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Towards enhancing the performance of multi-parameter patient monitors

机译:致力于提高多参数患者监护仪的性能

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Multi-parameter patient monitors (MPMs) have become increasingly important in providing quality healthcare to patients. It is well known in the medical community that there exists an intrinsic relationship between different vital parameters in a healthy person, these include heart rate, blood pressure, respiration rate and oxygen saturation. For example, an increase in blood pressure would lead to a decrease in the heart rate, and vice versa. Although it is likely to improve the performance of MPM systems, this fact is not explored in engineering research. In this work, experiments show that deriving additional features to capture the intrinsic relationship between the vital parameters, the alarm accuracy (sensitivity), no-alarm accuracy (specificity) and the overall performance of MPMs can be improved. The geometric mean of the product of all the vital parameters taken in pairs of two was used to capture the intrinsic relationship between the different parameters. An improvement of 10.55% for sensitivity, 0.32% for specificity and an overall performance improvement of 1.03% was obtained, compared to the baseline system using classification and regression tree with the four vital parameters.
机译:多参数患者监护仪(MPM)在向患者提供优质医疗保健方面变得越来越重要。在医学界众所周知,健康人的不同生命参数之间存在内在联系,其中包括心率,血压,呼吸频率和血氧饱和度。例如,血压升高会导致心率降低,反之亦然。尽管它可能会改善MPM系统的性能,但是在工程研究中并未探索这一事实。在这项工作中,实验表明,可以改进捕获关键参数,警报准确性(灵敏度),无警报准确性(特异性)和MPM总体性能之间的内在联系的其他功能。所有生命参数(每对两个)的乘积的几何平均值用于捕获不同参数之间的内在关系。与使用带有四个重要参数的分类和回归树的基线系统相比,灵敏度提高了10.55%,特异性提高了0.32%,整体性能提高了1.03%。

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