Li Yanjun, Wang Zengli, Zhang Lin, Yang Xianglin, Song Jinzhong
Space Biomedical Engineering Lab, China Astronaut Research and Training Center, Haidian District, Beijing, China,
Australas Phys Eng Sci Med. 2014 Jun;37(2):367-76. doi: 10.1007/s13246-014-0269-6. Epub 2014 Apr 11.
The continuous and noninvasive blood pressure (BP) measurement based on pulse transit time (PTT) doesn't need cuff and could monitor BP in real time for a long period. However, PTT is just a time index derived from electrocardiogram (ECG) and photoplethysmogram (PPG), while BP-related information within the PPG waveform has seldom been taken into consideration. We hypothesized that PPG waveform feature might be useful for BP estimation. Nine healthy subjects took part in an exercise stress test, including baseline resting, exercise on bicycle ergometry and recovering resting. ECG of lead V5 and PPG from left finger were collected simultaneously, and systolic blood pressure (SBP) and diastolic blood pressure (DBP) were recorded from a cuff sphygmometer on the right wrist. The correlation coefficients were obtained between BP (SBP, DBP and pulse pressure (PP)) and PPG morphological indices (total 15 indices in terms of waveform amplitude, time span and area ratio). Five PPG indices were correlated with both SBP and PP (absolute value of correlation coefficient |r| > 0.6) and were further tested for the capability to BP estimation, which were: (1) PTTA, time delay between the R peak of ECG and the foot point of PPG; (2) RSD, time ratio of systole to diastole; (3) RtArea, area ratio of systole to diastole; (4) TmBB, time span of PPG cycle; (5) TmCA, diastolic duration. Comparisons were made between the measured BP and the estimated BP by regression lines and quadratic curve fitting, respectively. As a result, the mean errors of SBP liner fitting with RSD, RtArea, TmBB and TmCA respectively were 5.5, 5.4, 5.2, 5.1 mmHg, which were smaller than that with PTTA of 5.8 mmHg. And the mean errors of SBP quadratic curve fitting with RSD, RtArea, TmBB and TmCA were all 5.1 mmHg, which were smaller than that with PTTA of 5.7 mmHg. The mean errors of multiple regression for SBP, PP and DBP was 4.7, 4.7, 3.5 mmHg respectively, which were more accurate than the regression with single PTTA of 5.8, 5.3, 5.2 mmHg respectively. However, PPG-based SBP and DBP could under estimate cuff pressure by 8 mmHg and over estimate by 10 mmHg respectively, which is a clinically significant error. In conclusion, the combination of time span (PTT, time ratio of systole to diastole, time span of PPG cycle and diastolic duration) and waveform morphology (area ratio of systole to diastole) could improve the performance of PPG-based BP estimation.
基于脉搏传输时间(PTT)的连续无创血压测量无需使用袖带,且能够长时间实时监测血压。然而,PTT只是一个从心电图(ECG)和光电容积脉搏波描记图(PPG)得出的时间指标,而PPG波形中与血压相关的信息很少被考虑在内。我们推测PPG波形特征可能有助于血压估计。九名健康受试者参加了一项运动压力测试,包括基线静息、自行车测力计运动和恢复静息。同时采集V5导联的心电图和左手手指的PPG,并使用右腕袖带血压计记录收缩压(SBP)和舒张压(DBP)。获得了血压(SBP、DBP和脉压(PP))与PPG形态学指标(根据波形幅度、时间跨度和面积比共15个指标)之间的相关系数。五个PPG指标与SBP和PP均相关(相关系数绝对值|r|>0.6),并进一步测试其血压估计能力,它们分别是:(1)PTTA,心电图R波与PPG起始点之间的时间延迟;(2)RSD,收缩期与舒张期的时间比;(