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Cortical cholinergic signaling controls the detection of cues.皮质胆碱能信号传导控制线索的检测。
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Topographic organization of the basal forebrain projections to the perirhinal, postrhinal, and entorhinal cortex in rats.大鼠基底前脑向梨状周皮质、嗅周皮质和内嗅皮质投射的拓扑组织
J Comp Neurol. 2016 Aug 15;524(12):2503-15. doi: 10.1002/cne.23967. Epub 2016 Feb 17.
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Monosynaptic Circuit Tracing with Glycoprotein-Deleted Rabies Viruses.使用糖蛋白缺失狂犬病病毒进行单突触回路追踪
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Topographic mapping between basal forebrain cholinergic neurons and the medial prefrontal cortex in mice.小鼠基底前脑胆碱能神经元与内侧前额叶皮质之间的拓扑映射。
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The cholinergic basal forebrain in the ferret and its inputs to the auditory cortex.雪貂的胆碱能基底前脑及其向听觉皮层的投射。
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Rabies virus glycoprotein variants display different patterns in rabies monosynaptic tracing.狂犬病病毒糖蛋白变异体在狂犬病单突触追踪中显示出不同的模式。
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Neurons in the basal forebrain project to the cortex in a complex topographic organization that reflects corticocortical connectivity patterns: an experimental study based on retrograde tracing and 3D reconstruction.基底前脑的神经元以复杂的拓扑组织投射到皮层,这种组织反映了皮质-皮质连接模式:一项基于逆行追踪和三维重建的实验研究。
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Differential innervation of direct- and indirect-pathway striatal projection neurons.直接通路和间接通路纹状体投射神经元的差异神经支配。
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基底前脑胆碱能-听觉皮层网络:初级听觉皮层与非初级听觉皮层区域

Basal Forebrain Cholinergic-Auditory Cortical Network: Primary Versus Nonprimary Auditory Cortical Areas.

作者信息

Chavez Candice, Zaborszky Laszlo

机构信息

Center for Molecular and Behavioral Neuroscience, Rutgers State University, Newark, NJ 07102, USA.

出版信息

Cereb Cortex. 2017 Mar 1;27(3):2335-2347. doi: 10.1093/cercor/bhw091.

DOI:10.1093/cercor/bhw091
PMID:27073229
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6059257/
Abstract

Acetylcholine (ACh) release in the cortex is critical for learning, memory, attention, and plasticity. Here, we explore the cholinergic and noncholinergic projections from the basal forebrain (BF) to the auditory cortex using classical retrograde and monosynaptic viral tracers deposited in electrophysiologically identified regions of the auditory cortex. Cholinergic input to both primary (A1) and nonprimary auditory cortical (belt) areas originates in a restricted area in the caudal BF within the globus pallidus (GP) and in the dorsal part of the substantia innominata (SId). On the other hand, we found significant differences in the proportions of cholinergic and noncholinergic projection neurons to primary and nonprimary auditory areas. Inputs to A1 projecting cholinergic neurons were restricted to the GP, caudate-putamen, and the medial part of the medial geniculate body, including the posterior intralaminar thalamic group. In addition to these areas, afferents to belt-projecting cholinergic neurons originated from broader areas, including the ventral secondary auditory cortex, insular cortex, secondary somatosensory cortex, and the central amygdaloid nucleus. These findings support a specific BF projection pattern to auditory cortical areas. Additionally, these findings point to potential functional differences in how ACh release may be regulated in the A1 and auditory belt areas.

摘要

乙酰胆碱(ACh)在皮质中的释放对学习、记忆、注意力和可塑性至关重要。在此,我们使用经典逆行和顺行病毒示踪剂,将其注入电生理鉴定的听觉皮质区域,以探索基底前脑(BF)至听觉皮质的胆碱能和非胆碱能投射。初级(A1)和非初级听觉皮质(带状)区域的胆碱能输入均起源于苍白球(GP)内尾侧BF的一个受限区域以及无名质(SId)的背侧部分。另一方面,我们发现投射到初级和非初级听觉区域的胆碱能和非胆碱能投射神经元比例存在显著差异。投射到A1的胆碱能神经元的输入仅限于GP、尾状核 - 壳核以及内侧膝状体的内侧部分,包括丘脑后内侧核群。除了这些区域外,投射到带状区域的胆碱能神经元的传入纤维起源于更广泛的区域,包括腹侧次级听觉皮质、岛叶皮质、次级体感皮质和中央杏仁核。这些发现支持了BF至听觉皮质区域的特定投射模式。此外,这些发现还指出了A1和听觉带状区域中乙酰胆碱释放的调节方式可能存在潜在功能差异。