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后顶叶皮层在棱镜适应对时间间隔表示的影响中的作用。

The role of posterior parietal cortices on prismatic adaptation effects on the representation of time intervals.

机构信息

Fondazione "Santa Lucia" IRCCS, 00179 Roma, Italy; Department of Psychology, University of Bologna, 40127 Bologna, Italy.

出版信息

Neuropsychologia. 2013 Nov;51(13):2825-32. doi: 10.1016/j.neuropsychologia.2013.08.006. Epub 2013 Aug 13.

Abstract

Previous studies provided evidence of an ascending left-to-right spatial representation of time durations by using a technique affecting high levels of spatial cognition, i.e. prismatic adaptation (PA). Indeed, PA that induced a leftward aftereffect distorted time representation toward an underestimation, while PA that induced a rightward aftereffect distorted time representation toward an overestimation. The present study advances previous findings on the effects of PA on time by investigating the neural basis subtending these effects. We focused on the posterior parietal cortex (PPC) since it is involved in the PA procedure and also in the formulation of the spatial representation of time. We conducted two experiments where right-handed healthy adults were submitted to a time task, before and after PA, that could induce a leftward or rightward aftereffect. Repetitive TMS (rTMS) was used to inhibit the left or right PPC before PA administration. In a first experiment the time task consisted of reproducing an half duration (time bisection task) by pressing a key and the participants responded and adapted to prisms with their right hand. In a second experiment the time task consisted of reproducing a whole duration (time reproduction task) by pressing a key and the participants responded and adapted to prisms with their left hand. We found an abolition of the effects of PA on time when rTMS was delivered on the left and not on the right PPC, regardless of the task and moreover, when the participants responded and adapted with the right hand and also with the left hand. This result suggests a direct involvement of the left PPC in the interactive process, between spatial modulations induced by PA and the spatial representation of time, that does not depend on motor processes. This study provides useful results for future investigations on the neural mechanisms subtending the effects of PA on spatial representations.

摘要

先前的研究提供了证据,证明通过使用一种影响高水平空间认知的技术,即棱镜适应(PA),时间的持续时间呈现出从左到右的上升空间表示。事实上,导致左后效的 PA 扭曲了时间表示,使其低估,而导致右后效的 PA 扭曲了时间表示,使其高估。本研究通过研究支持这些效应的神经基础,推进了关于 PA 对时间影响的先前发现。我们专注于后顶叶皮层(PPC),因为它参与了 PA 过程,也参与了时间的空间表示的形成。我们进行了两项实验,其中右利手的健康成年人在 PA 之前和之后进行了一项时间任务,该任务可能导致左后效或右后效。重复经颅磁刺激(rTMS)用于在 PA 给药前抑制左或右 PPC。在第一个实验中,时间任务包括通过按下一个键来复制一半的持续时间(时间二分任务),并且参与者用右手做出反应并适应棱镜。在第二个实验中,时间任务包括通过按下一个键来复制整个持续时间(时间再现任务),并且参与者用左手做出反应并适应棱镜。我们发现,当 rTMS 施加于左而不是右 PPC 时,PA 对时间的影响会被消除,无论任务如何,而且当参与者用右手和左手做出反应并适应时,也会被消除。这一结果表明,左 PPC 直接参与了 PA 诱导的空间调制与时间的空间表示之间的相互作用过程,而这种相互作用过程不依赖于运动过程。这项研究为未来关于 PA 对空间表示的影响的神经机制的研究提供了有用的结果。

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