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Diagnostic value of F-response in the localization of the level of the lesion of peripheral motor neuron

机译:F反应在周围运动神经元病变水平定位中的诊断价值

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F-wave is a secondary muscle response, which occurs by antidromic activation of the limited number of alphamotoneurons. Based on M- and F-response and the nerve length, the conduction time, conduction velocity, and the ratio of F-response can be determined. These parameters help in assessing the data about functional condition of peripheral motor neurons along the most proximal segment in relatively simple and non-invasive way. In routine practical work, minimal latency of F-wave is measured, while F-wave conduction time, F-wave conduction velocity and F-ratio are not measured. The aim of this research was to examine the importance of F-wave latency, F-wave conducution time, F-wave conduction velocity, and F-ratio in the localization of level of lesion of peripheral motor neurons. Electromyoneurography examination included 50 patients with radiculopathies of lumbosacral part of spinal cord, 50 patients with neuropathy, and 25 healthy persons. Minimal latency of F-wave for tibial nerve and peroneal nerve was determined after 10 stimulations. F-wave latency, F-wave conduction time, F-wave conduction velocity, and F-ratio were determined in accordance with the formulas defined by Kimura. The results of our test have shown that F-wave latency, F wave conducution time, F-wave conduction velocity, were important electrophysiological parameters, while F-ratio was found to be highly sensitive, which made it the most valid electro-physiological parameter in the differentiation of proximal and distal lesion of peripheral motor neuron.
机译:F波是继发性肌肉反应,是由有限数量的α运动神经元的抗drodromic激活而发生的。根据M响应和F响应以及神经长度,可以确定传导时间,传导速度和F响应的比率。这些参数有助于以相对简单且无创的方式评估有关沿最近端部分的周围运动神经元功能状态的数据。在常规的实际工作中,测量的是F波的最小等待时间,而没有测量F波的传导时间,F波的传导速度和F比。这项研究的目的是检查F波潜伏期,F波传导时间,F波传导速度和F比在周围运动神经元病变水平定位中的重要性。肌电图检查包括50例脊髓腰部神经根病,50例神经病患者和25名健康人。 10次​​刺激后,确定胫骨和腓神经的F波最小潜伏期。 F波潜伏期,F波传导时间,F波传导速度和F比是根据Kimura定义的公式确定的。我们的测试结果表明,F波潜伏期,F波传导时间,F波传导速度是重要的电生理参数,而F比被认为是高度敏感的,这使其成为最有效的电生理参数。在周围运动神经元的近端和远端病变的分化中。

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