,以及正常组的PSR中,均未发现相互作用影响。痉挛组和正常组PSR的RTA均受起始位置显著影响,但不受拉伸速度影响。相比之下,痉挛组TSR的RTA受起始位置和拉伸速度两者影响。在确定痉挛组PSR和TSR以及正常组PSR的RTA时,拉伸速度和起始位置发挥独立作用。
正常和痉挛受试者中长度敏感和速度敏感肌梭之间缺乏相互作用,支持了它们独立调节牵张反射的假设。TSR的RTA结果表明,痉挛导致运动神经元兴奋性以不同阈值去抑制。