Kalkman C J
Department of Anesthesiology, Academic Hospital University of Amsterdam, The Netherlands.
J Clin Monit. 1995 Jan;11(1):51-8. doi: 10.1007/BF01627421.
Computer-based data acquisition systems play an important role in clinical monitoring and in the development of new monitoring tools. LabVIEW (National Instruments, Austin, TX) is a data acquisition and programming environment that allows flexible acquisition and processing of analog and digital data. The main feature that distinguishes LabVIEW from other data acquisition programs is its highly modular graphical programming language, "G," and a large library of mathematical and statistical functions. The advantage of graphical programming is that the code is flexible, reusable, and self-documenting. Subroutines can be saved in a library and reused without modification in other programs. This dramatically reduces development time and enables researchers to develop or modify their own programs. LabVIEW uses a large amount of processing power and computer memory, thus requiring a powerful computer. A large-screen monitor is desirable when developing larger applications. LabVIEW is excellently suited for testing new monitoring paradigms, analysis algorithms, or user interfaces. The typical LabVIEW user is the researcher who wants to develop a new monitoring technique, a set of new (derived) variables by integrating signals from several existing patient monitors, closed-loop control of a physiological variable, or a physiological simulator.
基于计算机的数据采集系统在临床监测和新监测工具的开发中发挥着重要作用。LabVIEW(美国国家仪器公司,得克萨斯州奥斯汀)是一种数据采集和编程环境,可灵活采集和处理模拟及数字数据。LabVIEW与其他数据采集程序的主要区别在于其高度模块化的图形编程语言“G”以及大量的数学和统计函数库。图形编程的优点是代码灵活、可重复使用且具有自文档性。子程序可保存在库中,无需修改即可在其他程序中重复使用。这大大减少了开发时间,并使研究人员能够开发或修改自己的程序。LabVIEW需要大量的处理能力和计算机内存,因此需要一台功能强大的计算机。开发大型应用程序时,大屏幕显示器是理想之选。LabVIEW非常适合测试新的监测范式、分析算法或用户界面。典型的LabVIEW用户是想要开发新监测技术的研究人员,通过整合来自多个现有患者监测仪的信号来开发一组新的(派生)变量,对生理变量进行闭环控制,或开发生理模拟器。