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早产儿对增加的吸气弹性和阻力负荷的即时通气反应。

The immediate ventilatory response to added inspiratory elastic and resistive loads in preterm infants.

作者信息

Boychuk R B, Seshia M M, Rigatto H

出版信息

Pediatr Res. 1977 Apr;11(4):276-9. doi: 10.1203/00006450-197704000-00002.

Abstract

We measured the changes in tidal volume, duration of the various phases of the respiratory cycle, and peak nasal pressure during elastic and resistive loading in preterm infants. Values were calculated during the first loaded breath, when chemical drive was unchanged. Tidal volume decreased by equivalent percentages with resistive loads of 400, 900, and 2,400 cm H2O/liter/sec, and elastic loads of 330, 1,000, and 3,000 cm H2O/liter. Infinite load was also applied (nasal occlusion). Inspiratory duration (ti) was prolonged during resistive loading, as compared with elastic loading (P less than 0.05). Changes in expiratory duration (Te) were not different with both loads (P greater than 0.05). Total duration of the respiratory cycle (T), however, tended to increase in relation to control, more so with resistive loads. Peak nasal pressure was greater with resistive than with elastic loads ( less than 0.025). We suggest that (1) preterm infants, like adult subjects and other animal species, increase inspiratory duration with resistive loads as compared with elastic loads; (2) T of the first loaded breath tends to increase with progressively larger loads and, consequently, instantaneous frequency tends to decrease; and (3) if peak nasal pressure reflects tension developed by the respiratory muscles, then the latter does not offer the inhibitory information needed to terminate inspiration.

摘要

我们测量了早产儿在弹性负荷和阻力负荷期间潮气量、呼吸周期各阶段的持续时间以及鼻峰压的变化。在化学驱动未改变的情况下,于首次负荷呼吸期间计算数值。对于400、900和2400厘米水柱/升/秒的阻力负荷以及330、1000和3000厘米水柱/升的弹性负荷,潮气量下降的百分比相当。还施加了无限负荷(鼻阻塞)。与弹性负荷相比,阻力负荷期间吸气持续时间(ti)延长(P小于0.05)。两种负荷下呼气持续时间(Te)的变化无差异(P大于0.05)。然而,呼吸周期的总持续时间(T)相对于对照有增加趋势,阻力负荷时增加更明显。鼻峰压阻力负荷时高于弹性负荷(小于0.025)。我们认为:(1)与成年受试者和其他动物物种一样,早产儿阻力负荷时吸气持续时间比弹性负荷时增加;(2)首次负荷呼吸的T随负荷逐渐增大而趋于增加,因此瞬时频率趋于降低;(3)如果鼻峰压反映呼吸肌产生的张力,那么呼吸肌并未提供终止吸气所需的抑制信息。

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