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Left insular cortex and left SFG underlie prismatic adaptation effects on time perception: Evidence from fMRI

机译:左小岛皮层和左SFG对时间知觉具有棱柱形适应效应:来自功能磁共振成像的证据

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Prismatic adaptation (PA) has been shown to affect left-to-right spatial representations of temporal durations. A leftward aftereffect usually distorts time representation toward an underestimation, while rightward aftereffect usually results in an overestimation of temporal durations. Here, we used functional magnetic resonance imaging (fMRI) to study the neural mechanisms that underlie PA effects on time perception. Additionally, we investigated whether the effect of PA on time is transient or stable and, in the case of stability, which cortical areas are responsible of its maintenance.Functional brain images were acquired while participants (n = 17) performed a time reproduction task and a control-task before, immediately after and 30 min after PA inducing a leftward aftereffect, administered outside the scanner.The leftward aftereffect induced an underestimation of time intervals that lasted for at least 30 min. The left anterior insula and the left superior frontal gyrus showed increased functional activation immediately after versus before PA in the time versus the control-task, suggesting these brain areas to be involved in the executive spatial manipulation of the representation of time. The left middle frontal gyrus showed an increase of activation after 30 min with respect to before PA. This suggests that this brain region may play a key role in the maintenance of the PA effect over time.
机译:棱镜适应(PA)已显示影响时间长度的从左到右的空间表示。左后效应通常会使时间表示偏向低估,而右后效应通常会导致对时间长度的高估。在这里,我们使用功能磁共振成像(fMRI)研究了PA对时间感知的影响的神经机制。此外,我们调查了PA对时间的影响是暂时的还是稳定的,并且在稳定性的情况下,由哪个皮质区域负责其维护。在参与者(n = 17)执行时间再现任务时获取了功能性大脑图像。在扫描仪外部实施PA诱导左后效应之前,之后和30分钟后执行控制任务。左后效应导致持续至少30分钟的时间间隔低估。与控制任务相比,左前岛和左上额叶回在PA后立即显示出比控制任务更早的功能激活,表明这些大脑区域参与了时间表示的执行空间操纵。相对于PA之前,左中额回在30分钟后显示出增加的激活。这表明随着时间的流逝,该大脑区域可能在维持PA效应中起关键作用。

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