杏仁核的基底前脑神经支配:解剖学和计算探索。

IF 2.7 3区 医学 Q1 ANATOMY & MORPHOLOGY
Tuğçe Tuna, Tyler Banks, Gregory Glickert, Cem Sevinc, Satish S Nair, Gunes Unal
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引用次数: 0

摘要

哺乳动物杏仁核的θ波振荡与厌恶记忆的处理、编码和检索有关。在海马体中,网络θ波振荡的功率由基底前脑(BF) gaba能投射调节。在这里,我们结合解剖学和计算方法来研究类似的BF投射到杏仁核复合体是否提供了类似的局部网络活动调制。我们使用荧光免疫组织化学逆行示踪来识别针对杏仁核复合体输入(侧核和基底外核)和输出(中央核和终纹中央床核)区域的胆碱能和非胆碱能小白蛋白或钙结合蛋白免疫反应的BF神经元亚群。我们观察到一个密集的非胆碱能,推测是gaba能的投射,从腹侧pallidum (VP)和nominata (SI)到基底外侧杏仁核(BLA)。利用病毒顺行示踪和跨突触标记证实了VP/SI轴突对BLA的投射。我们在1000个细胞的生物物理现实网络模型中测试了VP/SI-BLA通路的电位功能,该模型包含了BLA的主要神经元和三个主要的中间神经元组,以及外源性谷氨酸能、胆碱能和VP/SI gaba能输入。我们在计算机上观察到,VP/SI gaba能投射的theta调节通过选择性支配表达小蛋白的局部中间神经元,增强了BLA中的theta振荡。在BLA模型中,小白蛋白(而非生长抑素或calretinin)表达的中间神经元的消融术会降低θ波功率。这些结果表明,远距离BF - gaba能投射可能通过形成共同的中间神经元型和振荡相特异性去抑制基序来调节其靶区域的网络活动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Basal forebrain innervation of the amygdala: an anatomical and computational exploration.

Theta oscillations of the mammalian amygdala are associated with processing, encoding and retrieval of aversive memories. In the hippocampus, the power of the network theta oscillation is modulated by basal forebrain (BF) GABAergic projections. Here, we combine anatomical and computational approaches to investigate if similar BF projections to the amygdaloid complex provide an analogous modulation of local network activity. We used retrograde tracing with fluorescent immunohistochemistry to identify cholinergic and non-cholinergic parvalbumin- or calbindin-immunoreactive BF neuronal subgroups targeting the input (lateral and basolateral nuclei) and output (central nucleus and the central bed nucleus of the stria terminalis) regions of the amygdaloid complex. We observed a dense non-cholinergic, putative GABAergic projection from the ventral pallidum (VP) and the substantia innominata (SI) to the basolateral amygdala (BLA). The VP/SI axonal projections to the BLA were confirmed using viral anterograde tracing and transsynaptic labeling. We tested the potential function of this VP/SI-BLA pathway in a 1000-cell biophysically realistic network model, which incorporated principal neurons and three major interneuron groups of the BLA, together with extrinsic glutamatergic, cholinergic, and VP/SI GABAergic inputs. We observed in silico that theta-modulation of VP/SI GABAergic projections enhanced theta oscillations in the BLA via their selective innervation of the parvalbumin-expressing local interneurons. Ablation of parvalbumin-, but not somatostatin- or calretinin-expressing, interneurons reduced theta power in the BLA model. These results suggest that long-range BF GABAergic projections may modulate network activity at their target regions through the formation of a common interneuron-type and oscillatory phase-specific disinhibitory motif.

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来源期刊
Brain Structure & Function
Brain Structure & Function 医学-解剖学与形态学
CiteScore
6.00
自引率
6.50%
发文量
168
审稿时长
8 months
期刊介绍: Brain Structure & Function publishes research that provides insight into brain structure−function relationships. Studies published here integrate data spanning from molecular, cellular, developmental, and systems architecture to the neuroanatomy of behavior and cognitive functions. Manuscripts with focus on the spinal cord or the peripheral nervous system are not accepted for publication. Manuscripts with focus on diseases, animal models of diseases, or disease-related mechanisms are only considered for publication, if the findings provide novel insight into the organization and mechanisms of normal brain structure and function.
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