A computational approach to predict pulse transit time variations during postural change.

Jong Yong Abdiel Foo
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引用次数: 5

Abstract

The human autonomic nervous system modulates blood pressure (BP) and heart rate in order to maintain homeostasis. Present techniques that monitor BP may cause discomforts to children. Pulse transit time change (DeltaPTT) is known to be inversely correlated to BP change. In this study, a mathematical model using only a few empirical parameters and the measured lower limb vascular path length is introduced to estimate DeltaPTT when a different posture is adopted. To assess the reliability of the model, 23 healthy children aged 8.4 +/- 2.3 years were recruited to adopt the sitting and supine position at discrete intervals. PTT measurements were obtained from their toe with respect to an ECG for both postures. The results showed that there was significant correlation between the model and measured DeltaPTT (P < 0.05; R(2) = 0.813). The findings herein suggest that this simple yet practical model can have the accuracy to estimate the DeltaPTT value. Moreover, it does not require the use of an ECG or pulse oximeter in its computation. Hence, it can provide a rapid prediction before a child adopts a postural change. This may be potentially useful for detection of children with vascular abnormalities at their lower limbs.

一种预测体位变化时脉冲传递时间变化的计算方法。
人体自主神经系统调节血压(BP)和心率以维持体内平衡。目前监测血压的技术可能会给儿童带来不适。已知脉冲传递时间变化(DeltaPTT)与BP变化呈负相关。在本研究中,引入仅使用少量经验参数和下肢血管路径长度测量的数学模型来估计不同姿势时的DeltaPTT。为了评估模型的可靠性,我们招募了23名年龄8.4 +/- 2.3岁的健康儿童,以离散的间隔采用坐姿和仰卧位。PTT测量从他们的脚趾相对于心电图两种姿势。结果表明,模型与实测DeltaPTT呈显著相关(P < 0.05;R(2) = 0.813)。本文的研究结果表明,该简单实用的模型能够准确地估计DeltaPTT值。此外,它不需要在计算中使用心电图或脉搏血氧计。因此,它可以在孩子采取姿势变化之前提供快速预测。这可能对检测下肢血管异常的儿童有潜在的帮助。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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