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急性肺损伤/急性呼吸窘迫综合征中的动态呼吸力学:研究工具还是临床工具?

Dynamic respiratory mechanics in acute lung injury/acute respiratory distress syndrome: research or clinical tool?

作者信息

Stenqvist Ola, Odenstedt Helena, Lundin Stefan

机构信息

Department of Anesthesia and Intensive Care, Sahlgrenska University Hospital, Göteborg, Sweden.

出版信息

Curr Opin Crit Care. 2008 Feb;14(1):87-93. doi: 10.1097/MCC.0b013e3282f3a166.

Abstract

PURPOSE OF REVIEW

Classic static measurements of lung mechanics have been used mainly for research purposes, but have not gained widespread clinical acceptance. Instead, dynamic measurements have been used, but interpretation of results has been hampered by lack of clear definitions. The review provides an overview of possible definitions and a description of methods for evaluating lung mechanics in acute lung injury/acute respiratory distress syndrome patients.

RECENT FINDINGS

Compliance measured using static techniques is significantly higher compared to measurements during ongoing ventilation. This indicates that lung mechanic properties depend on flow velocity during inflation and the time allowed for equilibration of viscoelastic forces. Thus, methods for evaluating lung mechanics should be clearly defined in terms of whether they are classically static, i.e. excluding resistance to flow and equilibration of viscoelastic forces, or truly dynamic, i.e. including flow resistance and unequilibrated viscoelastic forces. New techniques have emerged which make it possible to monitor lung mechanics during ongoing, therapeutic ventilation, 'functional lung mechanics', where the impact of flow resistance on tube and airway resistance has been eliminated, providing alveolar pressure/volume curves.

SUMMARY

Functional lung mechanics obtained during ongoing ventilator treatment have the potential to provide information for optimizing ventilator management in critically ill patients.

摘要

综述目的

经典的肺力学静态测量主要用于研究目的,尚未获得广泛的临床认可。取而代之的是采用动态测量,但由于缺乏明确的定义,结果的解释受到了阻碍。本综述概述了可能的定义,并描述了评估急性肺损伤/急性呼吸窘迫综合征患者肺力学的方法。

最新发现

与持续通气期间的测量相比,使用静态技术测量的顺应性显著更高。这表明肺力学特性取决于充气期间的流速以及粘弹性力平衡所需的时间。因此,评估肺力学的方法应根据其是经典静态的(即排除流动阻力和粘弹性力平衡)还是真正动态的(即包括流动阻力和未平衡的粘弹性力)来明确界定。已经出现了新技术,使得在持续的治疗性通气期间监测肺力学成为可能,即“功能性肺力学”,其中消除了流动阻力对管道和气道阻力的影响,从而提供肺泡压力/容积曲线。

总结

在持续通气治疗期间获得的功能性肺力学有可能为优化重症患者的通气管理提供信息。

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