Pinciroli F, Pellegrini A, Falcetti G, Antognini F
G Ital Cardiol. 1987 Feb;17(2):151-9.
The drop in hardware costs has fostered the widespread use of home-computing systems. Because of this situation, the home-computer can be profitably employed in some highly specialized fields. We believe electrocardiographic instrumentation to be one of such fields. We have built an electrocardiomultigraphimeter (ECXGM), which can be considered as a development of the traditional electrocardiograph that fulfills some additional functions. Our prototype features vectorcardiography, polar coordinate tracing, automatic measurements between fiducial points selected by the user with a joystick and cursor on the screen and trace filing by patient, on labelled floppy disks. The conventional hardware consists of a Commodore 64 console, a monitor, two floppy disk drives and an Epson HI-80 plotter, all of them readily available. The special hardware consists of an A/D converter, which receives the electrocardiographic signal downstream of the amplifying stage which is a standard feature of any electrocardiograph. Prototype development mostly involved the software. Difficulties were posed by the limited resources available on home-computers, an important point in view of the problem to be tackled. The solutions adopted are based on the use of the ASSEMBLER language, overloading techniques and on minimizing the interconnections among the software modules defined in a compactly built program. The result is an instrument having significantly advanced clinico-scientific capabilities as compared to current electrocardiographic instruments. This factor, and the class of the hardware used and special software built confer originality to this work.(ABSTRACT TRUNCATED AT 250 WORDS)
硬件成本的下降推动了家用计算机系统的广泛使用。鉴于这种情况,家用计算机可在一些高度专业化领域得到有益应用。我们认为心电图仪器领域就是其中之一。我们构建了一台心电图多导仪(ECXGM),它可被视为传统心电图仪的一种发展,具备一些额外功能。我们的原型机具有向量心电图、极坐标描记、用户通过操纵杆和屏幕上的光标选择基准点之间的自动测量以及按患者进行轨迹存档(存储在有标签的软盘上)等功能。传统硬件包括一台Commodore 64控制台、一台显示器、两个软盘驱动器和一台爱普生HI - 80绘图仪,所有这些都很容易获得。特殊硬件包括一个A/D转换器,它在放大阶段的下游接收心电图信号(这是任何心电图仪的标准配置)。原型开发主要涉及软件。鉴于要解决的问题,家用计算机上可用资源有限带来了困难。所采用的解决方案基于汇编语言的使用、过载技术以及尽量减少紧凑构建的程序中定义的软件模块之间的互连。结果是,与当前的心电图仪器相比,该仪器具有显著先进的临床科学能力。这个因素,以及所使用的硬件类别和所构建的特殊软件赋予了这项工作独特性。(摘要截短为250字)