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Temperature distribution in the upper airway after inhalation injury.

机译:吸入性损伤后上呼吸道的温度分布。

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OBJECTIVE: The aim of the study was to establish an animal model of laryngeal burn and to investigate the temperature distribution of heated air in the upper airway. METHODS: The animal model was established by inhalation of dry heated air at 80, 160 and 320 degrees C in 18 healthy, male, adult hybrid dogs. Time for inducing injury was set at 20 min. The distribution of temperatures after heated-air inhalation was examined at different locations including the epiglottis, laryngeal vestibule, vocal folds and trachea. RESULTS: The temperatures of the heated air decreased to 47.1, 118.4 and 193.8 degrees C at the laryngeal vestibule and to 39.3, 56.6 and 137.9 degrees C at the lower margin of vocal folds in the 80, 160 and 320 degrees C groups, respectively. CONCLUSION: Due to its special anatomy and functions, the larynx has different responses to dry heated air at different temperatures. The air temperature decreases markedly when the air arrives at the larynx. By contrast, the larynx has a low capacity for blocking high-temperature air and retaining heat. As a result, high-temperature air often causes more severe injury to the larynx and the lower airway.
机译:目的:建立喉烧伤的动物模型并研究上呼吸道中热空气的温度分布。方法:通过在80、160和320摄氏度下吸入18​​只健康的雄性成年杂交狗的干燥热空气来建立动物模型。引起伤害的时间设定为20分钟。吸入热空气后,在会厌,喉前庭,声带和气管的不同位置检查了温度分布。结果:在80、160和320摄氏度的人群中,喉前庭的热空气温度分别降至47.1、118.4和193.8摄氏度,在声带的下缘分别降至39.3、56.6和137.9摄氏度。结论:由于其特殊的解剖结构和功能,喉对在不同温度下干燥的干燥空气有不同的反应。当空气到达喉部时,空气温度显着下降。相比之下,喉头的阻挡高温空气和保持热量的能力较低。结果,高温空气经常对喉和下呼吸道造成更严重的伤害。

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