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人类视觉发育过程中全球形态和运动处理的重组。

Reorganization of global form and motion processing during human visual development.

机构信息

Visual Development Unit, Department of Developmental Science, University College London, London WC1E 6BT, UK.

出版信息

Curr Biol. 2010 Mar 9;20(5):411-5. doi: 10.1016/j.cub.2009.12.020. Epub 2010 Feb 18.

Abstract

The functional selectivity of human primary visual cortex (V1) for orientation and motion direction is established by around 3 months of age [1-3], but there have been few studies of the development of extrastriate visual areas that integrate outputs from V1 [4-8]. We investigated sensitivity and topographical organization for global form and motion with high-density visual event-related potentials (VERPs) in 4- to 5-month-old infants and adults. Responses were measured to transitions between concentrically organized elements (short arc segments for form, dot trajectories for motion) and random arrangements. Adults showed topographically separate responses, with midline motion and more lateral form responses. Of 26 infants, 25 showed significant motion responses but only 13 showed form responses, suggesting more advanced development for extrastriate motion areas than form. Infants' form and motion responses were topographically distinct but contrasted with the corresponding adult topographies, with infants' motion responses more lateral than form responses. These results imply distinct neural sources at both ages and raise the possibility of substantial reorganization of extrastriate networks between infancy and adulthood. We speculate that global motion responses arise from area V5 in infants but are dominated by more medial areas such as V3/V3A and V6 in adults.

摘要

人类初级视觉皮层(V1)对朝向和运动方向的功能选择性在大约 3 个月大时就已经建立[1-3],但对整合 V1 输出的外侧视觉区域的发育研究甚少[4-8]。我们使用高密度视觉事件相关电位(VERP)研究了 4 至 5 个月大的婴儿和成年人对全局形状和运动的敏感性和拓扑组织。我们测量了同心圆结构元素(形状为短弧段,运动为点状轨迹)和随机排列之间的转换。成年人表现出拓扑上分开的反应,中线运动和更外侧的形状反应。在 26 名婴儿中,有 25 名表现出显著的运动反应,但只有 13 名表现出形状反应,这表明外侧运动区的发育比形状区更先进。婴儿的形状和运动反应在拓扑上是不同的,但与相应的成人拓扑相反,婴儿的运动反应比形状反应更偏向外侧。这些结果暗示在两个年龄段都有不同的神经来源,并提出了在婴儿期和成年期之间外侧网络可能会发生大量重组的可能性。我们推测,婴儿的全局运动反应来自 V5 区,但在成年人中,更内侧的区域(如 V3/V3A 和 V6)占主导地位。

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