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硬膜外脊髓刺激诱导完全性脊髓损伤大鼠的后肢迈步运动。

Hindlimb stepping movements in complete spinal rats induced by epidural spinal cord stimulation.

作者信息

Ichiyama R M, Gerasimenko Yu P, Zhong H, Roy R R, Edgerton V R

机构信息

Department of Physiological Science, University of California, Los Angeles, 1804 Life Science Building, 621 Charles E Young Drive, Los Angeles, CA 90095, USA.

出版信息

Neurosci Lett. 2005 Aug 5;383(3):339-44. doi: 10.1016/j.neulet.2005.04.049.

Abstract

The locomotor ability of the spinal cord of adult rats deprived of brain control was tested by epidural spinal cord stimulation. The studies were performed on six rats that had a complete spinal cord transection (T7-T9) and epidural electrode implantations 2-3 weeks before testing was initiated. The stimulating epidural electrodes were implanted at the T12-L6 spinal segments. Epidural electrical stimulation of the dorsal surface of the spinal cord at frequencies between 1 and 50 Hz and intensities between 1 and 10 V without any pharmacological facilitation was used. Stimulation at each of the lumbar spinal cord segments elicited some rhythmic activity in the hindlimbs. However, stimulation at most segmental levels usually evoked activity in only one leg and was maintained for short periods of time (< 10s). Bilateral hindlimb locomotor activity was evoked most often with epidural stimulation at 40-50 Hz applied at the L2 segment. A necessary condition for initiation of locomotor activity was providing a specific amount (at least 5%) of body weight support. Therefore, the rat spinal cord isolated from brain control is capable of producing bilateral stepping patterns induced most readily by epidural stimulation applied at the L2 spinal segment. Furthermore, the induced stepping patterns were dependent on sensory feedback associated with weight bearing.

摘要

通过硬膜外脊髓刺激测试成年大鼠被剥夺脑控制后脊髓的运动能力。研究在六只大鼠上进行,这些大鼠在测试开始前2 - 3周进行了完全脊髓横断(T7 - T9)并植入了硬膜外电极。刺激硬膜外电极植入在T12 - L6脊髓节段。在没有任何药理学促进作用的情况下,以1至50 Hz的频率和1至10 V的强度对脊髓背表面进行硬膜外电刺激。对每个腰段脊髓节段的刺激都会在后肢引发一些节律性活动。然而,大多数节段水平的刺激通常仅在一条腿中诱发活动,并且持续时间较短(<10秒)。在L2节段施加40 - 50 Hz的硬膜外刺激最常诱发双侧后肢运动活动。启动运动活动的一个必要条件是提供特定量(至少5%)的体重支撑。因此,与脑控制分离的大鼠脊髓能够产生最容易由L2脊髓节段施加的硬膜外刺激诱导的双侧踏步模式。此外,诱导的踏步模式依赖于与负重相关的感觉反馈。

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