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对小鼠体感皮层IV层中棘状星型神经元的丘脑皮质突触进行定量分析。

Quantification of thalamocortical synapses with spiny stellate neurons in layer IV of mouse somatosensory cortex.

作者信息

Benshalom G, White E L

出版信息

J Comp Neurol. 1986 Nov 15;253(3):303-14. doi: 10.1002/cne.902530303.

Abstract

The distribution of thalamocortical (TC) and other synapses involving spiny stellate neurons in layer IV of the barrel region of mouse primary somatosensory cortex (SmI) was examined in seven male CD/1 mice. TC axon terminals were labeled by lesion-induced degeneration, which has been shown to label reliably all TC synapses in mouse barrel cortex. Spiny stellate neurons, labeled by Golgi impregnation and gold toning, were identified with the light microscope prior to thin sectioning and electron microscopy. Analysis of eight dendritic segments from seven spiny stellate neurons showed that most of their synapses are with their dendritic spines, rather than with their shafts. Axospinous synapses are primarily of the asymmetrical type, whereas axodendritic synapses are mainly of the symmetrical type. Dendrites of spiny stellate neurons consistently form thalamocortical synapses, most of which involve spine heads rather than spine stalks or dendritic shafts. From 10.4% to 22.9% of all asymmetrical synapses with dendrites of spiny stellate neurons involve TC axon terminals. In general, this is a higher range than the ranges that characterize the TC synaptic connectivity of dendrites belonging to other types of neurons, implying that spiny stellate neurons are perhaps more strongly influenced by TC synaptic input than other types of cortical neurons examined previously. Spines involved in TC synapses were distributed irregularly along each of the stellate cell dendrites; about half of the interspinous intervals between these spines were about 5 microns or less. Modulations of the efficacy of TC synaptic input to dendrites of layer IV spiny stellate neurons are discussed in the light of recently reported computer simulated analyses of axospinous synaptic connections.

摘要

在7只雄性CD/1小鼠中,研究了小鼠初级体感皮层(SmI)桶状区域IV层中涉及棘状星形神经元的丘脑皮质(TC)及其他突触的分布情况。通过损伤诱导变性标记TC轴突终末,该方法已被证明能可靠地标记小鼠桶状皮层中的所有TC突触。在进行薄切片和电子显微镜检查之前,先用光学显微镜通过高尔基浸染和金调色法标记棘状星形神经元。对7个棘状星形神经元的8个树突节段进行分析,结果显示,它们的大多数突触位于树突棘上,而非树突干上。轴棘突触主要为不对称型,而轴树突触主要为对称型。棘状星形神经元的树突持续形成丘脑皮质突触,其中大多数涉及棘头而非棘柄或树突干。与棘状星形神经元树突形成的所有不对称突触中,有10.4%至22.9%涉及TC轴突终末。总体而言,这一范围高于其他类型神经元树突的TC突触连接特征范围,这意味着棘状星形神经元可能比之前检查过的其他类型皮质神经元受TC突触输入的影响更大。参与TC突触的棘沿着每个星形细胞树突不规则分布;这些棘之间约一半的棘间间隔约为5微米或更小。根据最近报道的关于轴棘突触连接的计算机模拟分析,讨论了对IV层棘状星形神经元树突的TC突触输入效能的调节。

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