Early monocular deprivation reduces the capacity for neural plasticity in the cat visual system.

Jonathon Mark Henneberry, Joseph Elgallad, Seth Smith, Kevin R Duffy
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Abstract

Obstruction of vision to one eye during early postnatal development elicits neural modifications in the visual system that can last a lifetime. Research in rodents has revealed that an early and transient monocular deprivation (MD) can produce an enduring alteration to the framework of neural connections within visual cortex. This lasting trace of early MD enables an enhanced effect of a second MD imposed on the same eye in adulthood. In the current study, we examined whether the modification of plasticity potential was bidirectional by assessing whether the effect of early and brief MD attenuated the impact of a subsequent MD when applied to the fellow eye. Results were clear in showing that animals with an early MD exhibited a smaller response to later visual deprivation of the fellow eye. Compared to controls, animals with a history of MD exhibited less atrophy of neurons, and a smaller loss of neurofilament labeling within the dorsal lateral geniculate nucleus. The shift in cortical ocular dominance elicited by MD was also smaller in animals with a prior MD. These results indicate that early MD elicits abiding and eye-specific neural modifications that can selectively alter plasticity potential in the visual system.

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早期单眼剥夺降低了猫视觉系统神经可塑性的能力。
在出生后发育早期,一只眼睛的视力障碍会引起视觉系统的神经改变,这种改变会持续一生。对啮齿动物的研究表明,早期和短暂的单眼剥夺(MD)可以对视觉皮层内的神经连接框架产生持久的改变。这种早期MD的持久痕迹使得成年后对同一只眼睛施加的第二次MD的影响增强。在当前的研究中,我们通过评估早期和短暂的MD是否会减弱随后的MD对另一只眼的影响,来检验可塑性电位的改变是否是双向的。结果清楚地表明,早期MD的动物对后来另一只眼睛的视觉剥夺的反应较小。与对照组相比,有MD病史的动物表现出较少的神经元萎缩,背外侧膝状核内神经丝标记的丢失较小。在先前患有MD的动物中,MD引起的皮质眼优势转移也较小。这些结果表明,早期MD引起持久的和眼睛特异性的神经修饰,可以选择性地改变视觉系统的可塑性电位。
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