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Synaptogenesis and development of pyramidal neuron dendritic morphology in the chimpanzee neocortex resembles humans.类人猿新皮质中的突触发生和锥体神经元树突形态发育类似于人类。
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Postnatal development of layer III pyramidal cells in the primary visual, inferior temporal, and prefrontal cortices of the marmoset.食蟹猴初级视皮层、下颞叶皮层和前额叶皮层中 III 层锥体神经元的出生后发育。
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Dendritic spine changes associated with normal aging.与正常衰老相关的树突棘变化。
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GABA through the ages: regulation of cortical function and plasticity by inhibitory interneurons.从古至今的 GABA:通过抑制性中间神经元调节皮层功能和可塑性。
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Synaptic distributions of GluA2 and PKMζ in the monkey dentate gyrus and their relationships with aging and memory.猴子齿状回中 GluA2 和 PKMζ 的突触分布及其与衰老和记忆的关系。
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恒河猴视觉皮层第3层锥体细胞的年龄相关变化。

Age-related changes to layer 3 pyramidal cells in the rhesus monkey visual cortex.

作者信息

Luebke Jennifer I, Medalla Maria, Amatrudo Joseph M, Weaver Christina M, Crimins Johanna L, Hunt Brendan, Hof Patrick R, Peters Alan

机构信息

Department of Anatomy and Neurobiology, Boston University School of Medicine, Boston, MA 02118, USA Computational Neurobiology and Imaging Center, Icahn School of Medicine at Mount Sinai, New York, NY 10029, USA and.

Department of Anatomy and Neurobiology, Boston University School of Medicine, Boston, MA 02118, USA.

出版信息

Cereb Cortex. 2015 Jun;25(6):1454-68. doi: 10.1093/cercor/bht336. Epub 2013 Dec 8.

DOI:10.1093/cercor/bht336
PMID:24323499
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4428297/
Abstract

The effects of normal aging on morphologic and electrophysiologic properties of layer 3 pyramidal neurons in rhesus monkey primary visual cortex (V1) were assessed with whole-cell, patch-clamp recordings in in vitro slices. In another cohort of monkeys, the ultrastructure of synapses in the layers 2-3 neuropil of V1 was assessed using electron microscopy. Distal apical dendritic branching complexity was reduced in aged neurons, as was the total spine density, due to specific loss of mushroom spines from the apical tree and of thin spines from the basal tree. There was also an age-related decrease in the numerical density of symmetric and asymmetric synapses. In contrast to these structural changes, intrinsic membrane, action potential (AP), and excitatory and inhibitory synaptic current properties were the same in aged and young neurons. Computational modeling using morphologic reconstructions predicts that reduced dendritic complexity leads to lower attenuation of voltage outward from the soma (e.g., backpropagating APs) in aged neurons. Importantly, none of the variables that changed with age differed in neurons from cognitively impaired versus unimpaired aged monkeys. In summary, there are age-related alterations to the structural properties of V1 neurons, but these are not associated with significant electrophysiologic changes or with cognitive decline.

摘要

利用体外切片的全细胞膜片钳记录技术,评估了正常衰老对恒河猴初级视觉皮层(V1)第3层锥体神经元形态和电生理特性的影响。在另一组猴子中,使用电子显微镜评估了V1第2 - 3层神经毡中突触的超微结构。老年神经元的远端顶端树突分支复杂性降低,总棘密度也降低,这是由于顶端树突上蘑菇棘和基底树突上细棘的特异性丢失所致。对称和不对称突触的数量密度也存在与年龄相关的下降。与这些结构变化相反,老年和年轻神经元的内在膜、动作电位(AP)以及兴奋性和抑制性突触电流特性相同。使用形态重建的计算模型预测,树突复杂性降低会导致老年神经元中从胞体向外的电压衰减降低(例如,反向传播的AP)。重要的是,在认知受损与未受损的老年猴子的神经元中,随年龄变化的变量没有差异。总之,V1神经元的结构特性存在与年龄相关的改变,但这些改变与显著的电生理变化或认知衰退无关。