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Spinal somatosensory evoked potential to evaluate neurophysiologic changes associated with postlaminotomy fibrosis: an experimental study.

机译:脊髓体感诱发电位,以评估与椎板切除术后纤维化相关的神经生理变化:一项实验研究。

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STUDY DESIGN: We evaluated electrophysiologic changes of the cauda equina after lumbar laminotomy in rats. OBJECTIVE: To clarify immediate and long-term electrophysiologic and neurologic responses in an experimental postlaminotomy animal fibrosis model. SUMMARY OF BACKGROUND DATA: Postspinal surgery-induced epidural fibrosis is assessed using either Gadolinium- enhanced magnetic resonance imaging (MRI) or intraoperative observations. In experimental animal models mimicking this complication, many approaches are used: advanced imaging (computed tomography, CT; and MRI), functional observations, biomechanical techniques, and histologic examinations. However, no study has reported the substantial neurophysiologic changes of the cauda equina in such a model. METHODS: Rats were given a sham operation (laminar exposure only), a left L5 hemilaminotomy alone, or a left L5 hemilaminotomy with extradural topical collagen. Mixed-nerve-elicited somatosensory-evoked potentials (M-SSEPs) and dermatomal (D)-SSEPs were recorded at the thoracolumbar junction after percutaneous stimulation of the posterior tibial nerve at the bilateral medial ankles and the L5 dermatomal field, respectively. Potentials recorded on the operated and nonoperated sides before surgery and then 30 minutes, 2 weeks, and 1, 2, and 3 months after surgery were compared. Walking track and thermal hyperalgesia test results and a final histologic analysis of perineural fibrosis were correlated. RESULTS: Electrical stimulation yielded reproducible responses in all rats on all tests. Preoperative and postoperative measurements showed no statistically significant differences in M-SSEP or D-SSEP. Postoperative D-SSEPs in both experimental groups showed significant reductions in relative amplitude, but the M-SSEPs of all groups and D-SSEPs of the control groups remained constant. CONCLUSION: SSEP is valuable for detecting electrophysiologic changes after laminotomy fibrosis, but acceptable accuracy requires proper stimulation and recording settings. D-SSEP monitoring provided reliable, useful information about the functional integrity of the cauda equina in this animal model. We recommend D-SSEP monitoring as a supplemental tool for quantifying the effect of postlaminotomy fibrosis on neuropathy.
机译:研究设计:我们评估了大鼠腰椎切开术后马尾神经的电生理变化。目的:阐明实验性椎板切除术后动物纤维化模型的近期和长期电生理和神经反应。背景数据摘要:使用Ga增强磁共振成像(MRI)或术中观察来评估脊柱手术引起的硬膜外纤维化。在模仿这种并发症的实验动物模型中,使用了许多方法:高级成像(计算机断层扫描,CT和MRI),功能观察,生物力学技术和组织学检查。但是,尚无研究报道这种模型中马尾神经的重大生理生理变化。方法:对大鼠进行假手术(仅进行层暴露),单独进行左L5半切开术或使用硬膜外局部胶原进行左L5半切开术。在双侧内侧踝和L5皮下区分别经皮刺激胫后神经后,在胸腰交界处记录到混合神经诱发的体感诱发电位(M-SSEPs)和皮下(D)-SSEPs。比较了手术前和手术后30分钟,2周以及1、2和3个月在手术侧和非手术侧记录的电势。步行轨迹和热痛觉过敏测试结果与神经周围纤维化的最终组织学分析相关。结果:在所有测试中,电刺激在所有大鼠中均产生可重复的反应。术前和术后的测量结果显示M-SSEP或D-SSEP没有统计学上的显着差异。两个实验组的术后D-SSEP均显示相对幅度明显降低,但所有组的M-SSEP和对照组的D-SSEP均保持不变。结论:SSEP对于探查椎弓根切开术纤维化后的电生理变化具有重要价值,但可接受的准确度需要适当的刺激和记录设置。 D-SSEP监测提供了关于该动物模型中马尾神经功能完整性的可靠,有用的信息。我们建议使用D-SSEP监测作为量化椎板切开术后纤维化对神经病变影响的补充工具。

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