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Editors Choice: Global motion perception deficits in autism are reflected as early as primary visual cortex

机译:编辑推荐:自闭症的全球运动知觉缺陷早在主要视觉皮层就得到了反映

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摘要

Individuals with autism are often characterized as ‘seeing the trees, but not the forest’—attuned to individual details in the visual world at the expense of the global percept they compose. Here, we tested the extent to which global processing deficits in autism reflect impairments in (i) primary visual processing; or (ii) decision-formation, using an archetypal example of global perception, coherent motion perception. In an event-related functional MRI experiment, 43 intelligence quotient and age-matched male participants (21 with autism, age range 15–27 years) performed a series of coherent motion perception judgements in which the amount of local motion signals available to be integrated into a global percept was varied by controlling stimulus viewing duration (0.2 or 0.6 s) and the proportion of dots moving in the correct direction (coherence: 4%, 15%, 30%, 50%, or 75%). Both typical participants and those with autism evidenced the same basic pattern of accuracy in judging the direction of motion, with performance decreasing with reduced coherence and shorter viewing durations. Critically, these effects were exaggerated in autism: despite equal performance at the long duration, performance was more strongly reduced by shortening viewing duration in autism (P < 0.015) and decreasing stimulus coherence (P < 0.008). To assess the neural correlates of these effects we focused on the responses of primary visual cortex and the middle temporal area, critical in the early visual processing of motion signals, as well as a region in the intraparietal sulcus thought to be involved in perceptual decision-making. The behavioural results were mirrored in both primary visual cortex and the middle temporal area, with a greater reduction in response at short, compared with long, viewing durations in autism compared with controls (both P < 0.018). In contrast, there was no difference between the groups in the intraparietal sulcus (P > 0.574). These findings suggest that reduced global motion perception in autism is driven by an atypical response early in visual processing and may reflect a fundamental perturbation in neural circuitry.
机译:自闭症患者通常被描述为“只见树木,却看不见森林”,这会以视觉世界中的个体细节为代价,而牺牲了他们的整体认知。在这里,我们测试了自闭症的整体加工缺陷在多大程度上反映了(i)主要视觉加工的损伤;或(ii)使用整体感知,连贯运动感知的原型示例进行决策。在一项与事件相关的功能性MRI实验中,有43名智商和年龄匹配的男性参与者(21名自闭症患者,年龄15-27岁)进行了一系列连贯的运动感知判断,其中整合了局部运动信号的数量。通过控制刺激的观察持续时间(0.2或0.6 s)和沿正确方向移动的点的比例(相干性:4%,15%,30%,50%或75%),可以改变整体感知力。无论是典型参与者还是自闭症患者,在判断运动方向时都表现出相同的基本准确性模式,其表现随着相干性的降低和观看时间的缩短而降低。至关重要的是,这些影响在自闭症中被夸大了:尽管在长时间内表现相同,但通过缩短自闭症的观看持续时间(P <0.015)和降低刺激连贯性(P <0.008),性能会大大降低。为了评估这些影响的神经相关性,我们集中在主要视觉皮层和颞中部区域的响应(在运动信号的早期视觉处理中起关键作用)以及顶壁沟中被认为参与感知决策的区域,制造。行为结果反映在主要视觉皮层和颞中部区域,与对照组相比,自闭症的观察时间长,与短时的响应相比,短时响应的降低更大(均P <0.018)。相反,顶内沟的各组之间没有差异(P> 0.574)。这些发现表明,自闭症患者整体运动知觉降低是由视觉处理早期的非典型反应引起的,并且可能反映了神经回路的基本扰动。

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