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Lateralization of spatial information processing in response monitoring

机译:响应监控中空间信息处理的横向化

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The current study aims at identifying how lateralized multisensory spatial information processing affects response monitoring and action control. In a previous study, we investigated multimodal sensory integration in response monitoring processes using a Simon task. Behavioral and neurophysiologic results suggested that different aspects of response monitoring are asymmetrically and independently allocated to the hemispheres: while efference-copy-based information on the motor execution of the task is further processed in the hemisphere that originally generated the motor command, proprioception-based spatial information is processed in the hemisphere contralateral to the effector. Hence, crossing hands (entering a “foreign” spatial hemifield) yielded an augmented bilateral activation during response monitoring since these two kinds of information were processed in opposing hemispheres. Because the traditional Simon task does not provide the possibility to investigate which aspect of the spatial configuration leads to the observed hemispheric allocation, we introduced a new “double crossed” condition that allows for the dissociation of internal/physiological and external/physical influences on response monitoring processes. Comparing behavioral and neurophysiologic measures of this new condition to those of the traditional Simon task setup, we could demonstrate that the egocentric representation of the physiological effector's spatial location accounts for the observed lateralization of spatial information in action control. The finding that the location of the physical effector had a very small influence on response monitoring measures suggests that this aspect is either less important and/or processed in different brain areas than egocentric physiological information.
机译:当前的研究旨在确定横向多感官空间信息处理如何影响响​​应监视和动作控制。在先前的研究中,我们使用Simon任务调查了反应监测过程中的多峰感觉统合。行为和神经生理学结果表明,响应监控的不同方面不对称且独立地分配给了半球:基于任务复制的基于动作复制的信息将在最初生成运动命令的半球(基于本体感觉)中进一步处理在效应器对侧的半球中处理空间信息。因此,在响应监视期间,交叉双手(进入“外部”空间半场)会产生增强的双边激活,因为这两种信息是在相对的半球中处理的。由于传统的Simon任务无法提供调查空间配置哪个方面导致观察到的半球分配的可能性,因此我们引入了一种新的“双交叉”条件,该条件可以消除内部/生理和外部/物理对响应的影响监控过程。将这种新情况的行为和神经生理措施与传统的Simon任务设置的行为和神经生理措施进行比较,我们可以证明,生理效应器空间位置的以自我为中心的表示解释了动作控制中观察到的空间信息的横向化。物理效应器的位置对反应监测措施的影响很小的发现表明,这方面的重要性不如自我处理和/或在以自我为中心的生理信息不同的大脑区域处理。

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