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利用重组狂犬病毒技术揭示神经元回路的秘密。

Revealing the secrets of neuronal circuits with recombinant rabies virus technology.

机构信息

Neurocentre Magendie, INSERM U862 Bordeaux, France ; University of Bordeaux Bordeaux, France.

出版信息

Front Neural Circuits. 2013 Jan 24;7:2. doi: 10.3389/fncir.2013.00002. eCollection 2013.

Abstract

An understanding of how the brain processes information requires knowledge of the architecture of its underlying neuronal circuits, as well as insights into the relationship between architecture and physiological function. A range of sophisticated tools is needed to acquire this knowledge, and recombinant rabies virus (RABV) is becoming an increasingly important part of this essential toolbox. RABV has been recognized for years for its properties as a synapse-specific trans-neuronal tracer. A novel genetically modified variant now enables the investigation of specific monosynaptic connections. This technology, in combination with other genetic, physiological, optical, and computational tools, has enormous potential for the visualization of neuronal circuits, and for monitoring and manipulating their activity. Here we will summarize the latest developments in this fast moving field and provide a perspective for the use of this technology for the dissection of neuronal circuit structure and function in the normal and diseased brain.

摘要

理解大脑如何处理信息需要了解其基础神经元回路的结构,以及了解结构与生理功能之间的关系。要获得这些知识,需要一系列复杂的工具,而重组狂犬病毒(RABV)正成为这个必不可少的工具包中越来越重要的一部分。多年来,RABV 因其作为突触特异性跨神经元示踪剂的特性而备受关注。现在,一种新型的遗传修饰变体使特定的单突触连接的研究成为可能。该技术与其他遗传、生理、光学和计算工具相结合,在可视化神经元回路以及监测和操纵其活动方面具有巨大的潜力。在这里,我们将总结这一快速发展领域的最新进展,并为该技术在正常和患病大脑中用于解析神经元回路结构和功能提供一个视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9133/3553424/d264f88629c1/fncir-07-00002-g0001.jpg

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