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如何在模拟中纳入经颅磁刺激(TMS)反应的变异性:一个言语映射案例研究

How to include the variability of TMS responses in simulations: a speech mapping case study.

作者信息

De Geeter N, Lioumis P, Laakso A, Crevecoeur G, Dupré L

机构信息

Department of Electrical Energy, Systems and Automation, Ghent University, Belgium.

出版信息

Phys Med Biol. 2016 Nov 7;61(21):7571-7585. doi: 10.1088/0031-9155/61/21/7571. Epub 2016 Oct 7.

Abstract

When delivered over a specific cortical site, TMS can temporarily disrupt the ongoing process in that area. This allows mapping of speech-related areas for preoperative evaluation purposes. We numerically explore the observed variability of TMS responses during a speech mapping experiment performed with a neuronavigation system. We selected four cases with very small perturbations in coil position and orientation. In one case (E) a naming error occurred, while in the other cases (NE) the subject appointed the images as smoothly as without TMS. A realistic anisotropic head model was constructed of the subject from T1-weighted and diffusion-weighted MRI. The induced electric field distributions were computed, associated to the coil parameters retrieved from the neuronavigation system. Finally, the membrane potentials along relevant white matter fibre tracts, extracted from DTI-based tractography, were computed using a compartmental cable equation. While only minor differences could be noticed between the induced electric field distributions of the four cases, computing the corresponding membrane potentials revealed different subsets of tracts were activated. A single tract was activated for all coil positions. Another tract was only triggered for case E. NE induced action potentials in 13 tracts, while NE stimulated 11 tracts and NE one. The calculated results are certainly sensitive to the coil specifications, demonstrating the observed variability in this study. However, even though a tract connecting Broca's with Wernicke's area is only triggered for the error case, further research is needed on other study cases and on refining the neural model with synapses and network connections. Case- and subject-specific modelling that includes both electromagnetic fields and neuronal activity enables demonstration of the variability in TMS experiments and can capture the interaction with complex neural networks.

摘要

当经颅磁刺激(TMS)作用于特定的皮质部位时,它可以暂时干扰该区域正在进行的神经活动过程。这使得能够绘制与言语相关的区域,用于术前评估。我们通过数值方法探究了在使用神经导航系统进行的言语映射实验中观察到的TMS反应变异性。我们选择了4例线圈位置和方向扰动非常小的病例。在其中1例(E)中出现了命名错误,而在其他病例(NE)中,受试者命名图像的过程与未施加TMS时一样顺畅。根据受试者的T1加权和扩散加权磁共振成像(MRI)构建了逼真的各向异性头部模型。计算了与从神经导航系统获取的线圈参数相关的感应电场分布。最后,使用房室电缆方程计算了从基于扩散张量成像(DTI)的纤维束成像中提取的相关白质纤维束上的膜电位。虽然在这4例的感应电场分布之间仅能注意到微小差异,但计算相应的膜电位显示激活了不同的纤维束子集。对于所有线圈位置,有一条纤维束被激活。另一条纤维束仅在病例E中被触发。NE组在13条纤维束中诱发了动作电位,而NE组刺激了11条纤维束,NE组刺激了1条纤维束。计算结果肯定对线圈规格敏感,这证明了本研究中观察到的变异性。然而,尽管只有在错误病例中连接布洛卡区和韦尼克区的一条纤维束被触发,但还需要对其他研究病例以及用突触和网络连接来完善神经模型进行进一步研究。包括电磁场和神经元活动的病例和受试者特异性建模能够证明TMS实验中的变异性,并能够捕捉与复杂神经网络的相互作用。

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