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大鼠体感皮层第4层中具有高桶内连接性的桶状相关中间神经元。

A barrel-related interneuron in layer 4 of rat somatosensory cortex with a high intrabarrel connectivity.

作者信息

Koelbl Christian, Helmstaedter Moritz, Lübke Joachim, Feldmeyer Dirk

机构信息

Department of Cell Physiology, Max Planck Institute of Medical Research, Jahnstr. 20, D-69120 Heidelberg, Germany Current address: Section of Cardiovascular Medicine, Boston University Medical Center, 88 East Newton Street, Boston, MA 02118, USA.

Department of Cell Physiology, Max Planck Institute of Medical Research, Jahnstr. 20, D-69120 Heidelberg, Germany Current address: Structure of Neocortical Circuits Group, Max Planck Institute of Neurobiology, Am Klopferspitz 18, D-82152 Martinsried, Germany.

出版信息

Cereb Cortex. 2015 Mar;25(3):713-25. doi: 10.1093/cercor/bht263. Epub 2013 Sep 26.

Abstract

Synaptic connections between identified fast-spiking (FS), parvalbumin (PV)-positive interneurons, and excitatory spiny neurons in layer 4 (L4) of the barrel cortex were investigated using patch-clamp recordings and simultaneous biocytin fillings. Three distinct clusters of FS L4 interneurons were identified based on their axonal morphology relative to the barrel column suggesting that these neurons do not constitute a homogeneous interneuron population. One L4 FS interneuron type had an axonal domain strictly confined to a L4 barrel and was therefore named "barrel-confined inhibitory interneuron" (BIn). BIns established reliable inhibitory synaptic connections with L4 spiny neurons at a high connectivity rate of 67%, of which 69% were reciprocal. Unitary IPSPs at these connections had a mean amplitude of 0.9 ± 0.8 mV with little amplitude variation and weak short-term synaptic depression. We found on average 3.7 ± 1.3 putative inhibitory synaptic contacts that were not restricted to perisomatic areas. In conclusion, we characterized a novel type of barrel cortex interneuron in the major thalamo-recipient layer 4 forming dense synaptic networks with L4 spiny neurons. These networks constitute an efficient and powerful inhibitory feedback system, which may serve to rapidly reset the barrel microcircuitry following sensory activation.

摘要

利用膜片钳记录和同步生物胞素填充技术,研究了桶状皮层第4层(L4)中已识别的快速放电(FS)、小白蛋白(PV)阳性中间神经元与兴奋性棘状神经元之间的突触连接。根据相对于桶状柱的轴突形态,确定了FS L4中间神经元的三个不同簇,这表明这些神经元并不构成一个同质的中间神经元群体。一种L4 FS中间神经元类型的轴突区域严格局限于L4桶状结构,因此被命名为“桶状局限抑制性中间神经元”(BIn)。BIn以67%的高连接率与L4棘状神经元建立了可靠的抑制性突触连接,其中69%是相互的。这些连接处的单位IPSP平均幅度为0.9±0.8 mV,幅度变化很小,短期突触抑制较弱。我们平均发现3.7±1.3个推定的抑制性突触接触,这些接触不限于胞体周围区域。总之,我们在主要接受丘脑传入的第4层中鉴定了一种新型的桶状皮层中间神经元,它与L4棘状神经元形成密集的突触网络。这些网络构成了一个高效且强大的抑制性反馈系统,可能有助于在感觉激活后迅速重置桶状微电路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c9a8/4318534/5c3e249799b8/bht26301.jpg

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