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首页> 外文期刊>Journal of Cognitive Neuroscience >Inversion of Perceived Direction of Motion Caused by Spatial Undersampling in Two Children with Periventricular Leukomalacia
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Inversion of Perceived Direction of Motion Caused by Spatial Undersampling in Two Children with Periventricular Leukomalacia

机译:两个儿童脑室白细胞减少症的空间欠采样引起的运动感知方向的反转

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摘要

We report here two cases of two young diplegic patients with cystic periventricular leukomalacia who systematically, and with high sensitivity, perceive translational motion of a random-dot display in the opposite direction. The apparent inversion was specific for translation motion: Rotation and expansion motion were perceived correctly, with normal sensitivity. It was also specific for random-dot patterns, not occurring with gratings. For the one patient that we were able to test extensively, contrast sensitivity for static stimuli was normal, but was very low for direction discrimination at high spatial frequencies and all temporal frequencies. His opto-kinetic nystagmus movements were normal but he was unable to track a single translating target, indicating a perceptual origin of the tracking deficit. The severe deficit for motion perception was also evident in the seminatural situation of a driving simulation video game. The perceptual deficit for trans-rnlational motion was reinforced by functional magnetic resonance imaging studies. Translational motion elicited no response in the MT complex, although it did produce a strong response in many visual areas when contrasted with blank stimuli. However, radial and rotational motion produced a normal pattern of activation in a subregion of the MT complex. These data reinforce the existent evidence for independent cortical processing for translational, and circular or radial flow motion, and further suggest that the two systems have different vulnerability and plasticity to prenatal damage. They also highlight the complexity of visual motion perception, and how the delicate balance of neural activity can lead to paradoxical effects such as consistent misperception of the direction of motion. We advance a possible explanation of a reduced spatial sampling of the motion stimuli and report a simple model that simulates well the experimental results.
机译:我们在这里报告了两个案例,两个年轻的双腿瘫痪患者,患有囊性室性白细胞软化症,他们系统地且具有很高的敏感性,可以感知到随机点显示在相反方向上的平移运动。明显的反转是平移运动特有的:旋转和扩展运动可以正确感知,并且具有正常的灵敏度。它也特定于随机点图案,而不会出现在光栅上。对于我们能够进行广泛测试的一名患者,静态刺激的对比敏感度是正常的,但在高空间频率和所有时域频率下的方向辨别率非常低。他的视动眼球震颤运动正常,但他无法追踪单个翻译目标,表明追踪缺陷的知觉来源。在驾驶模拟视频游戏的半自然情况下,运动知觉的严重缺陷也很明显。功能性磁共振成像研究增强了横向运动的知觉缺陷。尽管与空白刺激相比,平移运动确实在许多视觉区域产生了强烈的响应,但在MT复合体中并未引起任何响应。但是,径向运动和旋转运动在MT复合体的子区域中产生了正常的激活模式。这些数据加强了对平移,圆周或径向血流运动进行独立皮层处理的现有证据,并且进一步表明这两个系统对产前损害具有不同的脆弱性和可塑性。他们还强调了视觉运动感知的复杂性,以及神经活动的微妙平衡如何导致自相矛盾的效应,例如对运动方向的持续误解。我们提出了减少运动刺激的空间采样的可能解释,并报告了一个很好地模拟实验结果的简单模型。

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  • 来源
    《Journal of Cognitive Neuroscience》 |2008年第6期|1094-1106|共13页
  • 作者单位

    University Vita-Salute San Raffaele, and Istituto Italiano di Science, Milan, Italy Institute of Neuroscience, CNR, Pisa, Italy;

    Stella Marts Scientific Institute, Pisa, Italy;

    Stella Marts Scientific Institute, Pisa, Italy University of Pisa, Italy;

    Stella Marts Scientific Institute, Pisa, Italy;

    Institute of Neuroscience, CNR, Pisa, Italy University of Florence, Italy;

    Istituto di Fisiologia Clinica CNR-CREAS, Pisa, Italy;

    Istituto di Neuroscienze del CNR, Via Moruzzi 1, Pisa, 56100 Italy;

    Stella Marts Scientific Institute, Pisa, Italy University of Pisa, Italy;

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