Neonatal Intensive Care Unit, Rosie Maternity Hospital, Cambridge University Hospitals NHS Foundation Trust, Hills Road, Cambridge, UK.
Acta Paediatr. 2014 Feb;103(2):157-61. doi: 10.1111/apa.12476. Epub 2013 Dec 20.
Whole body hypothermia (WBH) exerts proven neuroprotective effects in infants with hypoxic-ischaemic encephalopathy (HIE). Our aim was to describe how WBH could impact on respiratory function in mechanically ventilated newborn infants, by recording primary and composite indices of oxygenation and ventilation before, during and after WBH.
The medical notes of 31 mechanically ventilated full-term newborn infants who underwent WBH for HIE were retrospectively reviewed. Fraction of inspired oxygen (FiO2), tidal volume (TV), mean airway Pressure (MAP), minute ventilation (MV), static compliance of the respiratory system (C(statRS)), ventilation efficiency index (VEI), alveolar-arterial gradient (A-a gradient) and oxygenation index (OI) were documented before and during hypothermic treatment, as well as during and after rewarming.
Fraction of inspired oxygen, MAP, OI and A-a gradient decreased during induction of hypothermia and tended to increase during rewarming. C(statRS), VEI and TV increased during induction of hypothermia and tended to decrease during rewarming. None of the changes achieved statistical significance.
These results suggest that WBH might affect respiratory function in mechanically ventilated infants with HIE. Oxygenation might be enhanced by hypothermia, probably as a result of decreased metabolism, while ventilation might also be facilitated as a result of the effect of hypothermia on lung mechanics.
全身低温(WBH)对患有缺氧缺血性脑病(HIE)的婴儿具有明确的神经保护作用。我们旨在描述 WBH 如何通过记录 WBH 前后及期间的氧合和通气的主要和综合指标,对机械通气的新生儿的呼吸功能产生影响。
回顾性分析 31 例因 HIE 行 WBH 的机械通气足月新生儿的病历。记录吸入氧分数(FiO2)、潮气量(TV)、平均气道压(MAP)、分钟通气量(MV)、呼吸系统静态顺应性(CstatRS)、通气效率指数(VEI)、肺泡-动脉梯度(A-a 梯度)和氧合指数(OI),分别在低温治疗前和期间,以及复温期间和之后。
在诱导低温期间,FiO2、MAP、OI 和 A-a 梯度降低,在复温期间趋于升高。CstatRS、VEI 和 TV 在诱导低温期间增加,在复温期间趋于降低。但没有一项变化具有统计学意义。
这些结果表明,WBH 可能会影响患有 HIE 的机械通气婴儿的呼吸功能。低温可能通过降低代谢来增强氧合,而低温对肺力学的影响也可能使通气更加容易。