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Absence of inspiratory laryngeal constrictor muscle activity during nasal neurally adjusted ventilatory assist in newborn lambs

机译:新生小羊经鼻神经调节通气辅助时无吸入性喉缩肌活动

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摘要

It has been demonstrated that a progressive increase in nasal pressure support ventilation (nPSV) leads to an active inspiratory glottal closure in non-sedated newborn lambs, which limits lung ventilation (24, 33). Unlike nPSV, the pressure delivered during nasal Neurally Adjusted Ventilatory Assist (nNAVA) is synchronized to the diaphragm electrical activity on inspiration (36). Given the tight neural integration of the glottal dilators and constrictors with diaphragm activity on inspiration and expiration respectively, the aim of the present study was to test the hypothesis that inspiratory glottal closure does not develop during nNAVA. Polysomnographic recordings were performed in eight non-sedated, chronically instrumented lambs, which were ventilated with progressively increasing levels of nPSV and nNAVA, in random order. States of alertness, diaphragm and glottal muscle electrical activity, tracheal pressure, SpO2, tracheal PETCO2 and respiratory inductive plethysmography were continuously recorded. While phasic inspiratory glottal constrictor electrical activity appeared with increasing levels of nPSV in 5 out of 8 lambs, it was never observed at any nNAVA level in any lamb, even at maximal achievable nNAVA levels. In addition, a decrease in arterial PCO2 was neither necessary nor sufficient for the development of phasic inspiratory glottal constrictor activity. In conclusion, nNAVA does not induce active glottal closure in non-sedated newborn lambs at high-pressure levels, in contrast to nPSV.
机译:已经证明,鼻压支持通气(nPSV)的逐渐增加会导致未镇静的新生羔羊主动吸气声门关闭,从而限制了肺通气(24,33)。与nPSV不同,在鼻部神经调节通气辅助(nNAVA)期间传递的压力与吸气时隔膜的电活动同步(36)。考虑到声门扩张器和收缩器在吸气和呼气时分别具有紧密的神经整合和隔膜活动,因此本研究的目的是检验以下假设:在nNAVA期间不发生吸气声门关闭。在八只非镇静的,长期使用仪器的小羊中进行多导睡眠监测记录,这些小羊用随机增加的nPSV和nNAVA水平逐渐通气。连续记录警觉状态,diaphragm肌和声门肌电活动,气管压力,SpO2,气管PETCO2和呼吸感应体积描记法。尽管每8只羔羊中有5只羔羊的相吸气道声门收缩器电活动随nPSV水平的升高而出现,但从未在任何羔羊的任何nNAVA水平上观察到,即使在最大可达到的nNAVA水平下也未观察到。此外,动脉PCO2的减少对于逐步吸气声门收缩器活动的发展既不是必需的也不是足够的。总之,与nPSV相比,nNAVA在高压下未镇静的新生羔羊中不会诱导主动声门关闭。

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