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High-resolution labeling and functional manipulation of specific neuron types in mouse brain by Cre-activated viral gene expression.通过Cre激活的病毒基因表达对小鼠大脑中特定神经元类型进行高分辨率标记和功能操纵。
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High-speed imaging reveals neurophysiological links to behavior in an animal model of depression.高速成像揭示了抑郁症动物模型中神经生理学与行为之间的联系。
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Massive and specific dysregulation of direct cortical input to the hippocampus in temporal lobe epilepsy.颞叶癫痫中,大脑皮质对海马体的直接输入存在大量且特定的失调。
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Laminar and columnar organization of ascending excitatory projections to layer 2/3 pyramidal neurons in rat barrel cortex.大鼠桶状皮层中向第2/3层锥体神经元的兴奋性投射的层状和柱状组织。
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通过电压敏感染料成像和激光扫描光刺激的新型组合实现皮质回路的高精度快速功能映射。

High precision and fast functional mapping of cortical circuitry through a novel combination of voltage sensitive dye imaging and laser scanning photostimulation.

作者信息

Xu Xiangmin, Olivas Nicholas D, Levi Rafael, Ikrar Taruna, Nenadic Zoran

机构信息

Dept. of Anatomy and Neurobiology, School of Medicine, Univ. of California, Irvine, CA 92697-1275, USA.

出版信息

J Neurophysiol. 2010 Apr;103(4):2301-12. doi: 10.1152/jn.00992.2009. Epub 2010 Feb 3.

DOI:10.1152/jn.00992.2009
PMID:20130040
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2853294/
Abstract

The development of modern neuroscience tools is critical for deciphering brain circuit organization and function. An important aspect for technical development is to enhance each technique's advantages and compensate for limitations. We developed a high-precision and fast functional mapping technique in brain slices that incorporates the spatial precision of activation that can be achieved by laser-scanning photostimulation with rapid and high-temporal resolution assessment of evoked network activity that can be achieved by voltage-sensitive dye imaging. Unlike combination of whole cell recordings with photostimulation for mapping local circuit inputs to individually recorded neurons, this innovation is a new photostimulation-based technique to map cortical circuit output and functional connections at the level of neuronal populations. Here we report on this novel technique in detail and show its effective applications in mapping functional connections and circuit dynamics in mouse primary visual cortex and hippocampus. Given that this innovation enables rapid mapping and precise evaluation of cortical organization and function, it can have broad impacts in the field of cortical circuitry.

摘要

现代神经科学工具的发展对于解读脑回路的组织和功能至关重要。技术发展的一个重要方面是增强每种技术的优势并弥补其局限性。我们在脑片中开发了一种高精度、快速的功能映射技术,该技术结合了激光扫描光刺激所能实现的激活空间精度以及电压敏感染料成像所能实现的对诱发网络活动的快速、高时间分辨率评估。与将全细胞记录与光刺激相结合以映射局部回路输入到单个记录的神经元不同,这项创新是一种基于光刺激的新技术,用于在神经元群体水平上映射皮质回路输出和功能连接。在此,我们详细报告这项新技术,并展示其在绘制小鼠初级视觉皮层和海马体中的功能连接和回路动力学方面的有效应用。鉴于这项创新能够快速映射并精确评估皮质组织和功能,它可能会对皮质回路领域产生广泛影响。