首页> 外文期刊>Chest: The Journal of Circulation, Respiration and Related Systems >Interactions of airflow oscillation, tracheal inclination, and mucus elasticity significantly improve simulated cough clearance.
【24h】

Interactions of airflow oscillation, tracheal inclination, and mucus elasticity significantly improve simulated cough clearance.

机译:气流振荡,气管倾斜和粘液弹性的相互作用可显着改善模拟咳嗽的清除率。

获取原文
获取原文并翻译 | 示例
       

摘要

BACKGROUND: Viscoelastic properties of simulated mucus, angle of tracheal inclination (theta), and high-frequency airflow oscillations on median displacement of simulated mucus during simulated cough were investigated in this study. METHODS: Mucus simulants with viscoelastic properties similar to healthy individuals and patients with COPD were prepared using locust bean gum (LBG)-water solution (0.38 g LBG in 100 mL water) cross-linked with 3-mL and 12-mL borax-water solution (0.02 M), respectively. Aliquots of 0.3 mL of simulants were placed on a dry Plexiglas insert inside a D-shaped clear Plexiglas tracheal model. Movement of aliquots of mucus simulants was measured during cough of 0.3 s duration. Cough velocities studied (5-30 m/s) are typical of patients with weak expiratory muscles and airway obstruction. Studies were conducted with tracheal model placed horizontally (0 degrees) and at increasing theta (15 degrees, 30 degrees, and 45 degrees), with and without superimposed airflow oscillations during coughs. Effects of different parameters and their interactions on displacements of aliquots were compared using analysis of covariance (n = 849). RESULTS: Significant positive nonlinear associations existed between displacement and cough velocity for both 3-mL and 12-mL simulants (P < .0001). Displacement was greatest for the cohesive 12-mL simulant at all cough velocities. Displacement increased significantly (P < .0001) as theta was increased for both types of simulants. Largest displacements at low cough velocities occurred with 12-mL simulant in the presence of oscillations at 45 degrees angle. CONCLUSIONS: Results support the use of airflow oscillations and sitting upright to facilitate mucus displacement during cough, particularly with thick, elastic mucus found in patients with COPD (P < .0001).
机译:背景:研究模拟黏液的粘弹性,气管倾斜角度(θ)和模拟咳嗽期间模拟黏液中位位移的高频气流振荡。方法:使用刺槐豆胶(LBG)-水溶液(0.38 g LBG在100 mL水中)与3-mL和12 mL硼砂-水交联制备具有类似于健康个体和COPD患者的粘弹性的粘液模拟物。溶液(0.02 M)。将0.3 mL模拟量的等分试样放在D形透明Plexiglas气管模型内的干燥Plexiglas插入物上。在持续0.3 s的咳嗽期间测量粘液模拟物等分试样的运动。所研究的咳嗽速度(5-30 m / s)是呼气肌无力和气道阻塞的典型患者。在水平放置(0度)和θ递增(15度,30度和45度)的情况下进行气管模型研究,咳嗽过程中有和没有叠加的气流振荡。使用协方差分析(n = 849)比较了不同参数及其相互作用对等分试样位移的影响。结果:对于3mL和12mL模拟物,位移与咳嗽速度之间存在显着的正非线性关联(P <.0001)。在所有咳嗽速度下,粘性最大的12 mL模拟物的位移最大。当两种模拟物的θ都增加时,位移显着增加(P <.0001)。在以45度角振荡的情况下,使用12 mL模拟物在低咳嗽速度下发生最大位移。结论:结果支持使用气流振荡和直立坐以促进咳嗽期间粘液移位,特别是在COPD患者中发现厚而有弹性的粘液时(P <.0001)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号