Vincent R, English M J, Mackintosh A F, Stroud N, Chamberlain D A, Woollons D J
J Biomed Eng. 1980 Jan;2(1):15-24. doi: 10.1016/0141-5425(80)90087-4.
The repetitive nature of cardiac waveforms renders them suitable for processing by signal averaging. A flexible system is described, based on a general-purpose digital computer, capable of averaging a variety of cardiac signals in excess of 0.5 microV containing frequency components below a theoretical Nyquist limit of 5 kHz. Important features of the system include real-time processing capability at a high level of interactive control, and the facility to trigger the averaging process accurately from any part of either the data or a synchronous reference waveform. Application of the system to electrocardiographic and phonocardiographic signals at conventional gain has enabled clinically useful records to be obtained in the face of obtrusive environmental noise. The averaging of signals of a similar nature after considerably increased amplification has revealed cardiac activity unseen in conventional records in a total of 81 subjects.
心脏波形的重复性使其适合通过信号平均进行处理。本文描述了一种基于通用数字计算机的灵活系统,该系统能够对各种超过0.5微伏且频率成分低于理论奈奎斯特极限5千赫兹的心脏信号进行平均。该系统的重要特性包括在高度交互式控制下的实时处理能力,以及能够从数据或同步参考波形的任何部分精确触发平均过程的功能。该系统应用于常规增益下的心电图和心音图信号,使得在存在干扰性环境噪声的情况下仍能获得具有临床价值的记录。在显著提高放大倍数后,对类似性质信号进行平均,在总共81名受试者中揭示了传统记录中未发现的心脏活动。