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Use of Push-Pull Superfusion Technique for Identifying Neurotransmitters Involved in Brain Functions: Achievements and Perspectives

机译:推挽式融合技术在识别涉及脑功能的神经递质中的应用:成就和观点

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摘要

The push-pull superfusion technique (PPST) is a procedure for in vivo examination of transmitter release in distinct brain areas. This technique allows to investigate dynamics of transmitter release both under normal and experimentally evoked conditions. The PPST can be modified so that it is possible to determine release of endogenous transmitters simultaneously with electroencephalogram (EEG) recordings, recordings of evoked potentials or the on-line determination of endogenous nitric oxide (NO) released into the synaptic cleft. Because of the good time resolution, the method provides further the possibility to modify the collection periods of superfusates depending on the neuronal function that is analyzed. For instance, investigation of central cardiovascular control, behavioral tasks or mnemonic processes requires very short collection periods, because changes in transmitter release occur within seconds. Even more important is the time resolution when rates of transmitter release are correlated with evoked extracellular potentials or EEG recordings. This review provides an overview of the different devices which might be combined with the PPST and perspectives for future work.
机译:推挽式超融合技术(PPST)是一种在体内检查不同大脑区域中递质释放的程序。这项技术可以研究正常和实验诱发条件下变送器释放的动力学。可以对PPST进行修改,以便可以与脑电图(EEG)记录,诱发电位记录或在线测定释放到突触间隙中的内源性一氧化氮(NO)同时测定内源性递质的释放。由于良好的时间分辨率,该方法进一步提供了根据所分析的神经元功能修改超融合物的收集时间的可能性。例如,对中央心血管控制,行为任务或助记过程的调查需要非常短的收集时间,因为变送器释放的变化会在几秒钟内发生。当发射器释放速率与诱发的细胞外电位或脑电图记录相关时,时间分辨率就显得尤为重要。这篇综述概述了可能与PPST结合使用的不同设备,以及对未来工作的看法。

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