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Rapid and low-invasive functional brain mapping by realtime visualization of high gamma activity for awake craniotomy

机译:通过实时可视化快速清醒颅骨切开术的高伽玛活动的低侵入性功能性脑图

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For neurosurgery with an awake craniotomy, the critical issue is to set aside enough time to identify eloquent cortices by electrocortical stimulation (ECS). High gamma activity (HGA) ranging between 80 and 120 Hz on electrocorticogram (ECoG) is assumed to reflect localized cortical processing. In this report, we used realtime HGA mapping and functional magnetic resonance imaging (fMRI) for rapid and reliable identification of motor and language functions. Three patients with intra-axial tumors in their dominant hemisphere underwent preoperative fMRI and lesion resection with an awake craniotomy. All patients showed significant fMRI activation evoked by motor and language tasks. After the craniotomy, we recorded ECoG activity by placing subdural grids directly on the exposed brain surface. Each patient performed motor and language tasks and demonstrated realtime HGA dynamics in hand motor areas and parts of the inferior frontal gyrus. Sensitivity and specificity of HGA mapping were 100% compared to ECS mapping in the frontal lobe, which suggested HGA mapping precisely indicated eloquent cortices. The investigation times of HGA mapping was significantly shorter than that of ECS mapping. Specificities of the motor and language-fMRI, however, did not reach 85%. The results of HGA mapping was mostly consistent with those of ECS mapping, although fMRI tended to overestimate functional areas. This novel technique enables rapid and accurate functional mapping.
机译:对于清醒的开颅手术的神经外科来说,关键问题是留出足够的时间通过皮层电刺激(ECS)识别雄辩的皮质。假定皮层电图(ECoG)上80至120 Hz之间的高伽马活性(HGA)反映了局部皮层处理。在此报告中,我们使用了实时HGA映射和功能性磁共振成像(fMRI)来快速,可靠地识别运动和语言功能。 3名占优势半球的轴内肿瘤患者接受了清醒的开颅手术,并进行了术前功能磁共振成像和病变切除。所有患者均显示出运动和语言任务引起的明显的fMRI激活。开颅手术后,我们通过将硬脑膜下栅格直接放在暴露的大脑表面上记录了ECoG活性。每位患者都执行了运动和语言任务,并在手部运动区域和额下回部位实时显示了HGA动态。与额叶中的ECS映射相比,HGA映射的敏感性和特异性为100%,这表明HGA映射可精确显示雄辩的皮层。 HGA映射的调查时间明显短于ECS映射的调查时间。然而,运动和语言功能磁共振成像的特异性未达到85%。 HGA作图的结果与ECS作图的结果基本一致,尽管fMRI往往高估了功能区域。这项新颖的技术可以实现快速而准确的功能映射。

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