Froning J N, Froelicher V F
VA Medical Center, Long Beach, CA 90822.
J Electrocardiol. 1987 Oct;20 Suppl:145-56.
Accurate detection and measurement of the P-wave and T-wave components of the ECG complex have been difficult and often avoided in computerized ECG analysis. This is particularly so during exercise testing where T-P fusion occurs during higher heart-rates. By combining advanced pattern-recognition techniques, statistical measurements and empirically based heuristic decision-making logic, our ECG Analysis program has been able to reliably detect, measure and track these components during exercise testing to a degree surpassing visual detection by highly experienced readers. Complete analysis of each consecutive record gathered during the exercise test is performed and a data-base of measurements and parameters is created for reference comparison of previous results at each analysis step to current measurements. Thus, evaluation of each current record for appropriate and accurate analysis is based on an expert system approach which is constantly updated and can adjust itself to individual ECG morphology as the test progresses. Preliminary attempts are also being made to separate, extract and normalize the P-wave and T-wave during fusion for better understanding and comparison of changes which occur at high heart-rates. Theoretical and clinical reasons related to the detection and measurements of the P-wave and T-wave during exercise testing are also discussed.
在计算机化心电图分析中,准确检测和测量心电图复合波中的P波和T波成分一直很困难,并且常常被回避。在运动测试期间尤其如此,因为在较高心率时会出现T-P融合。通过结合先进的模式识别技术、统计测量和基于经验的启发式决策逻辑,我们的心电图分析程序能够在运动测试期间可靠地检测、测量和跟踪这些成分,其程度超过了经验丰富的读者的视觉检测。对运动测试期间收集的每一份连续记录进行完整分析,并创建一个测量和参数数据库,以便在每个分析步骤中将先前结果与当前测量进行参考比较。因此,基于专家系统方法对每个当前记录进行适当和准确的分析评估,该方法会不断更新,并可随着测试的进行根据个体心电图形态进行自我调整。还在初步尝试在融合期间分离、提取和标准化P波和T波,以便更好地理解和比较高心率时发生的变化。文中还讨论了与运动测试期间P波和T波检测及测量相关的理论和临床原因。