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应用峰电位分类程序分析小龙虾腹侧浅屈肌标本中的记录:一种研究神经调质对轴突和突触作用的高分辨率方法。

Application of a spike sorting procedure to analyze recordings in the crayfish ventral superficial flexor preparation: A high resolution approach to the study of neuromodulators on axons and synapses.

作者信息

Inam Zaina Sohail, Nelamangala Shruti Kamala, Lin Jen-Wei

机构信息

Department of Biology, Boston University, Boston, MA, 02215.

出版信息

J Undergrad Neurosci Educ. 2014 Mar 15;12(2):A140-9. eCollection 2014 Spring.

Abstract

The crayfish ventral superficial flexor (VSF) is innervated by the ventral branch of the third nerve. This nerve and muscle system is tonic, and is responsible for posture control of the animal. The easy accessibility of the third nerve and its muscle fibers, along with its display of tonic activity in vitro, make this preparation ideal for observing axonal action potentials and synaptic responses. As a result, this preparation has often been adopted for undergraduate electrophysiology laboratories. This report describes application of a spike sorting procedure to simultaneously recorded traces from the third nerve and associated muscle fiber. This procedure allows for isolation of action potentials arising from each of the six axons in the third nerve. Separation of action potentials and their corresponding synaptic responses from large data sets, with sample sizes in the thousands, enables us to perform averaging and to analyze waveforms of action potentials and synaptic responses with a high resolution. With this high resolution approach, we document variations in the shape of action potentials in the third nerve and in synaptic potential in muscle fibers. The approach described here can be used for detailed study of the effects mediated by neuromodulators and drugs. An example of such an application is illustrated using 50 μM GABA. Several possible student projects using this approach are outlined and discussed.

摘要

小龙虾腹侧浅屈肌(VSF)由第三神经的腹侧分支支配。该神经和肌肉系统具有紧张性,负责动物的姿势控制。第三神经及其肌纤维易于获取,且在体外表现出紧张性活动,这使得该标本非常适合观察轴突动作电位和突触反应。因此,该标本常被用于本科电生理实验室。本报告描述了一种尖峰分类程序在同时记录第三神经和相关肌纤维痕迹上的应用。该程序能够分离出第三神经中六条轴突各自产生的动作电位。从数千个样本大小的大数据集中分离动作电位及其相应的突触反应,使我们能够进行平均,并以高分辨率分析动作电位和突触反应的波形。通过这种高分辨率方法,我们记录了第三神经中动作电位形状和肌纤维中突触电位的变化。这里描述的方法可用于详细研究神经调质和药物介导的效应。使用50μMγ-氨基丁酸(GABA)举例说明了这样一种应用。概述并讨论了使用这种方法的几个可能的学生项目。

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