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实验性弱视猴的 MT 区神经元的视觉运动处理。

Visual motion processing by neurons in area MT of macaque monkeys with experimental amblyopia.

机构信息

Center for Neural Science, New York University, New York, New York 10003, USA.

出版信息

J Neurosci. 2010 Sep 8;30(36):12198-209. doi: 10.1523/JNEUROSCI.3055-10.2010.

Abstract

Early experience affects the development of the visual system. Ocular misalignment or unilateral blur often causes amblyopia, a disorder that has become a standard for understanding developmental plasticity. Neurophysiological studies of amblyopia have focused almost entirely on the first stage of cortical processing in striate cortex. Here we provide the first extensive study of how amblyopia affects extrastriate cortex in nonhuman primates. We studied macaque monkeys (Macaca nemestrina) for which we have detailed psychophysical data, directly comparing physiological findings to perceptual capabilities. Because these subjects showed deficits in motion discrimination, we focused on area MT/V5, which plays a central role in motion processing. Most neurons in normal MT respond equally to visual stimuli presented through either eye; most recorded in amblyopes strongly preferred stimulation of the nonamblyopic (fellow) eye. The pooled responses of neurons driven by the amblyopic eye showed reduced sensitivity to coherent motion and preferred higher speeds, in agreement with behavioral measurements. MT neurons were more limited in their capacity to integrate motion information over time than expected from behavioral performance; neurons driven by the amblyopic eye had even shorter integration times than those driven by the fellow eye. We conclude that some, but not all, of the motion sensitivity deficits associated with amblyopia can be explained by abnormal development of MT.

摘要

早期经验会影响视觉系统的发育。眼球的斜视或单侧模糊通常会导致弱视,这种障碍已成为理解发育可塑性的标准。弱视的神经生理学研究几乎完全集中在纹状皮层的皮层处理的第一阶段。在这里,我们提供了第一个关于弱视如何影响非人类灵长类动物的外纹状皮层的广泛研究。我们研究了猕猴(Macaca nemestrina),我们有详细的心理物理数据,直接将生理发现与感知能力进行比较。由于这些动物在运动辨别方面存在缺陷,我们专注于 MT/V5 区域,该区域在运动处理中起着核心作用。正常 MT 中的大多数神经元对通过任一眼睛呈现的视觉刺激的反应相同;大多数在弱视者中强烈偏向于非弱视(同伴)眼的刺激。由弱视眼驱动的神经元的集合反应显示对相干运动的敏感性降低,并偏好更高的速度,与行为测量结果一致。MT 神经元在时间上整合运动信息的能力比行为表现预期的要有限;由弱视眼驱动的神经元的整合时间甚至比由同伴眼驱动的神经元的整合时间还要短。我们得出结论,与弱视相关的一些但不是全部运动敏感性缺陷可以通过 MT 的异常发育来解释。

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本文引用的文献

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The extent of the dorsal extra-striate deficit in amblyopia.弱视中背侧纹外区缺陷的程度。
Vision Res. 2006 Aug;46(16):2571-80. doi: 10.1016/j.visres.2006.01.009. Epub 2006 Mar 10.
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Dynamics of motion signaling by neurons in macaque area MT.猕猴MT区神经元的运动信号动力学
Nat Neurosci. 2005 Feb;8(2):220-8. doi: 10.1038/nn1382. Epub 2005 Jan 16.
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Contour integration in amblyopic monkeys.弱视猴子中的轮廓整合
Vis Neurosci. 2003 Sep-Oct;20(5):577-88. doi: 10.1017/s0952523803205113.
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Deficits to global motion processing in human amblyopia.人类弱视中整体运动处理的缺陷。
Vision Res. 2003 Mar;43(6):729-38. doi: 10.1016/s0042-6989(02)00684-3.

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