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Continuous Cuffless Blood Pressure Estimation Using Pulse Transit Time and Photoplethysmogram Intensity Ratio

机译:使用脉搏传播时间和光体积描记图强度比的连续无袖带血压估计

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Pulse transit time (PTT) has attracted much interest for cuffless blood pressure (BP) measurement. However, its limited accuracy is one of the main problems preventing its widespread acceptance. Arterial BP oscillates mainly at high frequency (HF) because of respiratory activity, and at low frequency (LF) because of vasomotor tone. Prior studies suggested that PTT can track BP variation in HF range, but was inadequate to follow the LF variation, which is probably the main reason for its unsatisfactory accuracy. This paper presents a new indicator, the photoplethysmogram intensity ratio (PIR), which can be affected by changes in the arterial diameter, and, thus, trace the LF variation of BP. Spectral analysis of BP, PTT, PIR, and respiratory signal confirmed that PTT was related to BP in HF at the respiratory frequency, while PIR was associated with BP in LF range. We, therefore, develop a novel BP estimation algorithm by using both PTT and PIR. The proposed algorithm was validated on 27 healthy subjects with continuous Finapres BP as reference. The results showed that the mean ± standard deviation (SD) for the estimated systolic, diastolic, and mean BP with the proposed method against reference were , , mmHg, and mean absolute difference (MAD) were 4.09, 3.18, 3.18 mmHg, respectively. Furthermore, the proposed method outperformed the two most cited PTT algorithms for about 2 mmHg in SD and MAD. These results demonstrated that the proposed BP model using PIR and PTT can estimate continuous BP with improved accuracy.
机译:脉搏传播时间(PTT)已引起无袖血压(BP)测量的极大兴趣。但是,其准确性有限是阻止其广泛接受的主要问题之一。由于呼吸活动,动脉BP主要以高频(HF)振荡,而由于血管舒缩张力,则以低频(LF)振荡。先前的研究表明,PTT可以跟踪HF范围内的BP变化,但不足以跟踪LF变化,这可能是其准确性不令人满意的主要原因。本文提出了一种新的指标,光电容积描记图强度比(PIR),该指标可能会受到动脉直径变化的影响,从而追踪BP的LF变化。 BP,PTT,PIR和呼吸信号的频谱分析证实,在呼吸频率下,PTT与HF中的BP有关,而PIR与LF范围内的BP相关。因此,我们通过同时使用PTT和PIR开发了一种新颖的BP估计算法。以连续的Finapres BP为参考,对27名健康受试者进行了验证。结果表明,采用参考方法提出的估计收缩压,舒张压和平均BP的平均值±标准差(SD)分别为,mmHg和平均绝对差(MAD)分别为4.09、3.18和3.18 mmHg。此外,所提出的方法在SD和MAD中的性能优于2个最常引用的PTT算法约2 mmHg。这些结果表明,使用PIR和PTT提出的BP模型可以以更高的准确性估算连续BP。

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