Human hippocampal CA3 uses specific functional connectivity rules for efficient associative memory

IF 45.5 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Cell Pub Date : 2024-12-11 DOI:10.1016/j.cell.2024.11.022
Jake F. Watson, Victor Vargas-Barroso, Rebecca J. Morse-Mora, Andrea Navas-Olive, Mojtaba R. Tavakoli, Johann G. Danzl, Matthias Tomschik, Karl Rössler, Peter Jonas
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Abstract

Our brain has remarkable computational power, generating sophisticated behaviors, storing memories over an individual’s lifetime, and producing higher cognitive functions. However, little of our neuroscience knowledge covers the human brain. Is this organ truly unique, or is it a scaled version of the extensively studied rodent brain? Combining multicellular patch-clamp recording with expansion-based superresolution microscopy and full-scale modeling, we determined the cellular and microcircuit properties of the human hippocampal CA3 region, a fundamental circuit for memory storage. In contrast to neocortical networks, human hippocampal CA3 displayed sparse connectivity, providing a circuit architecture that maximizes associational power. Human synapses showed unique reliability, high precision, and long integration times, exhibiting both species- and circuit-specific properties. Together with expanded neuronal numbers, these circuit characteristics greatly enhanced the memory storage capacity of CA3. Our results reveal distinct microcircuit properties of the human hippocampus and begin to unravel the inner workings of our most complex organ.

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人类海马CA3使用特定的功能连接规则进行有效的联想记忆
我们的大脑具有非凡的计算能力,产生复杂的行为,在个人的一生中存储记忆,并产生更高的认知功能。然而,我们的神经科学知识很少涉及人类的大脑。这个器官真的是独一无二的,还是被广泛研究的啮齿动物大脑的缩小版?结合多细胞膜片钳记录与基于扩展的超分辨率显微镜和全尺寸模型,我们确定了人类海马CA3区域的细胞和微电路特性,CA3区域是记忆存储的基本电路。与新皮层网络相比,人类海马CA3显示出稀疏的连通性,提供了一种最大化联想能力的电路结构。人类突触表现出独特的可靠性、高精度和较长的整合时间,显示出物种和电路特有的特性。加上神经元数量的增加,这些电路特性极大地增强了CA3的记忆存储能力。我们的研究结果揭示了人类海马体独特的微电路特性,并开始揭开我们最复杂器官的内部工作原理。
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来源期刊
Cell
Cell 生物-生化与分子生物学
CiteScore
110.00
自引率
0.80%
发文量
396
审稿时长
2 months
期刊介绍: Cells is an international, peer-reviewed, open access journal that focuses on cell biology, molecular biology, and biophysics. It is affiliated with several societies, including the Spanish Society for Biochemistry and Molecular Biology (SEBBM), Nordic Autophagy Society (NAS), Spanish Society of Hematology and Hemotherapy (SEHH), and Society for Regenerative Medicine (Russian Federation) (RPO). The journal publishes research findings of significant importance in various areas of experimental biology, such as cell biology, molecular biology, neuroscience, immunology, virology, microbiology, cancer, human genetics, systems biology, signaling, and disease mechanisms and therapeutics. The primary criterion for considering papers is whether the results contribute to significant conceptual advances or raise thought-provoking questions and hypotheses related to interesting and important biological inquiries. In addition to primary research articles presented in four formats, Cells also features review and opinion articles in its "leading edge" section, discussing recent research advancements and topics of interest to its wide readership.
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