Pulmonary Engineering Lab, Biomedical Engineering Program, COPPE-Federal University of Rio de Janeiro, Brazil.
Physiol Meas. 2009 Nov;30(11):1151-62. doi: 10.1088/0967-3334/30/11/001. Epub 2009 Sep 25.
Respiratory sinus arrhythmia (RSA) is a fluctuation of heart period that occurs during a respiratory cycle. It has been suggested that inspiratory heart period acceleration and expiratory deceleration during spontaneous ventilation (henceforth named positive RSA) improve the efficiency of gas exchange compared to the absence or the inversion of such a pattern (negative RSA). During mechanical ventilation (MV), for which maximizing the efficiency of gas exchange is of critical importance, the pattern of RSA is still the object of debate. In order to gain a better insight into this matter, we compared five different methods of RSA classification using the data of five mechanically ventilated piglets. The comparison was repeated using the data of 15 volunteers undergoing a protocol of paced spontaneous breathing, which is expected to result in a positive RSA pattern. The results showed that the agreement between the employed methods is limited, suggesting that the lack of a consensus about the RSA pattern during MV is, at least in part, of methodological origin. However, independently of the method used, the pattern of RSA within the respiratory cycle was not consistent among the subjects and conditions of MV considered. Also, the outcomes showed that even during paced spontaneous breathing a negative RSA pattern might be present, when a low respiratory frequency is imposed.
呼吸窦性心律失常(RSA)是在呼吸周期中发生的心率波动。有人认为,与没有或反转这种模式(负 RSA)相比,自主通气期间吸气心周期加速和呼气减速(即正 RSA)可提高气体交换效率。在机械通气(MV)期间,最大限度地提高气体交换效率至关重要,RSA 的模式仍然存在争议。为了更好地了解这一点,我们使用五头机械通气小猪的数据比较了五种不同的 RSA 分类方法。使用十五名志愿者进行自主呼吸起搏方案的数据重复了该比较,预计会产生正 RSA 模式。结果表明,所使用方法之间的一致性有限,这表明 MV 期间关于 RSA 模式缺乏共识至少部分是方法学上的。然而,无论使用哪种方法,在考虑的 MV 条件和受试者中,呼吸周期内的 RSA 模式都不一致。此外,结果表明,即使在进行自主呼吸起搏时,如果施加较低的呼吸频率,也可能存在负 RSA 模式。