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人体运动实验室中计算机化数据采集的基础

Fundamentals of computerised data acquisition in the human performance laboratory.

作者信息

McClenaghan B A, Literowich W

机构信息

Department of Physical Education, University of South Carolina.

出版信息

Sports Med. 1987 Nov-Dec;4(6):425-45. doi: 10.2165/00007256-198704060-00003.

Abstract

Researchers of the future will depend upon computer technology to address questions that previously could not be answered using traditional methods of data acquisition. Recent advances in computer design and software availability have eliminated many of the limitations previously associated with computer use in the laboratory setting. Although computerisation facilitates the acquisition of laboratory data, identification of errors introduced into the measurement is often more difficult. The laboratory computer is only one component of an automated data acquisition system. A system designed to collect physiological data comprises several primary components, including: (a) sensing element; (b) signal amplification/conditioning circuits; (c) analogue display; (d) computer interface; (e) laboratory computer; and (f) acquisition software. The acquisition and conditioning of analogue signals is accomplished using traditional laboratory procedures familiar to the researcher. Converting this analogue signal into a digital format used by the computer, however, represents new techniques. Fundamentals of computerised data acquisition are discussed. An understanding of how an automated data acquisition system is configured and the techniques used to transform the values will assist the user in identifying sources of error introduced into the measurement. Additionally, familiarization with the methods of computerisation will provide insight into future applications of computer technology in the human performance laboratory.

摘要

未来的研究人员将依靠计算机技术来解决以前使用传统数据采集方法无法回答的问题。计算机设计和软件可用性方面的最新进展消除了以前在实验室环境中使用计算机时存在的许多限制。尽管计算机化便于获取实验室数据,但识别测量中引入的误差往往更加困难。实验室计算机只是自动数据采集系统的一个组成部分。一个旨在收集生理数据的系统包括几个主要组件,包括:(a) 传感元件;(b) 信号放大/调节电路;(c) 模拟显示器;(d) 计算机接口;(e) 实验室计算机;以及 (f) 采集软件。模拟信号的采集和调节是使用研究人员熟悉的传统实验室程序完成的。然而,将这种模拟信号转换为计算机使用的数字格式则代表了新技术。本文讨论了计算机化数据采集的基本原理。了解自动数据采集系统的配置方式以及用于转换数值的技术将有助于用户识别测量中引入的误差来源。此外,熟悉计算机化方法将有助于深入了解计算机技术在人类绩效实验室中的未来应用。

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