Shaffer T H, Koen P A, Moskowitz G D, Ferguson J D, Delivoria-Papadopoulos M
Biol Neonate. 1978;34(1-2):1-10. doi: 10.1159/000241098.
Pulmonary mechanics were determined at 0, 3, 6, and 10 cm H2O positive and expiratory pressure (PEEP) in premature lambs at a mean gestational age of 134 days. Functional residual capacity increased (p less than 0.005) by 7% (1.6 ml/kg) per cm H2O PEEP. Dynamic lung compliance and specific compliance significantly decreased by 10% (0.11 ml/cm H2O/kg) and 9% (0.0051 l/cm H2O) per cm H2O PEEP, respectively, for PEEP above 3 cm H2O level. Inspiratory lung resistance increased significantly (p less than 0.05) only between 0 and 6 cm H2O PEEP while expiratory lung resistance increased (p less than 0.05) between 0 cm H2O PEEP and all higher levels. The data suggest that PEEP in excess of 3 cm H2O produces undesirable effects on lung mechanics in premature lambs. These results may be important in predicting contraindications and potential complications of positive pressure breathing in the newborn.
在平均胎龄为134天的早产羔羊中,于0、3、6和10厘米水柱的正压呼气末正压(PEEP)水平下测定肺力学。每厘米水柱PEEP使功能残气量增加(p<0.005),每千克体重增加7%(1.6毫升/千克)。对于高于3厘米水柱水平的PEEP,动态肺顺应性和比顺应性分别显著降低,每厘米水柱PEEP分别降低10%(0.11毫升/厘米水柱/千克)和9%(0.0051升/厘米水柱)。仅在0至6厘米水柱PEEP之间吸气肺阻力显著增加(p<0.05),而在0厘米水柱PEEP至所有更高水平之间呼气肺阻力增加(p<0.05)。数据表明,超过3厘米水柱的PEEP会对早产羔羊的肺力学产生不良影响。这些结果对于预测新生儿正压通气的禁忌证和潜在并发症可能具有重要意义。