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脊髓监测中的“逆传”。高位胸段脊髓刺激通过逆向感觉通路传导而非运动束传导诱发坐骨神经反应。

"Backfiring" in spinal cord monitoring. High thoracic spinal cord stimulation evokes sciatic response by antidromic sensory pathway conduction, not motor tract conduction.

作者信息

Su C F, Haghighi S S, Oro J J, Gaines R W

机构信息

Division of Neurosurgery, Tri-Service General Hospital, Taipei, Taiwan ROC.

出版信息

Spine (Phila Pa 1976). 1992 May;17(5):504-8.

PMID:1621148
Abstract

Spinal cord stimulation has been advocated as an alternative to motor cortex stimulation for motor tract activation. To test this theory, evoked responses were recorded from lumbar spinal cord (L2; n = 14), spinal roots (L4-L7; n = 112), peripheral nerves (sciatics; n = 28), and hind limb muscles (n = 28) after epidural stimulation of the T1-T2 segment of the spinal cord in dogs (n = 12), cats (n = 2), and monkeys (n = 2). The spinal response evoked by spinal cord stimulation was resistant to a dorsal hemisectioning (depth, 7-8 mm) of the midthoracic spinal cord. A minimal attenuation of latency and amplitude occurred with dorsal hemisectioning, suggesting signal transmission through descending or ascending pathways in the ventrolateral and ventral quadrants of the spinal cord. The sciatic nerve response was abolished by a dorsal column transection (depth, 3-4 mm) or ipsilateral lumbar dorsal rhizotomy (four dorsal roots). This shows that the evoked response recorded from the sciatic nerve in our animals was not travelling, as we expected, through the ventral roots, but rather was conducted antidromically through sensory fibers in dorsal roots.

摘要

脊髓刺激已被倡导作为一种激活运动传导束的替代方法,以替代运动皮层刺激。为了验证这一理论,在对狗(n = 12)、猫(n = 2)和猴子(n = 2)的脊髓T1 - T2节段进行硬膜外刺激后,记录了腰脊髓(L2;n = 14)、脊神经根(L4 - L7;n = 112)、周围神经(坐骨神经;n = 28)和后肢肌肉(n = 28)的诱发反应。由脊髓刺激诱发的脊髓反应对胸段脊髓中段的背侧半横切(深度7 - 8毫米)具有抗性。背侧半横切时潜伏期和波幅仅有轻微衰减,提示信号通过脊髓腹外侧和腹侧象限的下行或上行通路传导。坐骨神经反应在进行背柱横切(深度3 - 4毫米)或同侧腰段背根切断术(切断四根背根)后消失。这表明在我们的动物中,从坐骨神经记录到的诱发反应并非如我们所预期的那样通过腹根传导,而是通过背根中的感觉纤维进行逆向传导。

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