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Improvements of sensorimotor processes during action cascading associated with changes in sensory processing architecture–insights from sensory deprivation

机译:动作过程中感觉运动过程的改进级联与来自感觉丧失感觉处理体系结构的见解变化相关

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In most everyday situations sensorimotor processes are quite complex because situations often require to carry out several actions in a specific temporal order; i.e. one has to cascade different actions. While it is known that changes to stimuli affect action cascading mechanisms, it is unknown whether action cascading changes when sensory stimuli are not manipulated, but the neural architecture to process these stimuli is altered. In the current study we test this hypothesis using prelingually deaf subjects as a model to answer this question. We use a system neurophysiological approach using event-related potentials (ERPs) and source localization techniques. We show that prelingually deaf subjects show improvements in action cascading. However, this improvement is most likely not due to changes at the perceptual (P1-ERP) and attentional processing level (N1-ERP), but due to changes at the response selection level (P3-ERP). It seems that the temporo-parietal junction (TPJ) is important for these effects to occur, because the TPJ comprises overlapping networks important for the processing of sensory information and the selection of responses. Sensory deprivation thus affects cognitive processes downstream of sensory processing and only these seem to be important for behavioral improvements in situations requiring complex sensorimotor processes and action cascading.
机译:在大多数日常情况下,感官电流器流程非常复杂,因为情况通常需要以特定的时间顺序执行多个动作;即一个人必须划分不同的行动。虽然已知对刺激的变化影响动作级联机构,但是在不被操纵感觉刺激时,尚不是动作级联变化的变化,而是改变处理这些刺激的神经结构。在目前的研究中,我们使用预期的聋人进行测试这个假设作为一个模型来回答这个问题。我们使用与事件相关的电位(ERP)和源本地化技术使用系统神经生理方法。我们展示了逆时间聋人主题表明行动级联的改进。然而,这种改进很可能不是由于感知(P1-ERP)和注意力处理级别(N1-ERP)的变化,而是由于响应选择级别(P3-ERP)的变化。似乎,颞旁边的结(TPJ)对于这些效果来说是重要的,因为TPJ包括重叠网络,用于处理感觉信息和响应的选择。因此,感官剥夺影响感觉处理下游的认知过程,并且只有这些似乎对需要复杂的感觉电机工艺和动作级联的情况的行为改进很重要。

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