Wu Zehan, Xie Tao, Yao Lin, Zhang Dingguo, Sheng Xinjun, Farina Dario, Chen Liang, Mao Ying, Zhu Xiangyang
Department of Neurosurgery, Huashan Hospital, Fudan UniversityShanghai, China.
State Key Laboratory of Mechanical System and Vibration, Shanghai Jiao Tong UniversityShanghai, China.
Front Neurosci. 2017 Jun 12;11:326. doi: 10.3389/fnins.2017.00326. eCollection 2017.
We propose electrocorticographic temporal alteration mapping (ETAM) for motor cortex mapping by utilizing movement-related cortical potentials (MRCPs) within the low-frequency band [0.05-3] Hz. This MRCP waveform-based temporal domain approach was compared with the state-of-the-art electrocorticographic frequency alteration mapping (EFAM), which is based on frequency spectrum dynamics. Five patients (two epilepsy cases and three tumor cases) were enrolled in the study. Each patient underwent intraoperative direct electrocortical stimulation (DECS) procedure for motor cortex localization. Moreover, the patients were required to perform simple brisk wrist extension task during awake craniotomy surgery. Cross-validation results showed that the proposed ETAM method had high sensitivity (81.8%) and specificity (94.3%) in identifying sites which exhibited positive DECS motor responses. Moreover, although the sensitivity of the ETAM and EFAM approaches was not significantly different, ETAM had greater specificity compared with EFAM (94.3 vs. 86.1%). These results indicate that for the intraoperative functional brain mapping, ETAM is a promising novel approach for motor cortex localization with the potential to reduce the need for cortical electrical stimulation.
我们提出了皮质电图时间改变映射(ETAM),通过利用低频带[0.05 - 3]Hz内的运动相关皮质电位(MRCPs)来进行运动皮质映射。将这种基于MRCP波形的时域方法与基于频谱动态的最新皮质电图频率改变映射(EFAM)进行了比较。该研究纳入了5名患者(2例癫痫患者和3例肿瘤患者)。每位患者在术中接受了用于运动皮质定位的直接皮质电刺激(DECS)程序。此外,患者在清醒开颅手术期间被要求执行简单的快速腕部伸展任务。交叉验证结果表明,所提出的ETAM方法在识别表现出阳性DECS运动反应的部位时具有高灵敏度(81.8%)和特异性(94.3%)。此外,虽然ETAM和EFAM方法的灵敏度没有显著差异,但与EFAM相比,ETAM具有更高的特异性(94.3%对86.1%)。这些结果表明,对于术中功能性脑图谱绘制,ETAM是一种有前景的用于运动皮质定位的新方法,有可能减少对皮质电刺激的需求。