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Pulser:一款用户友好的、基于图形用户界面的软件,用于在使用适用于Windows的Spike2进行数据采集期间控制刺激。

Pulser: user-friendly, graphical user-interface based software for controlling stimuli during data acquisition with Spike2 for Windows.

作者信息

Lidierth Malcolm

机构信息

Neural Injury and Repair Group, Hodgkin Building, King's College London, London SE1 1UL, UK.

出版信息

J Neurosci Methods. 2005 Feb 15;141(2):243-50. doi: 10.1016/j.jneumeth.2004.06.014.

Abstract

This paper describes software that runs in the Spike2 for Windows environment and provides a versatile tool for generating stimuli during data acquisition from the 1401 family of interfaces (CED, UK). A graphical user interface (GUI) is used to provide dynamic control of stimulus timing. Both single stimuli and trains of stimuli can be generated. The pulse generation routines make use of programmable variables within the interface and allow these to be rapidly changed during an experiment. The routines therefore provide the ease-of-use associated with external, stand-alone pulse generators. Complex stimulus protocols can be loaded from an external text file and facilities are included to create these files through the GUI. The software consists of a Spike2 script that runs in the host PC, and accompanying routines written in the 1401 sequencer control code, that run in the 1401 interface. Handshaking between the PC and the interface card are built into the routines and provides for full integration of sampling, analysis and stimulus generation during an experiment. Control of the 1401 digital-to-analogue converters is also provided; this allows control of stimulus amplitude as well as timing and also provides a sample-hold feature that may be used to remove DC offsets and drift from recorded data.

摘要

本文介绍了一款在适用于Windows的Spike2环境中运行的软件,它为从1401系列接口(CED,英国)进行数据采集时生成刺激提供了一个多功能工具。图形用户界面(GUI)用于提供对刺激定时的动态控制。既可以生成单个刺激,也可以生成刺激序列。脉冲生成例程利用接口内的可编程变量,并允许在实验过程中快速更改这些变量。因此,这些例程提供了与外部独立脉冲发生器相关的易用性。复杂的刺激协议可以从外部文本文件加载,并且通过GUI包含了创建这些文件的功能。该软件由在主机PC上运行的Spike2脚本以及用1401序列器控制代码编写的配套例程组成,这些例程在1401接口中运行。PC与接口卡之间的握手功能内置于例程中,并在实验期间实现了采样、分析和刺激生成的完全集成。还提供了对1401数模转换器的控制;这允许控制刺激幅度以及定时,并且还提供了一个采样保持功能,可用于去除记录数据中的直流偏移和漂移。

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