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在未镇静的啮齿动物中使用磁刺激来诱发运动诱发电位、体感诱发电位和H反射。

Use of magnetic stimulation to elicit motor evoked potentials, somatosensory evoked potentials, and H-reflexes in non-sedated rodents.

作者信息

Zhang Yi Ping, Shields Lisa B E, Zhang Yongjie, Pei Jiong, Xu Xiao-Ming, Hoskins Rachel, Cai Jun, Qiu Meng Sheng, Magnuson David S K, Burke Darlene A, Shields Christopher B

机构信息

Kentucky Spinal Cord Injury Research Center, 511 South Floyd Street, Louisville, KY 40202, USA.

出版信息

J Neurosci Methods. 2007 Sep 15;165(1):9-17. doi: 10.1016/j.jneumeth.2007.05.021. Epub 2007 May 24.

DOI:10.1016/j.jneumeth.2007.05.021
PMID:17628688
Abstract

Assessment of locomotor function of rodents may be supplemented using electrophysiological tests which monitor the integrity of ascending and descending tracts as well as the focal circuitry of the spinal cord in non-sedated rodents. Magnetically induced SSEPs (M-SSEPs) were elicited in rats by activating the hindpaw using magnetic stimulation (MS). M-SSEP response latencies were slightly longer than those elicited by electrical stimulation. M-SSEPs were eliminated following selective dorsal column lacerations of the spinal cord, indicating that they were transmitted via this tract. Magnetically induced motor evoked potentials (M-MEPs) were elicited in mice following transcranial MS and recorded from the gastrocnemius muscles. M-MEPs performed on myelin deficient mice demonstrated longer onset latencies and smaller amplitudes than in wild-type mice. Magnetically induced H-reflexes (MH-reflexes) which assess local circuitry in the lumbosacral area of the spinal cord were performed in rats. This response disappeared following an L3 contusion spinal cord injury, however, kainic acid (KA) injection at L3, known to selectively destroy interneurons, caused a shorter latency and an increase in the amplitude of the MH-reflex. M-SSEPs and MH-reflexes in rats and M-MEPs in mice compliment locomotor evaluation in assessing the functional integrity of the spinal cord under normal and pathological conditions in the non-sedated animal.

摘要

啮齿动物运动功能的评估可以通过电生理测试来补充,这些测试可监测未麻醉啮齿动物中上行和下行神经束的完整性以及脊髓的局部神经回路。通过磁刺激(MS)激活后爪在大鼠中诱发磁诱导体感诱发电位(M-SSEP)。M-SSEP的反应潜伏期略长于电刺激诱发的潜伏期。脊髓选择性背柱损伤后M-SSEP消失,表明它们是通过该神经束传导的。经颅磁刺激后在小鼠中诱发磁诱导运动诱发电位(M-MEP),并从腓肠肌记录。在髓鞘缺陷小鼠上进行的M-MEP显示,其起始潜伏期比野生型小鼠更长,幅度更小。在大鼠中进行评估脊髓腰骶部局部神经回路的磁诱导H反射(MH反射)。L3脊髓挫伤损伤后该反应消失,然而,已知在L3注射 kainic acid(KA)可选择性破坏中间神经元,会导致MH反射潜伏期缩短和幅度增加。大鼠中的M-SSEP和MH反射以及小鼠中的M-MEP在评估未麻醉动物正常和病理条件下脊髓的功能完整性时,补充了运动评估。

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