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Hemodynamic Evaluation of Exercise Treadmill Test by a Computer-Aided Clinical Decision System

机译:基于计算机辅助临床决策系统的运动跑步机血流动力学评估

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By applying a clinical decision system, introduced as the Noninvasive Hemodynamic Analyzer (NHA) system, to demonstrate its capability to compute the hemodynamic status of exercising patients. Retrospective study to use the average vital signs and anthropological data of a large clinical trial of exercise treadmill test. The NHA system computes the percent abnormal hemodynamic parameters and these results are compared to the percent clinical classification of coronary artery disease of the Seattle Heart Watch clinical study. Four groups of the clinical study (1) Healthy, (2) Hypertensive, (3) Angina Pectoris, and (4) Postmyocardial Infarction, were used and comprised the average data of several hundred patients. Each group had three subgroups according to the conducted exercise treadmill test, namely one upright and two exercise tests. In this study the statistical evaluation was not available because the average values did not permit it. Instead, we have chosen to compute the abnormal hemodynamic parameters according to the ideal values at the level of +-20%. Altogether 33 hemodynamic parameters were included and the abnormal values were expressed in percentage. The percent cumulative abnormal responses of each hemodynamic profile obtained by the Noninvasive Hemodynamic Analyzer system as compared to the published percent clinical classification of coronary artery disease of the Seattle Heart Watch clinical study was closely matched in all clinical groups. The results of this retrospective study prove that the hemodynamic computation of the NHA system is a valid approach to evaluate exercise treadmill tests.
机译:通过应用临床决策系统(称为无创血流动力学分析仪(NHA)系统)来证明其计算运动患者血液动力学状态的能力。回顾性研究使用一项大型运动跑步机临床试验的平均生命体征和人类学数据。 NHA系统计算异常血液动力学参数的百分比,并将这些结果与Seattle Heart Watch临床研究的冠状动脉疾病的临床分类百分比进行比较。使用了四组临床研究(1)健康,(2)高血压,(3)心绞痛和(4)心肌梗塞,这些研究包括了数百名患者的平均数据。根据进行的运动跑步机测试,每组分为三个子组,即一个直立和两个运动测试。在这项研究中,由于平均值不允许,因此无法进行统计评估。相反,我们选择根据+ -20%的理想值来计算异常血液动力学参数。总共包括33个血液动力学参数,异常值以百分比表示。通过无创血液动力学分析仪系统获得的每个血液动力学特征的累积异常响应百分比,与西雅图心脏观察临床研究的已公布的冠状动脉疾病临床分类百分比相比,在所有临床组中均非常接近。这项回顾性研究的结果证明,NHA系统的血液动力学计算是评估运动跑步机测试的有效方法。

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