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Visual tracking and motion analysis in autism: Severity and laterality of sensory and sensorimotor deficits.

机译:自闭症的视觉跟踪和运动分析:感觉和感觉运动缺陷的严重程度和偏侧性。

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Oculomotor studies in autism provide novel strategies for evaluating the functional integrity of multiple brain areas because the relevant circuitry has been well established. Visual pursuit of high-functioning autistic individuals and IQ and age matched healthy participants was compared using pure ramp, step ramp and oscillating target tasks. Autistic individuals had comparable pursuit latency to healthy individuals, but demonstrated slower sustained pursuit when tracking both oscillating and ramp targets. The deficit is consistent with a disturbance in the frontocerebellar loop, and the deficit was larger in older participants indicating a maturational failure of this particular circuitry. Additionally, initial “open loop” pursuit was slower in autistic individuals only when targets were moving into the right visual field. Because of the high reliance on sensory information in the open-loop pursuit, visual motion processing in individuals with autism was also examined, but no impairment was found in velocity discrimination and the perception of motion-defined forms. Thus, the unilateral pursuit deficits are likely to reflect problem in transferring information from the left posterior sensory areas to motor areas rather than sensory disturbances.; Because pursuit eye movements place high demands on coordination of sensory, cognitive and motor processes subserved by a widely distributed brain system, visual pursuit deficits in autism indicate disturbances in interregional communication in the brain to meet the demands of the pursuit tasks. This type of disturbance seems particularly pronounced in the frontocerebellar loop and left frontoparietal connections reflected in slower pursuit of predictable.; targets and poor initial “open-loop” pursuit when targets moved into the right visual field. The current findings suggest intact visual motion processing in autism that is mediated by a relatively localized mechanism at the cost of more global and integrative processing that depends on the coordination of activities in many brain areas, such as visual pursuit. This performance profile is consistent with the local over global information processing style that is proposed by the central coherence theory of autism.
机译:自闭症的动眼研究为评估多个大脑区域的功能完整性提供了新颖的策略,因为相关电路已被很好地建立。使用纯坡道,阶梯坡道和振荡目标任务,比较了高功能自闭症患者和智商与年龄匹配的健康参与者的视觉追求。自闭症患者的追踪潜伏期与健康个体相似,但是在跟踪振荡目标和斜向目标时表现出较慢的持续追踪。该缺陷与额小脑环路的紊乱相一致,并且老年参与者的缺陷较大,表明该特定电路的成熟衰竭。此外,只有当目标进入正确的视野时,自闭症患者的初始“开环”追求才较慢。由于在开环追踪中高度依赖于感官信息,因此还检查了自闭症患者的视觉运动过程,但在速度辨别和运动定义形式的感知方面未发现障碍。因此,单方面的追踪缺陷很可能反映了将信息从左后感觉区传递到运动区而不是感觉障碍的问题。由于追逐眼睛的运动对广泛分布的大脑系统所支持的感觉,认知和运动过程的协调性提出了很高的要求,因此自闭症的视觉追逐缺陷表明大脑中的区域间交流受到干扰,无法满足追逐任务的需求。这种类型的干扰在小脑前额环中尤为明显,而左前额叶连接则反映在对可预测性的缓慢追求中。目标进入正确的视野时,目标和最初的“开环”追求不佳。目前的发现表明,自闭症中完整的视觉运动加工是由相对局部的机制介导的,但其代价是更全面和更全面的加工,而这种加工取决于许多大脑区域活动的协调,例如视觉追求。此性能配置文件与自闭症中心一致性理论提出的局部全局信息处理风格一致。

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