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Monocular core zones and binocular border strips in primate striate cortex revealed by the contrasting effects of enucleation, eyelid suture, and retinal laser lesions on cytochrome oxidase activity.通过摘除眼球、眼睑缝合和视网膜激光损伤对细胞色素氧化酶活性的对比作用揭示灵长类视皮层中的单眼核心区和双眼边缘带
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Retinal GFAP and bFGF expression after multiple argon laser photocoagulation injuries assessed by both immunoreactivity and mRNA levels.通过免疫反应性和mRNA水平评估多次氩激光光凝损伤后的视网膜GFAP和bFGF表达。
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Immunolocalization of basic fibroblast growth factor during wound repair in rat retina after laser photocoagulation.激光光凝后大鼠视网膜伤口修复过程中碱性成纤维细胞生长因子的免疫定位
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Visuotopic reorganization in the primary visual cortex of adult cats following monocular and binocular retinal lesions.成年猫单眼和双眼视网膜损伤后初级视觉皮层的视拓扑重组。
Cereb Cortex. 1996 May-Jun;6(3):388-405. doi: 10.1093/cercor/6.3.388.
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Neurophysiology of central retinal degeneration in cat.猫视网膜中央变性的神经生理学
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单眼局灶性视网膜病变可在成年猫视觉皮层诱导短期地形可塑性。

Monocular focal retinal lesions induce short-term topographic plasticity in adult cat visual cortex.

作者信息

Calford M B, Schmid L M, Rosa M G

机构信息

Psychobiology Laboratory, Australian National University, Canberra, Australia.

出版信息

Proc Biol Sci. 1999 Mar 7;266(1418):499-507. doi: 10.1098/rspb.1999.0665.

DOI:10.1098/rspb.1999.0665
PMID:10189714
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1689800/
Abstract

Electrophysiological recording in primary visual cortex (VI) was performed both prior to and in the hours immediately following the creation of a discrete retinal lesion in one eye with an argon laser. Lesion projection zones (LPZs; 21-64 mm2) were defined in the visual cortex by mapping the extent of the lesion onto the topographic representation in cortex. There was no effect on neuronal responses to the unlesioned eye or on its topographic representation. However, within hours of producing the retinal lesion, receptive fields obtained from stimulation of the lesioned eye were displaced onto areas surrounding the scotoma and were enlarged compared with the corresponding field obtained through the normal eye. The proportion of such responsive recording sites increased during the experiment such that 8-11 hours post-lesion, 56% of recording sites displayed neurons responsive to the lesioned eye. This is an equivalent proportion to that previously reported with long-term recovery (three weeks to three months). Responsive neurons were evident as far as 2.5 mm inside the border of the LPZ. The reorganization of the lesioned eye representation produced binocular disparities as great as 15 degrees, suggesting interactions between sites in VI up to 5.5 mm apart.

摘要

在一只眼睛用氩激光制造离散性视网膜损伤之前及损伤后数小时内,对初级视觉皮层(V1)进行了电生理记录。通过将损伤范围映射到皮层的地形图表示上,在视觉皮层中定义了损伤投射区(LPZ;21 - 64平方毫米)。这对神经元对未损伤眼睛的反应及其地形图表示没有影响。然而,在制造视网膜损伤后的数小时内,从损伤眼睛刺激获得的感受野移位到了暗点周围的区域,并且与通过正常眼睛获得的相应视野相比有所扩大。在实验过程中,此类有反应记录位点的比例增加,使得损伤后8 - 11小时,56%的记录位点显示出对损伤眼睛有反应的神经元。这一比例与先前报道的长期恢复情况(三周至三个月)相当。在LPZ边界内2.5毫米处都能明显看到有反应的神经元。损伤眼睛表示的重组产生了高达15度的双眼视差,这表明V1中相距达5.5毫米的位点之间存在相互作用。