Role of the medial posterior parietal cortex in orchestrating attention and reaching.

警觉 磁刺激 后顶叶皮质 神经科学 隐蔽的 心理学 认知心理学 运动前皮质 眼球运动 皮质(解剖学) 运动皮层 刺激 医学 解剖 语言学 哲学 精神科
作者
Rossella Breveglieri,Riccardo Brandolani,Stefano Diomedi,Markus Lappe,Claudio Galletti,Patrizia Fattori
出处
期刊:The Journal of Neuroscience [Society for Neuroscience]
卷期号:: e0659242024-e0659242024 被引量:2
标识
DOI:10.1523/jneurosci.0659-24.2024
摘要

The interplay between attention, alertness and motor planning is crucial for our manual interactions. To investigate the neural bases of this interaction, and challenging the views that attention cannot be disentangled from motor planning, we instructed human volunteers of both sexes to plan and execute reaching movements while attending to the target, while attending elsewhere, or without constraining attention. We recorded reaction times to reach initiation and pupil diameter and interfered with the functions of the medial posterior parietal cortex (mPPC) with online repetitive transcranial magnetic stimulation to test the causal role of this cortical region in the interplay between spatial attention and reaching. We found that mPPC plays a key role in the spatial association of reach planning and covert attention. Moreover, we have found that alertness, measured by pupil size, is a good predictor of the promptness of reach initiation only if we plan a reach to attended targets, and mPPC is causally involved in this coupling. Different from previous understanding, we suggest that mPPC is neither involved in reach planning per se , nor in sustained covert attention in absence of a reach plan, but it is specifically involved in attention functional to reaching. Significance Statement Attention is required to perform dexterous arm movements. In this work we show the neural bases of the interplay between attention and reaching preparation, with the aim to provide information useful to address effective rehabilitation strategies to treat functional deficits observed in attention-related diseases. We discuss how brain areas are involved in orchestrating attention and reaching by signaling the alignment of their spatial coordinates. Moreover, we found that pupil size changes during reach preparation are related to reach initiation, suggesting a coordination between vigilance and reach promptness when preparing a reach to attended targets.

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