Chen Jonathan H, Gonzalez Andres A, Shilian Parastou, Cheongsiatmoy Justin
a Division of Surgical Neurophysiology Keck Hospital of University of Southern California , Los Angeles , California.
Neurodiagn J. 2018;58(4):218-225. doi: 10.1080/21646821.2018.1532198. Epub 2018 Nov 2.
Transcranial electrical motor evoked potential (TcMEP) is a modality utilized in intraoperative neurophysiological monitoring to assess the integrity of the corticospinal tract. Traditionally, TcMEPs are obtained by anodal stimulation of the scalp over the motor cortex of the selected hemisphere and referenced to the contralateral hemisphere. Subsequent compound motor action potential responses (CMAPs) are recorded at various muscles. The muscle responses of interest are usually those recorded in the limb contralateral to the hemisphere of stimulation. However, TcMEPs may elicit simultaneous muscle responses in the limbs ipsilateral to the hemisphere of stimulation, otherwise defined as "crossover" responses. Crossover TcMEPs are thought to be generated when electrical stimulation reaches the corticospinal tract at intracranial structures as deep as the medullary pyramids. If electrical stimulation penetrates deeper than the at-risk structures, false negatives motor evoked potential monitoring may occur. Therefore, in surgeries where cerebral cortical structures may be at risk, TcMEPs may be elicited so that contralateral CMAP responses are present without crossover responses. We present three cases using an alternative TcMEP montage in which anodal stimulation of the target hemisphere is referenced to Fpz at midline. Compared with the C3-C4/C4-C3 montage, crossover responses are minimized with the modified montage. C3-Fpz/C4-Fpz TcMEP stimulation may be a potential tool to implement in certain intraoperative neuromonitoring cases.
经颅电机诱发电位(TcMEP)是一种用于术中神经生理监测以评估皮质脊髓束完整性的方法。传统上,TcMEP是通过对选定半球运动皮层上方的头皮进行阳极刺激并以对侧半球为参考来获得的。随后在不同肌肉记录复合运动动作电位反应(CMAP)。感兴趣的肌肉反应通常是在刺激半球对侧肢体记录到的反应。然而,TcMEP可能会在刺激半球同侧肢体引发同时出现的肌肉反应,即所谓的“交叉”反应。交叉TcMEP被认为是当电刺激在颅内结构中到达延髓锥体等深处的皮质脊髓束时产生的。如果电刺激穿透的深度超过了有风险的结构,可能会出现运动诱发电位监测的假阴性。因此,在可能危及大脑皮质结构的手术中,可能会引出TcMEP,以便出现对侧CMAP反应而无交叉反应。我们展示了三例使用替代TcMEP组合方式的病例,其中对目标半球的阳极刺激以中线的Fpz为参考。与C3 - C4/C4 - C3组合方式相比,改良后的组合方式可使交叉反应最小化。C3 - Fpz/C4 - Fpz TcMEP刺激可能是在某些术中神经监测病例中可采用的一种潜在工具。