Ostler D V, Gardner R M, Crapo R O
Comput Biomed Res. 1984 Jun;17(3):229-40. doi: 10.1016/s0010-4809(84)80014-2.
A microprocessor-controlled data gathering system for telemetry and analysis of spirometry waveforms was implemented using a completely digital design. Spirometry waveforms were obtained from an optical shaft encoder attached to a rolling seal spirometer. Time intervals between 10-ml volume changes (volume sampling) were stored. The digital design eliminated problems of analog signal sampling. The system measured flows up to 12 liters/sec with 5% accuracy and volumes up to 10 liters with 1% accuracy. Transmission of 10 waveforms took about 3 min. Error detection assured that no data were lost or distorted during transmission. A pulmonary physician at the central hospital reviewed the volume-time and flow-volume waveforms and interpretations generated by the central computer before forwarding the results and consulting with the rural physician. This system is suitable for use in a major hospital, rural hospital, or small clinic because of the system's simplicity and small size.
采用全数字设计实现了一种用于肺活量波形遥测和分析的微处理器控制数据采集系统。肺活量波形通过连接在滚动密封肺活量计上的光学轴编码器获取。存储10毫升体积变化(体积采样)之间的时间间隔。数字设计消除了模拟信号采样的问题。该系统测量流速高达12升/秒,精度为5%,测量体积高达10升,精度为1%。传输10个波形大约需要3分钟。错误检测确保传输过程中没有数据丢失或失真。中心医院的肺科医生在转发结果并与乡村医生会诊之前,会查看由中央计算机生成的体积-时间和流速-体积波形及解读。由于该系统简单且体积小,适用于大型医院、乡村医院或小型诊所。