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Visual acuity and foveal cone density in the retina of the aged rhesus monkey.老年恒河猴视网膜的视力和中央凹视锥细胞密度
Neurobiol Aging. 1980 Winter;1(2):133-40. doi: 10.1016/0197-4580(80)90006-8.
2
Retinal ganglion cells with distinct directional preferences differ in molecular identity, structure, and central projections.具有不同方向偏好的视网膜神经节细胞在分子特征、结构和中枢投射上存在差异。
J Neurosci. 2011 May 25;31(21):7753-62. doi: 10.1523/JNEUROSCI.0907-11.2011.
3
Stereotyped axonal arbors of retinal ganglion cell subsets in the mouse superior colliculus.小鼠上丘中视网膜神经节细胞亚群的刻板轴突树突。
J Comp Neurol. 2011 Jun 15;519(9):1691-711. doi: 10.1002/cne.22595.
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Between destiny and disease: genetics and molecular pathways of human central nervous system aging.在命运与疾病之间:人类中枢神经系统衰老的遗传学和分子途径。
Prog Neurobiol. 2011 Feb;93(2):165-81. doi: 10.1016/j.pneurobio.2010.11.006. Epub 2010 Dec 2.
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Age-related deterioration of rod vision in mice.小鼠的杆状视觉与年龄相关的退化。
J Neurosci. 2010 Aug 18;30(33):11222-31. doi: 10.1523/JNEUROSCI.4239-09.2010.
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Age-induced disruption of selective olfactory bulb synaptic circuits.年龄导致选择性嗅球突触回路的破坏。
Proc Natl Acad Sci U S A. 2010 Aug 31;107(35):15613-8. doi: 10.1073/pnas.1007931107. Epub 2010 Aug 2.
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Attenuation of age-related changes in mouse neuromuscular synapses by caloric restriction and exercise.热量限制和运动可减弱小鼠神经肌肉突触的衰老相关变化。
Proc Natl Acad Sci U S A. 2010 Aug 17;107(33):14863-8. doi: 10.1073/pnas.1002220107. Epub 2010 Aug 2.
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Morphology and mosaics of melanopsin-expressing retinal ganglion cell types in mice.鼠视网膜神经节细胞中表达黑视素的细胞类型的形态和镶嵌。
J Comp Neurol. 2010 Jul 1;518(13):2405-22. doi: 10.1002/cne.22381.
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Design principles of insect and vertebrate visual systems.昆虫和脊椎动物视觉系统的设计原理。
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Neural mechanisms of ageing and cognitive decline.衰老和认知能力下降的神经机制。
Nature. 2010 Mar 25;464(7288):529-35. doi: 10.1038/nature08983.

与年龄相关的小鼠视网膜神经元变化。

Age-related alterations in neurons of the mouse retina.

机构信息

Department of Molecular and Cellular Biology and Center for Brain Science, Harvard University, Cambridge, Massachusetts 02138, USA.

出版信息

J Neurosci. 2011 Nov 2;31(44):16033-44. doi: 10.1523/JNEUROSCI.3580-11.2011.

DOI:10.1523/JNEUROSCI.3580-11.2011
PMID:22049445
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3238393/
Abstract

The behavioral consequences of age-related alterations in neural function are well documented, but less is known about their cellular bases. To characterize such changes, we analyzed 14 molecularly identified subsets of mouse retinal projection neurons (retinal ganglion cells or RGCs) and interneurons (amacrine, bipolar, and horizontal cells). The retina thinned but expanded with age, maintaining its volume. There was minimal decline in the number of RGCs, interneurons, or photoreceptors, but the diameter of RGC dendritic arbors decreased with age. Together, the increased retinal area and the decreased dendritic area may lead to gaps in RGC coverage of the visual field. Axonal arbors of RGCs in the superior colliculus also atrophied with age, suggesting that the relay of visual information to central targets may decline over time. On the other hand, the laminar restriction of RGC dendrites and the interneuronal processes that synapse on them were not detectably disturbed, and RGC subtypes exhibited distinct electrophysiological responses to complex visual stimuli. Other neuronal types aged in different ways: amacrine cell arbors did not remodel detectably, whereas horizontal cell processes sprouted into the photoreceptor layer. Bipolar cells showed arbor-specific alterations: their dendrites sprouted but their axons remained stable. In summary, retinal neurons exhibited numerous age-related quantitative alterations (decreased areas of dendritic and axonal arbors and decreased density of cells and synapses), whereas their qualitative features (molecular identity, laminar specificity, and feature detection) were largely preserved. Together, these data reveal selective age-related alterations in neural circuitry, some of which could underlie declines in visual acuity.

摘要

与年龄相关的神经功能变化的行为后果已有大量记载,但对其细胞基础知之甚少。为了描述这些变化,我们分析了 14 种分子鉴定的小鼠视网膜投射神经元(视网膜神经节细胞或 RGC)和中间神经元(无长突细胞、双极细胞和水平细胞)亚群。视网膜随年龄变薄但扩大,保持其体积。RGC、中间神经元或光感受器的数量几乎没有下降,但 RGC 树突棘的直径随年龄增长而减小。总的来说,增加的视网膜面积和减少的树突面积可能导致 RGC 对视野的覆盖出现间隙。RGC 在顶盖中的轴突树突也随年龄而萎缩,这表明视觉信息向中枢靶区的传递可能随时间而下降。另一方面,RGC 树突和与它们形成突触的中间神经元过程的层限制没有明显受到干扰,并且 RGC 亚型对复杂视觉刺激表现出不同的电生理反应。其他神经元类型以不同的方式衰老:无长突细胞树突没有明显重塑,而水平细胞的突起则进入光感受器层。双极细胞表现出树突特异性改变:它们的树突发芽,但轴突保持稳定。总之,视网膜神经元表现出许多与年龄相关的定量变化(树突和轴突树突的面积减少,细胞和突触密度降低),而其定性特征(分子身份、层特异性和特征检测)在很大程度上得以保留。综上所述,这些数据揭示了神经回路中选择性的与年龄相关的变化,其中一些可能是视力下降的基础。