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双水平气道正压通气辅助期间的二氧化碳重复吸入

CO2 rebreathing during BiPAP ventilatory assistance.

作者信息

Ferguson G T, Gilmartin M

机构信息

Department of Medicine, University of Colorado Health Sciences Center, National Jewish Center for Immunology and Respiratory Medicine, Denver, Colorado.

出版信息

Am J Respir Crit Care Med. 1995 Apr;151(4):1126-35. doi: 10.1164/ajrccm/151.4.1126.

Abstract

BiPAP ventilatory assistance can increase minute ventilation and reduce respiratory effort, but does not always reduce PaCO2. We studied the effects of BiPAP ventilatory assistance on PaCO2 and examined specific mechanisms whereby BiPAP ventilatory assistance may not lower PaCO2. BiPAP ventilatory assistance using a non-rebreather valve and volume cycled ventilation at similar settings produced significantly lower PaCO2 than BiPAP ventilatory assistance using a standard exhalation device. The failure of PaCO2 to fall with the standard exhalation device was due to exhalation past the exhalation device into the ventilator tubing, subsequent rebreathing of the exhaled gases, and an increase in dead space ventilation. Use of other fixed-resistance exhalation devices also resulted in exhalation back into the ventilator tubing. Use of a new plateau exhalation device or a non-rebreather valve eliminated CO2 rebreathing and its effect on dead space ventilation. Changing exhalation devices had no significant effect on BiPAP pressure generation or sensing capabilities. Our results indicate that the use of a standard exhalation device during BiPAP ventilatory assistance causes CO2 rebreathing, which can blunt any effect of BiPAP on PaCO2. Use of an appropriate alternative exhalation device can eliminate this problem.

摘要

双水平气道正压通气(BiPAP)辅助通气可增加分钟通气量并减轻呼吸负荷,但并不总能降低动脉血二氧化碳分压(PaCO2)。我们研究了BiPAP辅助通气对PaCO2的影响,并探讨了BiPAP辅助通气可能无法降低PaCO2的具体机制。在相似设置下,使用非重复呼吸阀和容量控制通气的BiPAP辅助通气比使用标准呼气装置的BiPAP辅助通气产生的PaCO2显著更低。使用标准呼气装置时PaCO2未能下降,是由于呼出气体经过呼气装置进入通气机管道、随后再次吸入呼出气体以及无效腔通气增加所致。使用其他固定阻力呼气装置也会导致呼出气体回到通气机管道。使用新型平台呼气装置或非重复呼吸阀可消除二氧化碳再吸入及其对无效腔通气的影响。更换呼气装置对BiPAP压力产生或感知能力无显著影响。我们的结果表明,BiPAP辅助通气期间使用标准呼气装置会导致二氧化碳再吸入,这可能会削弱BiPAP对PaCO2的任何作用。使用合适的替代呼气装置可消除该问题。

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