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Investigation on the nasal airflow characteristics of anterior nasal cavity stenosis

机译:前鼻腔狭窄鼻气流特征的研究

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We used a computational fluid dynamics (CFD) model to study the inspiratory airflow profiles of patients with anterior nasal cavity stenosis who underwent curative surgery, by comparing pre- and postoperative airflow characteristics. Twenty patients with severe anterior nasal cavity stenosis, including one case of bilateral stenosis, underwent computed tomography (CT) scans for CFD modelling. The pre- and postoperative airflow characteristics of the nasal cavity were simulated and analyzed. The narrowest area of the nasal cavity in all 20 patients was located within the nasal valve area, and the mean cross-sectional area increased from 0.39 cm 2 preoperative to 0.78 cm 2 postoperative (P<0.01). Meanwhile, the mean airflow velocity in the nasal valve area decreased from 6.19 m/s to 2.88 m/s (P<0.01). Surgical restoration of the nasal symmetry in the bilateral nasal cavity reduced nasal resistance in the narrow sides from 0.24 Pa . s/mL to 0.11 Pa . s/mL (P<0.01). Numerical simulation of the nasal cavity in patients with anterior nasal cavity stenosis revealed structural changes and the resultant patterns of nasal airflow. Surgery achieved balanced bilateral nasal ventilation and decreased nasal resistance in the narrow region of the nasal cavity. The correction of nasal valve stenosis is not only indispensable for reducing nasal resistance, but also the key to obtain satisfactory curative effect.
机译:我们使用计算流体动力学(CFD)模型,通过比较术前和术后的气流特征来研究接受根治性手术的前鼻腔狭窄患者的吸气气流情况。对20例严重的前鼻腔狭窄患者(包括1例双侧狭窄患者)进行了计算机断层扫描(CT)扫描,以建立CFD模型。模拟和分析了鼻腔手术前后的气流特征。在所有20例患者中,鼻腔最窄的区域位于鼻瓣区域内,平均横截面积从术前的0.39 cm 2增加到术后的0.78 cm 2(P <0.01)。同时,鼻瓣区域的平均气流速度从6.19 m / s降低到2.88 m / s(P <0.01)。通过外科手术修复双侧鼻腔的鼻对称性,可以使狭窄侧的鼻阻力从0.24 Pa起。 s / mL至0.11 Pa。 s / mL(P <0.01)。鼻腔狭窄患者鼻腔的数值模拟显示鼻腔结构的改变和由此产生的鼻气流模式。手术实现了平衡的双侧鼻通气,并在鼻腔狭窄区域降低了鼻阻力。鼻瓣狭窄的矫正不仅是降低鼻阻力的必不可少的方法,也是获得满意疗效的关键。

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