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Preoperative magnetic source imaging for brain tumor surgery: a quantitative comparison with intraoperative sensory and motor mapping.

机译:脑肿瘤手术的术前磁源成像:与术中感觉和运动作图的定量比较。

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OBJECT: The aim of this study was to compare quantitatively the methods of preoperative magnetic source (MS) imaging and intraoperative electrophysiological cortical mapping (ECM) in the localization of sensorimotor cortex in patients with intraaxial brain tumors. METHODS: Preoperative magnetoencephalography (MEG) was performed while patients received painless tactile somatosensory stimulation of the lip, hand, and foot. The early somatosensory evoked field was modeled using a single equivalent current dipole approach to estimate the spatial source of the response. Three-dimensional magnetic resonance image volume data sets with fiducials were coregistered with the MEG recordings to form the MS image. These individualized functional brain maps were integrated into a neuronavigation system. Intraoperative mapping of somatosensory and/or motor cortex was performed and sites were compared. In two subgroups of patients we compared intraoperative somatosensory and motor stimulation sites with MS imaging-based somatosensory localizations. Mediolateral projection of the MS imaging source localizations to the cortical surface reduced systematic intermodality discrepancies. The distance between two corresponding points determined using MS imaging and ECM was 12.5 +/- 1.3 mm for somatosensory-somatosensory and 19 +/- 1.3 mm for somatosensory-motor comparisons. The observed 6.5 mm increase in site separation was systematically demonstrated in the anteroposterior direction, as expected from actual anatomy. In fact, intraoperative sites at which stimulation evoked the same patient response exhibited a spatial variation of 10.7 +/- 0.7 mm. CONCLUSIONS: Preoperative MS imaging and intraoperative ECM show a favorable degree of quantitative correlation. Thus, MS imaging can be considered a valuable and accurate planning adjunct in the treatment of patients with intraaxial brain tumors.
机译:目的:本研究的目的是定量比较术前磁源(MS)成像和术中电生理皮质标测(ECM)在轴内脑肿瘤患者感觉运动皮层的定位中的方法。方法:术前对患者的嘴唇,手和脚进行无痛触觉体感刺激的脑磁图(MEG)。使用单个等效电流偶极子方法对早期的体感诱发场进行建模,以估计响应的空间来源。将带有基准的三维磁共振图像体数据集与MEG记录共同配准,以形成MS图像。这些个性化的功能性脑图被集成到神经导航系统中。进行了体感和/或运动皮层的术中映射,并比较了部位。在两个亚组的患者中,我们将术中体感和运动刺激部位与基于MS成像的体感定位进行了比较。 MS成像源定位到皮层表面的中外侧投影减少了系统的联运方式差异。使用MS成像和ECM确定的两个相应点之间的距离,体感-体感比较为12.5 +/- 1.3 mm,体感-运动比较为19 +/- 1.3 mm。正如实际解剖所预期的那样,在前后方向系统地证明了观察到的6.5 mm的位点分离增加。实际上,刺激引起相同患者反应的术中部位表现出10.7 +/- 0.7 mm的空间变化。结论:术前MS成像和术中ECM表现出良好的定量相关性。因此,MS成像可被认为是治疗轴内脑肿瘤患者的宝贵且准确的计划辅助手段。

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