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Numerical analysis of the influence of nasal surgery on the nasal heating function

机译:鼻腔手术对鼻腔加热功能影响的数值分析

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To study the influence of nasal surgery on nasal heating function. Threedimensional finite element nasal models were based on the computed tomography data of a normal nose and the preoperation and postoperation data of 2 noses (i.e., nose A and nose B) with a deviated nasal septum. Numerical simulations primarily focusing on the airflow distribution and the airflow temperature were used to study the influence of nasal surgery on the nasal heating function of inhaled airflow. The airflow distribution and heating characteristics of these models were obtained by comparing the simulation results of the normal nasal cavity with the results of the diseased nasal cavity and by comparing the preoperative and postoperative nasal cavities. The noses before surgery had a larger surface area and a smaller volume than after surgery. After the operation, the heating effect on the airflow decreased significantly in nose A and remained mostly unchanged in nose B (which had an adhesion between the inferior turbinate and nasal septum). The surface area and the volume of nasal airway are correlated with the nasal heating function. The nasal turbinate should not be resected excessively for treating a nasal obstruction caused by compensatory nasal turbinate hypertrophy. The width of the nasal airway should be maintained within a certain range after surgery. An excessively wide airway could affect the nasal heating function.
机译:研究鼻腔手术对鼻腔加热功能的影响。三维有限元鼻腔模型基于正常鼻子的计算机断层扫描数据以及鼻中隔偏斜的2个鼻子(即鼻子A和鼻子B)的术前和术后数据。数值模拟主要关注气流分布和气流温度,用于研究鼻腔手术对吸入气流鼻腔加热功能的影响。通过将正常鼻腔的模拟结果与患病鼻腔的结果进行比较,并通过比较术前和术后鼻腔来获得这些模型的气流分布和加热特性。与手术后相比,手术前的鼻子表面积更大,体积更小。手术后,鼻子A上对气流的加热效果显着下降,鼻子B上的气流则基本保持不变(鼻甲与鼻中隔之间有粘连)。鼻气道的表面积和体积与鼻加热功能相关。为了治疗由代偿性鼻甲肥大引起的鼻阻塞,不应过分切除鼻甲。手术后鼻气道的宽度应保持在一定范围内。呼吸道过宽可能会影响鼻腔加热功能。

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