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首页> 外文期刊>Intensive care medicine >Respiratory mechanics by least squares fitting in mechanically ventilated patients: application on flow-limited COPD patients.
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Respiratory mechanics by least squares fitting in mechanically ventilated patients: application on flow-limited COPD patients.

机译:最小二乘拟合在机械通气患者中的呼吸力学:在流量受限的COPD患者中的应用。

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OBJECTIVE: Although computerized methods of analyzing respiratory system mechanics such as the least squares fitting method have been used in various patient populations, no conclusive data are available in patients with chronic obstructive pulmonary disease (COPD), probably because they may develop expiratory flow limitation (EFL). This suggests that respiratory mechanics be determined only during inspiration. SETTING: Eight-bed multidisciplinary ICU of a teaching hospital. PATIENTS: Eight non-flow-limited postvascular surgery patients and eight flow-limited COPD patients. INTERVENTION: Patients were sedated, paralyzed for diagnostic purposes, and ventilated in volume control ventilation with constant inspiratory flow rate. MEASUREMENTS: Data on resistance, compliance, and dynamic intrinsic positive end-expiratory pressure (PEEPi,dyn) obtained by applying the least squares fitting method during inspiration, expiration, and the overall breathing cycle were compared with those obtained by the traditional method (constant flow, end-inspiratory occlusion method). RESULTS AND CONCLUSION: Our results indicate that (a) the presence of EFL markedly decreases the precision of resistance and compliance values measured by the LSF method, (b) the determination of respiratory variables during inspiration allows the calculation of respiratory mechanics in flow limited COPD patients, and (c) the LSF method is able to detect the presence of PEEPi,dyn if only inspiratory data are used.
机译:目的:尽管已在各种患者人群中使用了计算机分析呼吸系统力学的方法,例如最小二乘拟合法,但尚无关于慢性阻塞性肺疾病(COPD)患者的结论性数据,可能是因为它们可能会导致呼气流量受限( EFL)。这表明仅在吸气期间才能确定呼吸力学。地点:教学医院的八床多学科ICU。患者:八名非流量受限的血管外科手术患者和八名流量受限的COPD患者。干预措施:对患者进行镇静,使之瘫痪以进行诊断,并以恒定的吸气流速在容积控制通气中通气。测量:将在吸气,呼气和整个呼吸周期期间采用最小二乘拟合法获得的阻力,顺应性和动态固有呼气末正压(PEEPi,dyn)数据与传统方法获得的数据进行比较(恒定流量,吸气末阻塞法)。结果与结论:我们的结果表明,(a)EFL的存在明显降低了通过LSF方法测得的阻力和顺应性值的精度,(b)确定吸气过程中的呼吸变量允许计算流量受限的COPD中的呼吸力学(c)如果仅使用吸气数据,则LSF方法能够检测PEEPi,dyn的存在。

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