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从振荡袖带压力估算平均动脉压:不同技术的比较。

Estimation of mean arterial pressure from the oscillometric cuff pressure: comparison of different techniques.

机构信息

Regional Medical Physics Department, Freeman Hospital, Newcastle University, Newcastle upon Tyne, UK.

出版信息

Med Biol Eng Comput. 2011 Jan;49(1):33-9. doi: 10.1007/s11517-010-0694-y. Epub 2010 Nov 2.

Abstract

Mean arterial pressure (MAP) is determined in most automated oscillometric blood pressure devices, but its derivation has been little studied. In this research, different techniques were studied and compared with the auscultatory technique. Auscultatory systolic and diastolic blood pressure (SBP and DBP) were obtained in 55 healthy subjects by two trained observers, and auscultatory MAP was estimated. Automated MAP was determined by six techniques from oscillometric cuff pressures recorded digitally and simultaneously during manual measurement. MAPs were derived from the peak and foot of the largest oscillometric pulse, and from time domain curves fitted to the sequence of oscillometric pulse amplitudes (4th order and three versions of the 6th order polynomial curve). The agreement between automated and auscultatory MAPs was assessed. Compared with the auscultatory MAP, the automated MAP from the baseline cuff pressure at the peak of the 6th order polynomial curve had the smallest mean paired difference (-1.0 mmHg), and smallest standard deviation of paired differences (3.7 mmHg). These values from the peak of the largest oscillometric pulse were -1.3 and 6.2 mmHg, respectively. Determining MAP from a model of the oscillometric pulse waveform had the smallest differences from the manual auscultatory technique.

摘要

平均动脉压(MAP)是大多数自动示波血压设备中确定的,但对其推导的研究甚少。在这项研究中,研究了不同的技术并与听诊技术进行了比较。由两名经过培训的观察者对 55 名健康受试者进行了听诊收缩压和舒张压(SBP 和 DBP)的测量,并估算了听诊 MAP。通过六次技术从数字记录和手动测量期间同时记录的示波袖带压力中确定了自动 MAP。MAP 是从最大示波脉搏的峰值和底部,以及拟合到示波脉冲幅度序列的时域曲线(四阶和三阶六阶多项式曲线的三个版本)中得出的。评估了自动 MAP 与听诊 MAP 之间的一致性。与听诊 MAP 相比,六阶多项式曲线峰值时基线袖带压力的自动 MAP 具有最小的平均配对差异(-1.0mmHg)和最小的配对差异标准差(3.7mmHg)。最大示波脉搏的峰值的这些值分别为-1.3 和 6.2mmHg。从示波脉搏波形模型中确定 MAP 与手动听诊技术的差异最小。

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