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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Synaptic Organization of the Neuronal Circuits of the Claustrum
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Synaptic Organization of the Neuronal Circuits of the Claustrum

机译:子午线神经回路的突触组织

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The claustrum, a poorly understood subcortical structure located between the cortex and the striatum, forms widespread connections with almost all cortical areas, but the cellular organization of claustral circuits remains largely unknown. Based primarily on anatomical data, it has been proposed that the claustrum integrates activity across sensory modalities. However, the extent to which the synaptic organization of claustral circuits supports this integration is unclear. Here, we used paired whole-cell recordings and optogenetic approaches in mouse brain slices to determine the cellular organization of the claustrum. We found that unitary synaptic connections among claustrocortical (ClaC) neurons were rare. In contrast, parvalbumin-positive (PV) inhibitory interneurons were highly interconnected with both chemical and electrical synapses. In addition, ClaC neurons and PV interneurons formed frequent synaptic connections. As suggested by anatomical data, we found that corticoclaustral afferents formed monosynaptic connections onto both ClaC neurons and PV interneurons. However, the responses to cortical input were comparatively stronger in PV interneurons. Consistent with this overall circuit organization, activation of corticoclaustral afferents generated monosynaptic excitatory responses as well as disynaptic inhibitory responses in ClaC neurons. These data indicate that recurrent excitatory circuits within the claustrum alone are unlikely to integrate across multiple sensory modalities. Rather, this cellular organization is typical of circuits sensitive to correlated inputs. Although single ClaC neurons may integrate corticoclaustral input from different cortical regions, these results are consistent with more recent proposals implicating the claustrum in detecting sensory novelty or in amplifying correlated cortical inputs to coordinate the activity of functionally related cortical regions.
机译:锁骨,位于皮层和纹状体之间的皮质下皮层结构,人们了解甚少,它与几乎所有皮层区域都形成了广泛的连接,但是锁骨环的细胞组织在很大程度上仍然未知。主要基于解剖学数据,已提出锁骨整合了跨感觉模态的活动。然而,尚不清楚claustral电路的突触组织支持这种整合的程度。在这里,我们使用成对的全细胞记录和小鼠大脑切片中的光遗传学方法来确定锁骨的细胞组织。我们发现锁骨皮层(ClaC)神经元之间的单一突触连接是罕见的。相反,小白蛋白阳性(PV)抑制性神经元与化学和电气突触高度相关。此外,ClaC神经元和PV中间神经元形成频繁的突触连接。如解剖学数据所示,我们发现皮质cor骨传入神经在ClaC神经元和PV中神经元上都形成了单突触连接。然而,在PV中间神经中,对皮层输入的反应相对较强。与此总体电路组织一致,在ClaC神经元中,皮质lau囊传入神经的激活产生了单突触兴奋性反应和突触抑制反应。这些数据表明,单在锁骨内的复发性兴奋性回路不太可能在多种感觉方式之间整合。而是,这种蜂窝组织是对相关输入敏感的电路的典型代表。尽管单个ClaC神经元可能整合了来自不同皮质区域的皮质lau骨输入,但这些结果与最新的建议相吻合,后者暗示了锁骨在检测感觉新颖性或放大相关皮质输入以协调功能相关皮质区域的活动方面。

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