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幼年大鼠体感皮层柱中L5A锥体神经元对之间的单突触连接。

Monosynaptic connections between pairs of L5A pyramidal neurons in columns of juvenile rat somatosensory cortex.

作者信息

Frick Andreas, Feldmeyer Dirk, Helmstaedter Moritz, Sakmann Bert

机构信息

Abteilung Zellphysiologie, Max-Planck-Institut für Medizinische Forschung, D-69120 Heidelberg, Germany.

出版信息

Cereb Cortex. 2008 Feb;18(2):397-406. doi: 10.1093/cercor/bhm074. Epub 2007 Jun 4.

Abstract

Layer 5 (L5) of somatosensory cortex is a major gateway for projections to intra- and subcortical brain regions. This layer is further divided into 5A and 5B characterized by relatively separate afferent and efferent connections. Little is known about the organization of connections within L5A of neocortical columns. We therefore used paired recordings to probe the anatomy and physiology of monosynaptic connections between L5A pyramidal neurons within the barrel columns of somatosensory cortex in acute slices of approximately 3-week-old rats. Post hoc reconstruction and calculation of the axodendritic overlap of pre- and postsynaptic neurons, together with identification of putative synaptic contacts (3.5 per connection), indicated a preferred innervation domain in the proximal dendritic region. Synaptic transmission was reliable (failure rate <2%) and had a low variability (coefficient of variation of 0.3). Unitary excitatory postsynaptic potential (EPSP) amplitudes varied 30-fold with a mean of 1.2 mV and displayed depression over a wide range of frequencies (2-100 Hz) during bursts of presynaptic firing. A single L5A pyramidal neuron was estimated to target approximately 270 other pyramidal neurons within the same layer of its home barrel column, suggesting a mechanism of feed-forward excitation by which synchronized single action potentials are efficiently transmitted within L5A of juvenile cortex.

摘要

体感皮层的第5层(L5)是投射至皮质内和皮质下脑区的主要通道。该层进一步分为5A和5B,其传入和传出连接相对独立。对于新皮质柱L5A内连接的组织情况,人们了解甚少。因此,我们采用配对记录法,对约3周龄大鼠急性脑片体感皮层桶状柱内L5A锥体神经元之间单突触连接的解剖结构和生理学特性进行了探究。对突触前和突触后神经元的轴突-树突重叠进行事后重建和计算,同时识别假定的突触接触(每个连接3.5个),结果表明在近端树突区域存在一个优先支配域。突触传递可靠(失败率<2%)且变异性低(变异系数为0.3)。单突触兴奋性突触后电位(EPSP)幅度变化达30倍,平均值为1.2 mV,并且在突触前发放串期间,在很宽的频率范围(2 - 100 Hz)内均表现出抑制。据估计,单个L5A锥体神经元在其所在桶状柱的同一层内可靶向约270个其他锥体神经元,这提示了一种前馈兴奋机制,通过该机制,同步的单动作电位可在幼年皮层的L5A内有效传递。

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