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首页> 外文期刊>Journal of Neuroscience Methods >Stimulating deep cortical structures with the batwing coil: How to determine the intensity for transcranial magnetic stimulation using coil-cortex distance
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Stimulating deep cortical structures with the batwing coil: How to determine the intensity for transcranial magnetic stimulation using coil-cortex distance

机译:蝙蝠翼线圈刺激深层皮质结构:如何使用线圈-皮质距离确定经颅磁刺激的强度

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Transcranial magnetic stimulation (TMS) is increasingly used in cognitive neuroscience to probe non-motor cortical regions. A key question for such studies is the choice of stimulation intensity. Early studies used a simple metric such as 115% of motor threshold (MT) for non-motor regions; where MT is the stimulation intensity required to elicit a particular amplitude of motor evoked potential or visible muscle twitch when the coil is placed over primary motor cortex. Recently, however, it was demonstrated that this simple metric for stimulation of non-motor regions is inadequate - it could lead to over or under-stimulation depending on the distance between the coil and the cortex. Instead, a method was developed to scale the motor threshold based on coil-cortex distance, at least for standard figure-of-eight stimulating coils. Here we validate the same method for a 'batwing coil', which is designed to stimulate deeper cortical structures such as the medial frontal cortex. We modulated coil-cortex distance within-participant by inserting spacers of different thickness between coil and scalp. We then measured MT at each spacer. We show that for every millimeter between coil and scalp an additional 1.4% of TMS output is required to induce an equivalent level of brain stimulation at the motor cortex. Using this parameter we describe a linear function to adjust MT for future studies of non-motor regions-of-interest using the batwing coil. This is the first study to demonstrate the effects of coil-cortical distance on stimulation efficiency via a monophasic system using a batwing coil.
机译:经颅磁刺激(TMS)在认知神经科学中越来越多地用于探测非运动皮层区域。这些研究的关键问题是刺激强度的选择。早期的研究使用了简单的指标,例如非运动区域的运动阈值(MT)的115%。其中MT是当线圈置于初级运动皮层上方时引起特定幅度的运动诱发电位或可见肌肉抽搐所需的刺激强度。然而,最近,已经证明,用于刺激非运动区域的这种简单度量是不够的-根据线圈和皮质之间的距离,它可能导致过度刺激或刺激不足。取而代之的是,开发了一种方法,至少基于标准的八字形刺激线圈,可以根据线圈皮质距离来缩放电机阈值。在这里,我们验证了“蝙蝠线圈”的相同方法,该方法旨在刺激更深的皮质结构,例如内侧额叶皮层。我们通过在线圈和头皮之间插入不同厚度的垫片来调节参与者的线圈皮质距离。然后,我们在每个垫片处测量MT。我们显示,对于线圈和头皮之间的每毫米,还需要1.4%的TMS输出,以在运动皮层上诱发同等水平的大脑刺激。使用该参数,我们描述了一种线性函数,用于调整蝙蝠的MT,以便将来使用蝙蝠翼形线圈来研究非电机感兴趣的区域。这是第一个研究证明通过使用蝙蝠翼形线圈的单相系统,线圈皮质距离对刺激效率的影响。

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