O'Leary D P, Black F O, Wall C, Traini L
J Med Syst. 1980;4(2):227-36. doi: 10.1007/BF02222465.
A vestibular testing laboratory with five test stations was implemented as a clinical research and testing facility, automating and adapting tests for patients with inner-ear balance disorders. These were designed to quantitate postural control, and eye movement response to rotational, caloric, and visual (optokinetic) stimuli. Microprocessors were used as satellite processors in a star network under hierarchical control of a host minicomputer. All disk storage was controlled by the host, with data transfer from satellites via parallel interfaces. Network software was designed and implemented to be under control of the host in a foreground-background structure. The practical operation of this laboratory required that technicians at each satellite test station initiate, perform, and complete an individual test in dependently of other tests. Examples from two test stations are presented. A 2-year data base of test results provides important multitest correlations for use in diagnostic evaluations.
一个拥有五个测试站的前庭测试实验室作为临床研究和测试设施得以实施,它能自动进行并调整针对内耳平衡失调患者的测试。这些测试旨在量化姿势控制以及眼睛对旋转、冷热和视觉(视动)刺激的反应。微处理器作为卫星处理器用于星型网络中,由一台主小型计算机进行分层控制。所有磁盘存储均由主机控制,数据通过并行接口从卫星传输。网络软件设计并实现为以前台 - 后台结构在主机控制下运行。该实验室的实际操作要求每个卫星测试站的技术人员独立于其他测试启动、执行并完成单个测试。文中给出了两个测试站的示例。一个为期两年的测试结果数据库为诊断评估提供了重要的多项测试相关性数据。