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Functional MRI of dynamic judgments of spatial extent.

机译:功能性MRI动态判断空间范围。

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Judgments of spatial relationships are often made when the object or observer is moving. Behaviourally, there is evidence that these 'dynamic' judgments of spatial extent differ from static judgments. For example, in one of the simplest probes of spatial extent--the line bisection task--the typically observed leftward bisection bias of about 1% of line length is increased considerably after left-to-right scanning. Here we used fMRI to examine whether or not different brain regions would be involved in static and dynamic judgments of spatial extent. Dynamic (i.e., scan the line prior to bisecting) relative to static ocular bisections (i.e., line bisection by fixation) produced activations in the cuneus and precuneus bilaterally, with reduced activation relative to static judgments observed in the supramarginal gyrus bilaterally. Dynamic bisections relative to a control condition (i.e., scan a line and then saccade to a transection mark) produced activations in the precuneus/superior parietal lobe bilaterally and left cerebellum. Only marginal evidence was found for different activations due to the initial scan direction of the line. These results highlight the fact that dynamic judgments of spatial extent use distinct brain regions from those employed to make static judgments, and the same mechanism is employed independent of scan direction. It may be the case that velocity processing and time estimates are integrated primarily in the cuneus and precuneus to produce estimates of spatial extent under dynamic scanning conditions.
机译:当对象或观察者移动时,通常会做出空间关系的判断。行为上,有证据表明这些空间范围的“动态”判断与静态判断不同。例如,在最简单的空间范围探测器之一(线平分任务)中,从左向右扫描后,通常观察到的大约线长的1%的向左平分偏差会大大增加。在这里,我们使用功能磁共振成像检查不同的大脑区域是否会参与空间范围的静态和动态判断。相对于静态眼部切开术(即通过固定的线切开术)而言,动态(即在平分之前扫描线)会在两侧的楔骨和前突中产生激活,相对于在双侧上颌上回中观察到的静态判断而言,激活减少了。相对于对照条件的动态二等分(即先扫描一条线,然后扫视至横断标记)会在两侧的前突/上顶叶和左小脑产生激活。由于线的初始扫描方向,仅发现了边缘激活不同的证据。这些结果凸显了这样一个事实,即空间范围的动态判断所使用的大脑区域与静态判断所使用的大脑区域不同,并且采用相同的机制而与扫描方向无关。可能是这样的情况,即速度处理和时间估计主要集成在楔骨和足神经中,以在动态扫描条件下产生空间范围的估计。

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