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首页> 外文期刊>Journal of Cognitive Neuroscience >The Cortex-based Alignment Approach to TMS Coil Positioning
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The Cortex-based Alignment Approach to TMS Coil Positioning

机译:基于皮质的TMS线圈定位对准方法

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TMS allows noninvasive manipulation of brain activity in healthy participants and patients. The effectiveness of TMS experiments critically depends on precise TMS coil positioning, which is best for most brain areas when a frameless stereotactic system is used to target activation foci based on individual fMRI data. From a purely scientific perspective, individual fMRI-guided TMS is thus the method of choice to ensure optimal TMS efficiency. Yet, from a more practical perspective, such individual functional data are not always available, and therefore alternative TMS coil positioning approaches are often applied, for example, based on functional group data reported in Talairach coordinates. We here propose a novel method for TMS coil positioning that is based on functional group data, yet only requires individual anatomical data. We used cortex-based alignment (CBA) to transform individual anatomical data to an atlas brain that includes probabilistic group maps of two functional regions (FEF and hMT+/V5). Then, these functional group maps were back-transformed to the individual brain anatomy, preserving functional–anatomical correspondence. As a proof of principle, the resulting CBA-based functional targets in individual brain space were compared with individual FEF and hMT+/V5 hotspots as conventionally localized with individual fMRI data and with targets based on Talairach coordinates as commonly done in TMS research in case only individual anatomical data are available. The CBA-based approach significantly improved localization of functional brain areas compared with traditional Talairach-based targeting. Given the widespread availability of CBA schemes and preexisting functional group data, the proposed procedure is easy to implement and at no additional measurement costs. However, the accuracy of individual fMRI-guided TMS remains unparalleled, and the CBA-based approach should only be the method of choice when individual functional data cannot be obtai- ed or experimental factors argue against it.
机译:TMS可以对健康参与者和患者的脑部活动进行无创操作。 TMS实验的有效性主要取决于精确的TMS线圈定位,当无框立体定向系统用于基于单个fMRI数据来定位激活灶时,这对于大多数大脑区域而言是最佳的。从纯科学的角度来看,因此单独的功能磁共振成像指导的TMS是确保最佳TMS效率的选择方法。然而,从更实际的角度来看,此类个别功能数据并不总是可用,因此,例如,基于在Talairach坐标中报告的功能组数据,经常采用替代性TMS线圈定位方法。我们在此提出了一种基于功能组数据的TMS线圈定位新方法,但只需要单独的解剖数据。我们使用基于皮质的对齐方式(CBA)将单个解剖学数据转换为包含两个功能区域(FEF和hMT + / V5)的概率群图的图集大脑。然后,将这些功能组图重新转换为个体的大脑解剖结构,并保留功能与解剖结构的对应关系。作为原理上的证明,将在单个大脑空间中基于CBA的功能目标与常规定位于单个fMRI数据的传统FEF和hMT + / V5热点以及基于Talairach坐标的目标进行了比较,这在TMS研究中通常仅在这种情况下进行个别解剖数据可用。与传统的基于Talairach的靶向相比,基于CBA的方法显着改善了功能性大脑区域的定位。鉴于CBA方案和现有功能组数据的广泛可用性,建议的过程易于实施,并且没有额外的测量成本。但是,单个fMRI指导的TMS的准确性仍无与伦比,基于CBA的方法仅应在无法获取单个功能数据或实验因素对此提出反对时成为首选方法。

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