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体外和体内联合电压与钙荧光成像揭示小鼠桶状皮层的阈下和阈上动力学。

Combined voltage and calcium epifluorescence imaging in vitro and in vivo reveals subthreshold and suprathreshold dynamics of mouse barrel cortex.

作者信息

Berger Thomas, Borgdorff Aren, Crochet Sylvain, Neubauer Florian B, Lefort Sandrine, Fauvet Bruno, Ferezou Isabelle, Carleton Alan, Lüscher Hans-Rudolf, Petersen Carl C H

机构信息

Laboratory of Sensory Processing, Brain Mind Institute, Ecole Polytechnique Federale de Lausanne, CH-1015 Lausanne, Switzerland.

出版信息

J Neurophysiol. 2007 May;97(5):3751-62. doi: 10.1152/jn.01178.2006. Epub 2007 Mar 14.


DOI:10.1152/jn.01178.2006
PMID:17360827
Abstract

Cortical dynamics can be imaged at high spatiotemporal resolution with voltage-sensitive dyes (VSDs) and calcium-sensitive dyes (CaSDs). We combined these two imaging techniques using epifluorescence optics together with whole cell recordings to measure the spatiotemporal dynamics of activity in the mouse somatosensory barrel cortex in vitro and in the supragranular layers in vivo. The two optical signals reported distinct aspects of cortical function. VSD fluorescence varied linearly with membrane potential and was dominated by subthreshold postsynaptic potentials, whereas the CaSD signal predominantly reflected local action potential firing. Combining VSDs and CaSDs allowed us to monitor the synaptic drive and the spiking activity of a given area at the same time in the same preparation. The spatial extent of the two dye signals was different, with VSD signals spreading further than CaSD signals, reflecting broad subthreshold and narrow suprathreshold receptive fields. Importantly, the signals from the dyes were differentially affected by pharmacological manipulations, stimulation strength, and depth of isoflurane anesthesia. Combined VSD and CaSD measurements can therefore be used to specify the temporal and spatial relationships between subthreshold and suprathreshold activity of the neocortex.

摘要

利用电压敏感染料(VSDs)和钙敏感染料(CaSDs),可以在高时空分辨率下对皮质动力学进行成像。我们将这两种成像技术与落射荧光光学系统以及全细胞记录相结合,以测量体外小鼠体感桶状皮质和体内颗粒上层的活动时空动态。这两种光学信号反映了皮质功能的不同方面。VSD荧光随膜电位呈线性变化,且主要由阈下突触后电位主导,而CaSD信号主要反映局部动作电位发放。结合使用VSDs和CaSDs使我们能够在同一标本中同时监测给定区域的突触驱动和发放活动。两种染料信号的空间范围不同,VSD信号比CaSD信号传播得更远,反映了广泛的阈下和狭窄的阈上感受野。重要的是,染料发出的信号受到药理学操作、刺激强度和异氟烷麻醉深度的不同影响。因此,联合VSD和CaSD测量可用于确定新皮质阈下和阈上活动之间的时间和空间关系。

相似文献

[1]
Combined voltage and calcium epifluorescence imaging in vitro and in vivo reveals subthreshold and suprathreshold dynamics of mouse barrel cortex.

J Neurophysiol. 2007-5

[2]
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[3]
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[4]
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[10]
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