Bühler R, Magistris M R, Truffert A, Hess C W, Rösler K M
Department of Neurology, University of Berne, Inselspital, CH-3010, Berne, Switzerland.
Clin Neurophysiol. 2001 May;112(5):938-49. doi: 10.1016/s1388-2457(01)00506-5.
To quantify the percentage of motor units of a foot muscle that can be activated by transcranial magnetic stimulation (TMS) in normal subjects and patients.
We adapted the recently described triple stimulation technique (TST) for recordings from abductor hallucis (AH). Conventional motor evoked potentials (MEPs) of this muscle are usually small and variable in shape, because of an important temporal desynchronization of the TMS induced spinal motor neuron discharges. The TST allows 'resynchronization' of these discharges and thereby a quantification of the proportion of motor units activated by TMS. The lower limb (LL-) TST was applied to 33 sides of 18 normal subjects and 51 sides of 46 patients with multiple sclerosis, amyotrophic lateral sclerosis, or spinal cord disorders.
In healthy subjects, the LL-TST demonstrated that TMS achieves activation of virtually all motor neurons supplying the AH. In 33 of 51 patient sides, abnormal LL-TST responses suggested corticospinal conduction failures of various degrees. The LL-TST was 2.54 times more sensitive to detect central conduction failures than the conventional LL-MEPs. Combining the LL-TST with TST of the upper limbs further increased the sensitivity to detect a conduction failure by 1.50 times.
The LL-TST markedly improves the examination of corticospinal pathways.
量化正常受试者和患者中,经颅磁刺激(TMS)可激活的足部肌肉运动单位的百分比。
我们采用了最近描述的三重刺激技术(TST)来记录拇展肌(AH)的情况。由于TMS诱导的脊髓运动神经元放电存在重要的时间去同步化,该肌肉的传统运动诱发电位(MEP)通常较小且形状多变。TST可使这些放电“重新同步”,从而量化由TMS激活的运动单位比例。对18名正常受试者的33侧下肢和46例患有多发性硬化症、肌萎缩侧索硬化症或脊髓疾病的患者的51侧下肢应用下肢(LL-)TST。
在健康受试者中,LL-TST表明TMS几乎可激活供应AH的所有运动神经元。在51例患者的33侧中,异常的LL-TST反应提示存在不同程度的皮质脊髓传导障碍。LL-TST检测中枢传导障碍的敏感性比传统的下肢MEP高2.54倍。将LL-TST与上肢TST相结合,检测传导障碍的敏感性进一步提高了1.50倍。
LL-TST显著改善了皮质脊髓通路的检查。