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肺容积的无创评估:呼吸感应体积描记法和电阻抗断层成像术

Noninvasive assessment of lung volume: respiratory inductance plethysmography and electrical impedance tomography.

作者信息

Wolf Gerhard K, Arnold John H

机构信息

Division of Critical Care Medicine, Department of Anesthesia, Children's Hospital, Boston, MA, USA.

出版信息

Crit Care Med. 2005 Mar;33(3 Suppl):S163-9. doi: 10.1097/01.ccm.0000155917.39056.97.

Abstract

OBJECTIVE

Respiratory inductance plethysmography (RIP) and electrical impedance tomography (EIT) are two monitoring techniques that have been used to assess lung volume noninvasively.

METHODS

RIP uses two elastic bands around the chest and abdomen to assess global changes in lung volume. In animal models, RIP has been shown to detect changes in lung mechanics during high-frequency oscillatory ventilation and has the potential to quantify lung volumes noninvasively. EIT measures regional impedance changes with 16 electrodes around the patient's chest, each of them injecting and receiving small currents. Impedance changes have been correlated with volume changes in animal models and in humans. In a recent animal model, EIT was shown to be capable of tracking lung volume changes during high-frequency oscillatory ventilation.

CONCLUSION

The promise of monitoring techniques such as RIP and EIT is that they will guide lung protective ventilation strategies and allow the clinician to optimize lung recruitment, maintain an open lung, and limit overdistension. EIT is the only bedside method that allows repeated, noninvasive measurements of regional lung volumes. In the future, it will be important to standardize the definitions of alveolar recruitment and ultimately demonstrate the superiority of EIT-guided ventilator management in providing lung protective ventilation.

摘要

目的

呼吸感应体积描记法(RIP)和电阻抗断层成像(EIT)是两种已被用于无创评估肺容积的监测技术。

方法

RIP使用围绕胸部和腹部的两条弹性带评估肺容积的整体变化。在动物模型中,RIP已被证明能检测高频振荡通气期间肺力学的变化,并且有潜力无创量化肺容积。EIT通过患者胸部周围的16个电极测量局部阻抗变化,每个电极注入和接收小电流。在动物模型和人体中,阻抗变化已与容积变化相关联。在最近的一个动物模型中,EIT被证明能够跟踪高频振荡通气期间的肺容积变化。

结论

RIP和EIT等监测技术的前景在于,它们将指导肺保护性通气策略,并使临床医生能够优化肺复张、维持肺开放并限制过度膨胀。EIT是唯一能够对局部肺容积进行重复、无创测量的床边方法。未来,标准化肺泡复张的定义并最终证明EIT引导的通气管理在提供肺保护性通气方面的优越性将很重要。

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