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首页> 外文期刊>Undersea and Hyperbaric Medicine: Journal of the Undersea and Hyperbaric Medical Society >Voltage sensitive dye imaging of transient neuronal assemblies in brain slices under hyperbaric conditions.
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Voltage sensitive dye imaging of transient neuronal assemblies in brain slices under hyperbaric conditions.

机译:高压条件下脑片中瞬时神经元组件的电压敏感染料成像。

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摘要

We have developed a high pressure optical cell to study large-scale transient neuronal coalitions--"assemblies" using voltage sensitive dye (VSD) fluorescence combined with fast CCD imaging of brain slices under hyperbaric conditions. The new cell has been tested at pressures up to P = 150-200 atm, corresponding to the range over which effects such as "pressure-reversal" of anaesthesia have been described previously. Brain slices were maintained in a flow of artificial cerebrospinal fluid (aCSF) and hyperbaric conditions were controlled to within +/- 0.2 atm using a back-pressure regulator placed in the pumping system. Preliminary VSD imaging experiments were carried out on rat hippocampal slices at pressures up to P approximately 50 atm. An electrode placed in the CA3 region was used to stimulate a signal along the Schaffer collateral towards CA1. First results indicate that good VSD data can be obtained that can be analysed to provide a new view on how hydrostatic pressurisation affects the dynamic propagation of neuronal assemblies.
机译:我们已经开发了一种高压光学电池,用于研究大型瞬态神经元联盟-使用高压敏感的电压敏感染料(VSD)荧光与脑片的快速CCD成像相结合的“集合”。新电池已经在高达P = 150-200 atm的压力下进行了测试,该压力对应于先前已经描述过诸如麻醉的“压力反向”之类的作用范围。将脑片保持在人工脑脊液(aCSF)的流动中,并使用放置在泵系统中的背压调节器将高压条件控制在+/- 0.2 atm内。在高达约50 atm的P压力下对大鼠海马切片进行了VSD初步成像实验。放置在CA3区域中的电极用于沿Schaffer侧支向CA1刺激信号。初步结果表明,可以获得良好的VSD数据,可以对其进行分析,以提供有关静水压力如何影响神经元组件动态传播的新观点。

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