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首页> 外文期刊>BioMed research international >Evaluating the Influence of Motor Control on Selective Attention through a Stochastic Model: The Paradigm of Motor Control Dysfunction in Cerebellar Patient
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Evaluating the Influence of Motor Control on Selective Attention through a Stochastic Model: The Paradigm of Motor Control Dysfunction in Cerebellar Patient

机译:通过随机模型评估运动控制对选择性注意的影响:小脑患者运动控制功能障碍的范例

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摘要

Attention allows us to selectively process the vast amount of information with which we are confronted, prioritizing some aspects of information and ignoring others by focusing on a certain location or aspect of the visual scene. Selective attention is guided by two cognitive mechanisms: saliency of the image (bottom up) and endogenous mechanisms (top down). These two mechanisms interact to direct attention and plan eye movements; then, the movement profile is sent to the motor system, which must constantly update the command needed to produce the desired eye movement. A new approach is described here to study how the eye motor control could influence this selection mechanism in clinical behavior: two groups of patients (SCA2 and late onset cerebellar ataxia LOCA) with well-known problems of motor control were studied; patients performed a cognitively demanding task; the results were compared to a stochastic model based on Monte Carlo simulations and a group of healthy subjects. The analytical procedure evaluated some energy functions for understanding the process. The implemented model suggested that patients performed an optimal visual search, reducing intrinsic noise sources. Our findings theorize a strict correlation between the "optimal motor system" and the "optimal stimulus encoders."
机译:注意力使我们能够选择性地处理我们所面临的大量信息,通过关注视觉场景的某个位置或方面,优先处理某些信息,而忽略其他信息。选择性注意由两种认知机制指导:图像显着性(自下而上)和内源性机制(自上而下)。这两种机制相互作用以引导注意力并计划眼睛运动。然后,将运动曲线发送到电机系统,电机系统必须不断更新产生所需眼睛运动所需的命令。本文介绍了一种新方法来研究眼球运动控制如何影响临床行为中的这种选择机制:研究了两组具有运动控制众所周知问题的患者(SCA2和迟发性小脑共济失调LOCA);患者执行了一项认知要求很高的任务;将结果与基于蒙特卡洛模拟和一组健康受试者的随机模型进行比较。分析程序评估了一些能量函数以了解过程。实施模型建议患者进行最佳视觉搜索,减少内在的噪声源。我们的发现在理论上将“最佳运动系统”与“最佳刺激编码器”之间建立了严格的相关性。

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