Suppr超能文献

反应偏差揭示了大脑两半球抑制性网络在运动准备和执行中的作用。

Response bias reveals the role of interhemispheric inhibitory networks in movement preparation and execution.

机构信息

Sensorimotor Neuroscience and Ageing Research Group, School of Psychological Sciences, College of Health and Medicine, University of Tasmania, Hobart, Australia.

Sensorimotor Neuroscience and Ageing Research Group, School of Psychological Sciences, College of Health and Medicine, University of Tasmania, Hobart, Australia.

出版信息

Neuropsychologia. 2022 Jan 28;165:108120. doi: 10.1016/j.neuropsychologia.2021.108120. Epub 2021 Dec 14.

Abstract

Human movement is influenced by various cognitive processes, such as bias, that dynamically shape competing movement representations. However, the neurophysiological mechanisms underlying the effects of bias on movement selection across the lifespan remains poorly understood. Healthy young (n = 21) and older (n = 20) adults completed a choice reaction-time task necessitating left- or right-hand responses to imperative stimuli (IS). Response bias was manipulated via a cue that informed participants a particular response was 70% likely (i.e., the IS was either congruent, or incongruent, with the cue); biasing was either fixed for blocks of trials (block-wise bias) or varied from trial-to-trial (trial-wise bias). As well as assessing the behavioural manifestations of bias, we used transcranial magnetic stimulation to determine changes in corticospinal excitability (CSE) and short- and long-interval interhemispheric inhibition (SIHI, LIHI) during movement preparation and execution. Participants responded more quickly, and accurately, in congruent compared to incongruent trials. CSE decreases occurred in both hands following the cue, consistent with the 'inhibition for impulse control' hypothesis of preparatory inhibition. In contrast, IHI modulations occurred in a hand-specific manner. Greater SIHI was observed during movement preparation in the hand biased away from, compared to the hand biased towards, the cue; furthermore, greater SIHI was observed during movement execution in the hand biased towards the cue when it was not required to respond (i.e., incongruent trial) compared to when it was required to respond (congruent trial). Additionally, during the movement preparation period, the LIHI ratio of the hand biased towards, compared to the hand biased away from, the cue was greatest when the cue varied trial-by-trial. Overall, the IHI results provide support for the 'inhibition for competition resolution' hypothesis, with hand specific modulation of inhibition during movement preparation and execution.

摘要

人的运动受到各种认知过程的影响,如偏差,这些过程动态地塑造了相互竞争的运动表现。然而,偏差对整个生命周期中运动选择的影响的神经生理机制仍知之甚少。健康的年轻(n=21)和老年(n=20)成年人完成了一项需要对强制性刺激(IS)做出左手或右手反应的选择反应时任务。通过一个提示来操纵反应偏差,告知参与者特定的反应有 70%的可能性(即,IS 与提示一致或不一致);偏差要么在试验块中固定(块方式偏差),要么从试验到试验变化(试验方式偏差)。除了评估偏差的行为表现外,我们还使用经颅磁刺激来确定运动准备和执行过程中皮质脊髓兴奋性(CSE)以及短和长间隔内半球间抑制(SIHI、LIHI)的变化。与不一致的试验相比,参与者在一致的试验中反应更快、更准确。在提示后,双手的 CSE 都会降低,这与准备抑制的“冲动控制抑制”假说一致。相比之下,IHI 的调制以手为单位发生。与提示偏向的手相比,在远离提示的手的运动准备期间观察到更大的 SIHI;此外,在不需要响应(即不一致的试验)时,与需要响应(一致的试验)相比,在提示偏向的手的运动执行期间观察到更大的 SIHI。此外,在运动准备期间,与提示偏向的手相比,与提示偏离的手的 LIHI 比值在提示随试验变化时最大。总的来说,IHI 结果支持“竞争解决抑制”假说,在运动准备和执行期间,抑制具有手特异性的调制。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验