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Communication in Neural Circuits: Tools, Opportunities, and Challenges

机译:神经回路中的交流:工具,机遇和挑战

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摘要

Communication, the effective delivery of information, is fundamental to life across all scales and species. Nervous systems (by necessity) may be most specifically adapted among biological tissues for high rate and complexity of information transmitted, and thus, the properties of neural tissue and principles of its organization into circuits may illuminate capabilities and limitations of biological communication. Here, we consider recent developments in tools for studying neural circuits with particular attention to defining neuronal cell types by input and output information streams- i.e., by how they communicate. Complementing approaches that define cell types by virtue of genetic promoter/enhancer properties, this communication-based approach to defining cell types operationally by input/output (I/O) relationships links structure and function, resolves difficulties associated with single-genetic-feature definitions, leverages technology for observing and testing significance of precisely these I/O relationships in intact brains, and maps onto processes through which behavior may be adapted during development, experience, and evolution.
机译:交流,即信息的有效传递,是所有规模和物种生活的基础。神经系统(根据需要)可能最适合在生物组织之间进行传输,以提高信息的传输速率和复杂性,因此,神经组织的属性及其将其组织为电路的原理可能会阐明生物通信的能力和局限性。在这里,我们考虑用于研究神经回路的工具的最新发展,特别注意通过输入和输出信息流(即通过它们的通信方式)来定义神经元细胞类型。通过遗传启动子/增强子特性定义细胞类型的补充方法,这种基于通信的方法通过输入/输出(I / O)关系在操作上定义细胞类型,从而链接结构和功能,解决了与单基因特征定义相关的难题利用技术来观察和测试完整大脑中这些I / O关系的重要性,并映射到可以在开发,体验和进化过程中调整行为的过程。

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