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Differences in high-definition transcranial direct current stimulation over the motor hotspot versus the premotor cortex on motor network excitability

机译:高清经颅直流刺激对电机热点的差异与马达网络兴奋性的热热皮层

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The effectiveness of transcranial direct current stimulation (tDCS) placed over the motor hotspot (thought to represent the primary motor cortex (M1)) to modulate motor network excitability is highly variable. The premotor cortex-particularly the dorsal premotor cortex (PMd)-may be a promising alternative target to reliably modulate motor excitability, as it influences motor control across multiple pathways, one independent of M1 and one with direct connections to M1. This double-blind, placebo-controlled preliminary study aimed to differentially excite motor and premotor regions using high-definition tDCS (HD-tDCS) with concurrent functional magnetic resonance imaging (fMRI). HD-tDCS applied over either the motor hotspot or the premotor cortex demonstrated high inter-individual variability in changes on cortical motor excitability. However, HD-tDCS over the premotor cortex led to a higher number of responders and greater changes in local fMRI-based complexity than HD-tDCS over the motor hotspot. Furthermore, an analysis of individual motor hotspot anatomical locations revealed that, in more than half of the participants, the motor hotspot is not located over anatomical M1 boundaries, despite using a canonical definition of the motor hotspot. This heterogeneity in stimulation site may contribute to the variability of tDCS results. Altogether, these preliminary findings provide new considerations to enhance tDCS reliability.
机译:经颅直流刺激(TDC)放置在电动机热点上的有效性(思想代表主电机皮层(M1))以调制电动机网络兴奋是高度变化的。 Premotor Cortex - 特别是背部热球皮质(PMD) - May是有希望的替代目标,可以可靠地调节电动机兴奋,因为它影响了多种途径的电机控制,一个独立于M1和与M1直接连接的电机控制。这种双盲,安慰剂控制的初步研究旨在使用具有并发功能磁共振成像(FMRI)的高清TDCS(HD-TDC)差异激发电动机和热球区域。在电机热点或Premotor Cortex上施加的HD-TDC在皮质电机兴奋性的变化中显示出高间单独的变化。然而,在Premotor Cortex上的HD-TDCS导致了更高数量的响应者和基于本地FMRI的复杂性的更大变化,而不是电机热点上的HD-TDC。此外,对各个电动机热点解剖位置的分析表明,在超过一半的参与者中,尽管使用马达热点的规范定义,但是在一半以上的参与者中,电动机热点不在解剖学M1边界上。这种在刺激部位中的这种异质性可能导致TDCS结果的可变性。总而言之,这些初步调查结果提供了提高TDC可靠性的新考虑因素。

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