首页> 外文期刊>Cerebral cortex >Quantitative Three-Dimensional Reconstructions of Excitatory Synaptic Boutons in the 'Barrel Field' of the Adult 'Reeler' Mouse Somatosensory Neocortex: A Comparative Fine-Scale Electron Microscopic Analysis with the Wild Type Mouse
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Quantitative Three-Dimensional Reconstructions of Excitatory Synaptic Boutons in the 'Barrel Field' of the Adult 'Reeler' Mouse Somatosensory Neocortex: A Comparative Fine-Scale Electron Microscopic Analysis with the Wild Type Mouse

机译:成年“Reeler”小鼠躯体感觉新皮层“桶场”中兴奋性突触束的定量三维重建:与野生型小鼠的比较精细电子显微镜分析

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摘要

Synapses are key structural determinants for information processing and computations in the normal and pathologically altered brain. Here, the quantitative morphology of excitatory synaptic boutons in the "reeler" mutant, a model system for various neurological disorders, was investigated and compared with wild-type (WT) mice using high-resolution, fine-scale electron microscopy (EM) and quantitative three-dimensional (3D) models of synaptic boutons. Beside their overall geometry, the shape and size of presynaptic active zones (PreAZs) and postsynaptic densities (PSDs) forming the active zones and the three pools of synaptic vesicles (SVs), namely the readily releasable pool (RRP), the recycling pool (RP), and the resting pool, were quantified. Although the reeler mouse neocortex is severely disturbed, no significant differences were found in most of the structural parameters investigated: the size of boutons (similar to 3 mu m(2)), size of the PreAZs and PSDs (similar to 0.17 mu m(2)), total number of SVs, and SVs within a perimeter (p) of 10 nm and p20 nm RRP; the p60 nm, p100 nm, and p60-p200 nm RP; and the resting pool, except the synaptic cleft width. Taken together, the synaptic organization and structural composition of synaptic boutons in the reeler neocortex remain comparably "normal" and may thus contribute to a "correct" wiring of neurons within the reeler cortical network.
机译:突触是正常和病理改变的大脑中信息处理和计算的关键结构决定因素。在这里,研究了“reeler”突变体(一种用于各种神经系统疾病的模型系统)中兴奋性突触束的定量形态,并使用高分辨率、精细电子显微镜 (EM) 和突触束的定量三维 (3D) 模型与野生型 (WT) 小鼠进行了比较。除了它们的整体几何形状外,还量化了形成活动区的突触前活动区 (PreAZ) 和突触后密度 (PSD) 的形状和大小,以及三个突触囊泡池 (SV),即易释放池 (RRP)、回收池 (RP) 和静息池。尽管卷轴小鼠新皮层受到严重干扰,但在研究的大多数结构参数中没有发现显着差异:胸针的大小(类似于 3 μ m(2))、PreAZ 和 PSD 的大小(类似于 0.17 μ m(2))、SV 总数和 SV 在 10 nm 和 p20 nm RRP 的周长 (p) 内;p60 nm、p100 nm 和 p60-p200 nm RP;和静息池,突触裂宽度除外。综上所述,卷轴新皮层中突触的突触组织和结构组成保持相对“正常”,因此可能有助于卷轴皮层网络内神经元的“正确”布线。

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