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Modeling of Pulse Transit Time under the Effects of Hydrostatic Pressure for Cuffless Blood Pressure Measurements

机译:静血压影响下的无袖血压测量中的脉冲传播时间建模

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The pulse transit time (PTT)-based approach has been proposed as a noninvasive and cuffless alternative to the conventional occluding-cuff approaches to be used in wearable medical devices for long-term and continuous monitoring of blood pressure (BP). Nevertheless, the PTT-based technique requires an individualized calibration procedure. In order to derive a simple procedure for estimating individualized coefficients for this approach, this paper aims to model PTT under the effects of hydrostatic pressure due to hand elevation. In this study, 11 volunteers were recruited. BP and PTT were measured while the subjects elevated their hands to specific heights above heart level (h). The results of the study show that PTT changes significantly with h (p<0.05) and the relationship between them generally agrees with that derives from the theoretical model. This suggests that using the proposed model, individualized coefficients for estimating BP by the PTT-based approach can be obtained from some simple movements such as hand elevation.
机译:已经提出基于脉冲渡越时间(PTT)的方法,作为可在可穿戴医疗设备中用于长期和连续监测血压(BP)的常规咬合袖套方法的一种无创且无袖套的替代方法。尽管如此,基于PTT的技术仍需要单独的校准程序。为了得出一种简单的方法来估计该方法的个性化系数,本文旨在对手抬高引起的静水压力作用下的PTT进行建模。在这项研究中,招募了11名志愿者。在受试者将手举到高于心脏水平(h)的特定高度时,测量BP和PTT。研究结果表明,PTT随h显着变化(p <0.05),并且它们之间的关系通常与从理论模型得出的一致。这表明,使用提出的模型,可以从一些简单的动作(例如手抬高)中获得通过基于PTT的方法估算BP的个性化系数。

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