Gramatikov B I
Institute of Biomedical Engineering, Medical Academy, Sofia, Bulgaria.
Med Biol Eng Comput. 1993 Jul;31(4):333-9. doi: 10.1007/BF02446684.
The paper reports experience of flexible, computer-based instrumentation for high-resolution ECG, designed for laboratory research and clinical applications. It is an attempt to improve methods of detection of late potentials when identifying patients at increased risk of ventricular tachycardia (VT) and sudden cardiac death. Several factors influencing the efficiency of a high-resolution ECG system are examined. Of primary importance are signal, gain, type of filter, length and position of the time interval taken for spectral analysis, type of window used etc. Some possible error sources are analysed. Time-domain analysis is illustrated by representative XYZ-vector magnitude tracings of a non-VT and a VT patient. In an effort to further refine the diagnostic strategy, an approach to data analysis is presented, combining time-domain with frequency-domain measurements. A spectral ratio is proposed that helps recognise patients prone to VT. Two-dimensional plots of this ratio against time-domain parameters reveal clearly distinguishable normal and pathologic groups. It can be concluded that an appropriate frequency analysis can add significant diagnostic power to existing instrumentation for signal-averaged ECG to predict VT risk.
本文报道了一种用于高分辨率心电图的灵活的计算机化检测设备的经验,该设备专为实验室研究和临床应用而设计。这是一次在识别室性心动过速(VT)和心源性猝死风险增加的患者时改进晚期电位检测方法的尝试。研究了影响高分辨率心电图系统效率的几个因素。其中最重要的是信号、增益、滤波器类型、用于频谱分析的时间间隔的长度和位置、所使用的窗函数类型等。分析了一些可能的误差来源。通过非VT患者和VT患者具有代表性的XYZ向量幅值描记图展示了时域分析。为了进一步完善诊断策略,提出了一种将时域测量与频域测量相结合的数据分析方法。提出了一种有助于识别易发生VT患者的频谱比。该比值与时域参数的二维图清晰地显示出可区分的正常组和病理组。可以得出结论,适当的频率分析可以为现有的信号平均心电图检测设备增加显著的诊断能力,以预测VT风险。