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在双手有意切换敲击模式过程中,稳定性依赖的行为和皮质电活动的重组。

Stability-dependent behavioural and electro-cortical reorganizations during intentional switching between bimanual tapping modes.

机构信息

Université de Toulouse, UPS, LAPMA, Toulouse, France.

出版信息

Neurosci Lett. 2010 Oct 11;483(2):118-22. doi: 10.1016/j.neulet.2010.07.074. Epub 2010 Aug 3.

Abstract

This study investigated behavioural and electro-cortical reorganizations accompanying intentional switching between two distinct bimanual coordination tapping modes (In-phase and Anti-phase) that differ in stability when produced at the same movement rate. We expected that switching to a less stable tapping mode (In-to-Anti switching) would lead to larger behavioural perturbations and require supplementary neural resources than switching to a more stable tapping mode (Anti-to-In switching). Behavioural results confirmed that the In-to-Anti switching lasted longer than the Anti-to-In switching. A general increase in attention-related neural activity was found at the moment of switching for both conditions. Additionally, two condition-dependent EEG reorganizations were observed. First, a specific increase in cortico-cortical coherence appeared exclusively during the In-to-Anti switching. This result may reflect a strengthening in inter-regional communication in order to engage in the subsequent, less stable, tapping mode. Second, a decrease in motor-related neural activity (increased beta spectral power) was found for the Anti-to-In switching only. The latter effect may reflect the interruption of the previous, less stable, tapping mode. Given that previous results on spontaneous Anti-to-In switching revealing an inverse pattern of EEG reorganization (decreased beta spectral power), present findings give new insight on the stability-dependent neural correlates of intentional motor switching.

摘要

本研究旨在探讨在相同运动速度下,两种不同的双手协调敲击模式(同相和反相)之间进行有意切换时,伴随的行为和皮质电重新组织。我们预计,切换到稳定性较差的敲击模式(由同相切换到反相)会比切换到更稳定的敲击模式(由反相切换到同相)产生更大的行为干扰,并需要更多的神经资源。行为结果证实,由同相切换到反相的持续时间长于由反相切换到同相的持续时间。两种条件下,在切换时都发现了与注意力相关的神经活动普遍增加。此外,还观察到两种与条件相关的 EEG 重组。首先,仅在由同相切换到反相时,出现了皮质间相干性的特定增加。这一结果可能反映了为了进行随后的稳定性较差的敲击模式,区域间通讯的加强。其次,仅在由反相切换到同相时,发现了与运动相关的神经活动减少(β频带功率增加)。后一种效应可能反映了先前稳定性较差的敲击模式的中断。鉴于先前关于自发由反相切换到同相的研究结果揭示了 EEG 重组的相反模式(β频带功率降低),本研究结果为意图运动切换的与稳定性相关的神经相关性提供了新的见解。

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