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SIMULTANEOUS ESTIMATION OF RESPIRATORY MECHANICS AND PATIENT EFFORT VIA PARAMETRIC OPTIMIZATION

机译:通过参数优化同时估算呼吸力学和患者的努力

摘要

Respiratory variables are estimated on a per-breath basis from airway pressure and flow data acquired by airway pressure and flow sensors (20, 22). A breath detector (28) detects a breath interval. A per-breath respiratory variables estimator (30) fits the airway pressure and flow data over the detected breath interval to an equation of motion of the lungs relating airway pressure, airway flow, and a single-breath parameterized respiratory muscle pressure profile (40, 42) to generate optimized parameter values for the single-breath parameterized respiratory muscle pressure profile. Respiratory muscle pressure is estimated as a function of time over the detected breath interval as the single-breath parameterized respiratory muscle pressure profile with the optimized parameter values, and may for example be displayed as a trend line on a display device (26, 36) or integrated (32) to generate Work of Breathing (WoB) for use in adjusting settings of a ventilator (10).
机译:呼吸变量是根据呼吸道压力和流量传感器(20、22)获取的呼吸道压力和流量数据估算的。呼吸检测器(28)检测呼吸间隔。每次呼吸的呼吸变量估算器(30)将检测到的呼吸间隔内的气道压力和流量数据拟合为与气道压力,气道流量和单呼吸参数化呼吸肌压力曲线相关的肺运动方程(40, 42)生成单呼吸参数化呼吸肌压力曲线的优化参数值。在检测到的呼吸间隔中,作为时间的函数,将呼吸肌压力估算为具有优化参数值的单呼吸参数化呼吸肌压力曲线,例如可以在显示设备上显示为趋势线(26、36)或集成(32)来生成呼吸功(WoB),用于调整呼吸机(10)的设置。

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