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正常清醒大鼠硬膜外脊髓刺激诱发的脊髓反射。

Spinal cord reflexes induced by epidural spinal cord stimulation in normal awake rats.

作者信息

Gerasimenko Yury P, Lavrov Igor A, Courtine Gregoire, Ichiyama Ronaldo M, Dy Christine J, Zhong Hui, Roy Roland R, Edgerton V Reggie

机构信息

Department of Physiological Science, University of California, Los Angeles, CA 90095, USA.

出版信息

J Neurosci Methods. 2006 Oct 30;157(2):253-63. doi: 10.1016/j.jneumeth.2006.05.004. Epub 2006 Jun 9.

Abstract

Motor responses in hindlimb muscles to epidural spinal cord stimulation in normal awake rats during bipedal standing were studied. Stimulation at L2 or S1 induced simultaneous and bilateral responses in the vastus lateralis, semitendinosus, tibialis anterior, and medial gastrocnemius muscles. Stimulation at S1 evoked an early (ER), middle (MR) and late (LR) response: stimulation at L2 elicited only a MR and LR. Vibration and double epidural stimulation testing suggests that the ER is a direct motor response, whereas the MR and LR are mediated synaptically. MR has properties of a monosynaptic reflex, i.e., inhibited during vibration and depressed during the second pulse of a double stimulation. Some components of the LR seem to be mediated by afferents associated with the flexor reflex and probably involve group II afferents. During bipedal treadmill stepping, the MR was modulated in extensors, whereas the LR was modulated in flexors. These results show differential modulation of monosynaptic and polysynaptic reflexes in flexor and extensor motor pools during locomotion. Monosynaptic responses to stimulation at either L2 or S1 generally were amplified in extensors during the stance phase and in flexors during the swing phase of the step cycle. No correlation was found between the ER and the EMG background during stepping, whereas both the MR and LR were closely correlated with the changes in the EMG activity level of the corresponding muscle. These data demonstrate the feasibility of using epidural stimulation for examining monosynaptic and polysynaptic pathways to motor pools associated with multiple muscles during movement and over a prolonged period.

摘要

研究了正常清醒大鼠双足站立时后肢肌肉对硬膜外脊髓刺激的运动反应。在L2或S1水平进行刺激可诱发股外侧肌、半腱肌、胫骨前肌和腓肠肌内侧同时出现双侧反应。在S1水平刺激可诱发早期反应(ER)、中期反应(MR)和晚期反应(LR);在L2水平刺激仅诱发中期反应和晚期反应。振动和双硬膜外刺激测试表明,早期反应是直接运动反应,而中期反应和晚期反应是通过突触介导的。中期反应具有单突触反射的特性,即在振动时受到抑制,在双刺激的第二个脉冲时受到抑制。晚期反应的一些成分似乎由与屈肌反射相关的传入神经介导,可能涉及II类传入神经。在双足跑步机行走过程中,中期反应在伸肌中受到调节,而晚期反应在屈肌中受到调节。这些结果表明,在运动过程中,屈肌和伸肌运动池中的单突触和多突触反射存在差异调节。在步周期的站立期,对L2或S1刺激的单突触反应通常在伸肌中增强,在摆动期在屈肌中增强。在行走过程中,早期反应与肌电图背景之间未发现相关性,而中期反应和晚期反应均与相应肌肉的肌电图活动水平变化密切相关。这些数据证明了使用硬膜外刺激来检查运动过程中及长时间内与多块肌肉相关的运动池的单突触和多突触通路的可行性。

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