Retired from the Physikalisch-Technische Bundesanstalt, Abbestrasse 2-12, 10587 Berlin, Germany.
Engineering School and Medical Faculty, Newcastle University, Newcastle upon Tyne, United Kingdom.
Biomed Phys Eng Express. 2023 Sep 12;9(6). doi: 10.1088/2057-1976/acf5f4.
Oscillometric blood pressure measurement devices are not directly traceable to primary standards. Currently, device accuracy is measured by comparison between a sample device and reference measurements in a clinical trial. We researched in this study the potential for an alternative evaluation with a simulator. Our research simulator was studied for repeatability and accuracy in delivering simulated blood pressure pulses. Clinical cuff pressure measurements were obtained, along with simultaneous recordings of oscillometric pulse waveforms, spanning the clinical range of cuff pressures, pulse intervals and pulse shapes. Oscillometric pulse peak amplitudes ranged from 1.1 to 3.6 mmHg. Simulated repeatability results showed an average Standard Deviation (SD) for pulse peaks of 0.018 mmHg; 1.0% of peak amplitudes. Comparing simulated pulse shapes, the average repeat SD was 0.015 mmHg; 0.8% of the normalised pulse shapes. The simulated accuracy results had a mean error of - 0.014 ± 0.042 mmHg with a mean accuracy of 97.8%. For pulse shape the corresponding values were - 0.104 ± 0.071 mmHg with a mean accuracy of 95.4%. The correlation between the reference and simulated pulse shapes ranged from 0.991 to 0.996 (all p < 0.00003), with a mean 0.994. We conclude that oscillometric pulses can be reproduced with high repeatability and high accuracy with our research simulator. The extended uncertainty) = 0.3 mmHg for the simulated pulses is dominated by the uncertainty (64%) of the clinical reference data. These results underpin the potential of the simulator to become a secondary standard for millions of oscillometric sphygmomanometers.
示波法血压测量设备不能直接溯源至基准标准。目前,设备准确性通过将待评估设备与临床试验中的参考测量值进行比较来进行衡量。我们在本研究中研究了使用模拟器进行替代评估的可能性。我们的研究模拟器用于研究在传递模拟血压脉冲时的重复性和准确性。获得了临床袖带压力测量值,同时记录了跨越临床袖带压力、脉搏间隔和脉搏形状范围的示波脉搏波形。示波脉搏峰值幅度范围为 1.1 至 3.6mmHg。模拟重复性结果显示脉搏峰值的平均标准偏差(SD)为 0.018mmHg;占峰值幅度的 1.0%。比较模拟脉搏形状,平均重复 SD 为 0.015mmHg;占归一化脉搏形状的 0.8%。模拟准确性结果的平均误差为-0.014 ± 0.042mmHg,平均准确性为 97.8%。对于脉搏形状,相应的值为-0.104 ± 0.071mmHg,平均准确性为 95.4%。参考和模拟脉搏形状之间的相关性范围为 0.991 至 0.996(均 p < 0.00003),平均为 0.994。我们得出结论,我们的研究模拟器可以以高精度和高重复性再现示波脉冲。模拟脉冲的扩展不确定度(U)= 0.3mmHg,主要由临床参考数据的不确定性(64%)决定。这些结果为模拟器成为数百万台示波血压计的二级标准奠定了基础。