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Transcranial magnetic stimulation (TMS): compared sensitivity of different motor response parameters in ALS

机译:经颅磁刺激(TMS):比较了ALS中不同运动反应参数的敏感性

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摘要

Owing to the low sensitivity of clinical signs in assessing upper motor neuron (UMN) involvement in ALS, there is a need for investigative tools capable of detecting abnormal function of the pyramidal tract. Transcranial magnetic stimulation (TMS) may contribute to the diagnosis by reflecting a UMN dysfunction that is not clinically detectable. Several parameters for the motor responses to TMS can be evaluated with different levels of significance in healthy subjects compared with ALS patients. THe central motor conduction time, however, is not sensitive in detecting subclinical UMN defects in individual ALS patients. The amplitude of the motor evoked potential (MEP), expressed as the percentage of the maximum wave, also has a low sensitivity. In some case, the corticomotor threshold is decreased early in the disease course as a result of corticomotor neuron hyperexcitability induced by glutamate. Later, the threshold increases, indicating a loss of UMN. In our experience, a decreased silent period duration appears to be the most sensitive parameter when using motor TMS in ALS. TMS is also a sensitive technique for investigating the corticobulbar tract, which is difficult to study by other methods. TMS is a widely available, painless and safe technique with a good sensitivity that can visualize both corticospinal and corticobulbar tract abnormalities. The sensitivity can be improved further by taking into account the several MEP parameters, including latency and cortical silent period decreased duration.
机译:由于评估ALS中上运动神经元(UMN)参与的临床体征敏感性低,因此需要能够检测锥体束异常功能的研究工具。经颅磁刺激(TMS)可能通过反映临床上无法检测到的UMN功能障碍而有助于诊断。与ALS患者相比,在健康受试者中可以评估具有不同显着性水平的TMS运动反应参数。然而,中心运动传导时间对检测个别ALS患者的亚临床UMN缺陷并不敏感。电动机诱发电位(MEP)的幅度(以最大波的百分比表示)也具有较低的灵敏度。在某些情况下,由于谷氨酸诱导的皮质运动神经元过度兴奋,在疾病过程的早期皮质运动阈值降低。之后,阈值增加,表明UMN丢失。根据我们的经验,当在ALS中使用电机TMS时,减小的静默期持续时间似乎是最敏感的参数。 TMS也是一种研究皮球道的敏感技术,很难通过其他方法进行研究。 TMS是一种广泛使用的,无痛且安全的技术,具有良好的敏感性,可以可视化皮质脊髓和皮质球管异常。通过考虑几个MEP参数,包括潜伏期和皮质静默期持续时间的减少,可以进一步提高灵敏度。

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