Török B
Medical University Pécs, Department of Ophthalmology, Hungary.
Doc Ophthalmol. 1990 Sep;75(2):189-97. doi: 10.1007/BF00146555.
We developed a personal computer-based system for clinical electrophysiologic measurements. The computer interfaced with a commercially available A/D converter, a low-noise isolation preamplifier, filter circuits, pattern and Ganzfeld stimulators, and a hardcopy unit. Separate programs were developed for electroretinography (ERG), pattern ERG and simultaneous visual evoked potential (VEP), flash and pattern-shift VEP, and electro-oculographic measurements. The complete control of the applied hardware (eg, stimulus control, automatic gain, and filter selection) is a common feature of the computer programs. These programs provide oscilloscopic functions, overload protection, artifact elimination, averaging, automatic peak latency and amplitude determination, baseline correction, smoothing, and digital filtering. The results can be presented on matrix, laser printers, or digital plotters. The hardware components and the features of the driver software are demonstrated on normal and pathologic signals.
我们开发了一种基于个人计算机的临床电生理测量系统。该计算机与市售的A/D转换器、低噪声隔离前置放大器、滤波电路、图形和全视野刺激器以及硬拷贝单元相连。针对视网膜电图(ERG)、图形ERG和同步视觉诱发电位(VEP)、闪光和图形翻转VEP以及眼电图测量分别开发了程序。计算机程序的一个共同特点是对所应用硬件的完全控制(例如,刺激控制、自动增益和滤波器选择)。这些程序提供示波器功能、过载保护、伪迹消除、平均、自动峰值潜伏期和幅度测定、基线校正、平滑以及数字滤波。结果可以在矩阵打印机、激光打印机或数字绘图仪上呈现。通过正常和病理信号展示了硬件组件和驱动软件的特点。