首页> 美国卫生研究院文献>The Journal of Neuroscience >Visual Motion Perception Deficits Due to Cerebellar Lesions Are Paralleled by Specific Changes in Cerebro-Cortical Activity
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Visual Motion Perception Deficits Due to Cerebellar Lesions Are Paralleled by Specific Changes in Cerebro-Cortical Activity

机译:小脑皮损引起的视觉运动知觉缺陷与脑皮层活动的特定变化并存

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摘要

Recent anatomical studies have revealed strong cerebellar projections into parietal and prefrontal cortex. These findings suggest that the cerebellum might not only play a functional role in motor control but also cognitive domains, an idea also supported by neuropsychological testing of patients with cerebellar lesions that has revealed specific deficits. The goal of the present study was to test whether or not cognitive impairments after cerebellar damage are resulting from changes in cerebro-cortical signal processing. The detection of global visual motion embedded in noise, a faculty compromised after cerebellar lesions, was chosen as a model system. Using magnetoencephalography, cortical responses were recorded in a group of patients with cerebellar lesions (n = 8) and controls (n = 13) who observed visual motion of varied coherence, i.e., motion strength, presented in the peripheral visual field during controlled stationary fixation. Corroborating earlier results, the patients showed a significant impairment in global motion discrimination despite normal fixation behavior. This deficit was paralleled by qualitative differences in responses recorded from parieto-temporal cortex, including a reduced responsiveness to coherent visual motion and a striking loss of bilateral representations of motion coherence. Moreover, the perceptual thresholds correlated with the cortical representation of motion strength on single subject basis. These results demonstrate that visual motion processing in cerebral cortex critically depends on an intact cerebellum and establish a correlation between cortical activity and impaired visual perception resulting from cerebellar damage.
机译:最近的解剖学研究已经发现小脑向顶叶和前额叶皮层的投射强烈。这些发现表明,小脑不仅可能在运动控制中发挥作用,而且在认知功能域中也可能发挥作用,这一思想也得到了对小脑病变患者的神经心理学测试的支持,这种神经性测试显示出特定的缺陷。本研究的目的是测试小脑损伤后的认知障碍是否由脑皮质信号处理的变化引起。选择将检测到的噪声中嵌入的全局视觉运动作为模型系统,该噪声是在小脑病变后受损的教师。使用脑磁图,记录了一组小脑病变患者(n = 8)和对照组(n = 13)的皮层反应,这些患者观察到在固定固定固定过程中周围视野中呈现出不同连贯性的视觉运动,即运动强度。尽管正常的固定行为,患者仍显示出明显的整体运动辨别障碍,从而证实了较早的结果。这种缺陷与从顶颞颞叶皮层记录的反应的质量上的差异平行,包括对连贯视觉运动的反应性降低和运动连贯性的双边表征的显着丧失。此外,知觉阈值与基于单个对象的运动强度的皮质表示相关。这些结果表明,大脑皮层中的视觉运动处理关键取决于完整的小脑,并在皮层活动和小脑损伤导致的视觉感知受损之间建立关联。

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