Xiong Guan-Xia, Li Jian-Feng, Jiang Guang-Li, Zhan Jie-Min, Rong Liang-Wan, Xu Geng
Otorhinolaryngology Hospital of the First Affiliated Hospital of Sun Yat-sen University, Otorhinolaryngology Institute of Sun Yat-sen University, Guangzhou 510080, China.
Zhonghua Er Bi Yan Hou Tou Jing Wai Ke Za Zhi. 2009 Nov;44(11):911-7.
To study the airflow velocity, trace, distribution, pressure, as well as the airflow exchange between the nasal cavity and paranasal sinuses in a computer simulation of nasal cavity pre and post virtual endoscopic sinus surgery (ESS).
Computational fluid dynamics (CFD) technique was applied to construct an anatomically and proportionally accurate three-dimensional nasal model based on a healthy adult woman's nasal CT scans. A virtual ESS intervention was performed numerically on the normal nasal model using Fluent 6.1.22 software. Navier-Stokes and continuity equations were used to calculate and compare the airflow characteristics between pre and post ESS models.
(1) After ESS flux in the common meatus decreased significantly. Flux in the middle meatus and the connected area of opened ethmoid sinus increased by 10% during stable inhalation and by 9% during exhalation. (2) Airflow velocity in the nasal sinus complex increased significantly after ESS. (3) After ESS airflow trace was significantly changed in the middle meatus. Wide-ranging vortices formed at the maxillary sinus, the connected area of ethmoid sinus and the sphenoid sinus. (4) Total nasal cavity resistance was decreased after ESS. (5) After ESS airflow exchange increased in the nasal sinuses, most markedly in the maxillary sinus.
After ESS airflow velocity, flux and trace were altered. Airflow exchange increased in each nasal sinus, especially in the maxillary sinus.
在鼻腔虚拟内窥镜鼻窦手术(ESS)前后的计算机模拟中,研究气流速度、轨迹、分布、压力以及鼻腔与鼻窦之间的气流交换。
应用计算流体动力学(CFD)技术,基于一名健康成年女性的鼻腔CT扫描构建解剖结构和比例精确的三维鼻腔模型。使用Fluent 6.1.22软件对正常鼻腔模型进行虚拟ESS干预数值模拟。利用纳维-斯托克斯方程和连续性方程计算并比较ESS手术前后模型的气流特性。
(1)ESS术后总鼻道通量显著降低。中鼻道及开放筛窦连接区域的通量在稳定吸气时增加10%,呼气时增加9%。(2)ESS术后鼻窦复合体中的气流速度显著增加。(3)ESS术后中鼻道气流轨迹显著改变。在上颌窦、筛窦连接区域和蝶窦形成了广泛的涡流。(4)ESS术后鼻腔总阻力降低。(5)ESS术后鼻窦内气流交换增加,在上颌窦最为明显。
ESS术后气流速度、通量和轨迹发生改变。各鼻窦内气流交换增加,尤其是在上颌窦。