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Macro Programming with NIH Image For Implementing ASTM C 457

机译:用于实现ASTM C 457的NIH图像的宏编程

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Often when automated data collection and analysis is desired, the limiting factor is finding the necessary instrumentation and software to perform the required task. Of these, software is typically the most difficult to obtain. For applications like image analysis of concrete, the market for software is very limited and there is little incentive for commercial instrumentation manufacturers to produce such products. Therefore, it is often left to the researcher to "build their own" from available off the shelf hardware controlled by their own software. Clearly, starting with nothing and generating an operating program is more than most microscopists or analysts desire to undertake. However, often existing software is available that can be "customized" through the use of a macro programming language. Macros are typically easier to write than native computer code (e.g. FORTRAN, Pascal) and make use of existing routines already built into a program. Macros allow for constructing new commands or functions that operate within the defining program. Often, macros can be written simply by enabling a recording mode and selecting menu choices from the program of interest in the proper sequence to complete the required task. Then, the recorded set of menu commands can be executed by a command or key stroke called a "hot key" and the process is repeated under computer control. The purpose of this presentation is to introduce macro programming by demonstrating a set of image analysis routines written for the National Institutes of Health (NIH) Image 1.62 program that can be used to perform an ASTM C 457 (1) air void analysis and measure other properties of the concrete microstructure including aggregate gradation.
机译:通常,当需要自动数据收集和分析时,限制因素正在找到执行所需任务的必要仪器和软件。其中,软件通常是最难以获得的。对于混凝土图像分析等应用,软件市场非常有限,商业仪表制造商几乎没有激励,以生产此类产品。因此,它通常留给研究人员“建立自己的”,从自己的软件控制的货架硬件上。显然,从无开始,没有发育操作程序,比大多数显微镜手或分析师愿望。但是,通常可以通过使用宏编程语言“自定义”现有软件。宏通常比本机计算机代码(例如Fortran,Pascal)更容易写入,并利用已内置于程序中的现有例程。宏允许构建在定义程序中运行的新命令或功能。通常,可以通过启用录制模式并从适当的序列中选择感兴趣程序中的菜单选择来完成宏来编写宏,以完成所需的任务。然后,可以通过命令或密钥笔划执行所录制的菜单命令,并且在计算机控件下重复该过程。本演示文稿的目的是通过展示为国家健康研究所(NIH)图像1.62程序编写的一组图像分析例程来引入宏编程。可用于执行ASTM C 457(1)空中空隙分析和措施的程序混凝土微观结构的特性,包括骨料灰分。

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