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Can Photoplethysmography Replace Arterial Blood Pressure in the Assessment of Blood Pressure?

机译:PhotocletySmography可以在评估血压方面替代动脉血压吗?

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摘要

Arterial Blood Pressure (ABP) and photoplethysmography (PPG) are both useful techniques to monitor cardiovascular status. Though ABP monitoring is more widely employed, this procedure of signal acquisition whether done invasively or non-invasively may cause inconvenience and discomfort to the patients. PPG, however, is simple, noninvasive, and can be used for continuous measurement. This paper focuses on analyzing the similarities in time and frequency domains between ABP and PPG signals for normotensive, prehypertensive and hypertensive subjects and the feasibility of the classification of subjects considering the results of the analysis performed. From a database with 120 records of ABP and PPG, each 120 s in length, the records where separated into epochs taking into account 10 heartbeats, and the following statistical measures were performed: Correlation (r), Coherence (COH), Partial Coherence (pCOH), Partial Directed Coherence (PDC), Directed Transfer Function (DTF), Full Frequency Directed Transfer Function (ffDTF) and Direct Directed Transfer Function (dDTF). The correlation coefficient was r > 0.9 on average for all groups, indicating a strong morphology similarity. For COH and pCOH, coherence (linear correlation in frequency domain) was found with significance (p < 0.01) in differentiating between normotensive and hypertensive subjects using PPG signals. For the dataset at hand, only two synchrony measures are able to convincingly distinguish hypertensive subjects from normotensive control subjects, i.e., ffDTF and dDTF. From PDC, DTF, ffDTF, and dDTF, a consistent, a strong significant causality from ABP→PPG was found. When all synchrony measures were combined, an 87.5 % accuracy was achieved to detect hypertension using a Neural Network classifier, suggesting that PPG holds most informative features that exist in ABP.
机译:动脉血压(ABP)和光增性血压造影(PPG)都是监测心血管状态的有用技术。虽然ABP监测更广泛使用,但这种信号采集程序是否可侵入或非侵入性地完成可能对患者造成不便和不适。然而,PPG简单,无侵入性,可用于连续测量。本文侧重于分析ABP和PPG信号之间的时间和频率域的相似性,以便考虑所进行分析结果的受试者分类的可行性。从具有120个ABP和PPG记录的数据库,每个120秒的长度,将其分开到考虑到10个心跳的记录,并进行了以下统计措施:相关(R),相干(COH),部分连贯( PCOH),部分定向一致性(PDC),定向传递函数(DTF),全频定向传递函数(FFDTF)和直接定向传递函数(DDTF)。相关系数平均为r> 0.9,所有基团都是强烈的形态相似性。对于COH和PCOH,发现使用PPG信号的正常和高血压对象之间的意义(P <0.01)发现相干性(频域的线性相关性)。对于手头的数据集,只有两个同步措施能够令人信服地区分高血压对象,即FFDTF和DDTF。从PDC,DTF,FFDTF和DDTF,一致,发现来自ABP→PPG的强大的显着因果关系。当组合所有同步措施时,使用神经网络分类器达到87.5%的准确度以检测高血压,表明PPG持有ABP中存在的最具信息性功能。

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