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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Computational Fluid Dynamics (CFD) Investigation of Aerodynamic Characters inside Nasal Cavity towards Surgical Treatments for Secondary Atrophic Rhinitis
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Computational Fluid Dynamics (CFD) Investigation of Aerodynamic Characters inside Nasal Cavity towards Surgical Treatments for Secondary Atrophic Rhinitis

机译:鼻腔内空气动力学(CFD)调查鼻腔内鼻腔鼻腔鼻炎手术治疗

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摘要

Purpose. To use computational fluid dynamics (CFD) technology to fundamentally understand (1) the effect of surgical treatments on nasal physiology for secondary atrophic rhinitis and (2) the priority of operations. Subjects and Methods: With the aid of medical imaging and CFD modeling, three virtual operations (nasoseptal perforation repair, cavity narrowing, and a combination of both) were performed to analyze airflow, nasal resistance, and wall shear stress. Results. Compared with the cavity-narrowing virtual operation, nasal resistance was not significantly altered by septal perforation repair virtual operation. Airflow allocation changed with more air flowing through the olfactory area and less though the nasal floor after all operations, especially the cavity-narrowing operation. Wall shear stress at the original epistaxis area and the nasal floor was reduced after the cavity-narrowing operation. Conclusions. Simulation results suggest that the cavity-narrowing operation takes priority over septal perforation repair if a staged surgery approach is adopted. If only one operation can be chosen, the cavity-narrowing operation is better than the septal perforation repair. This work shows that CFD-based modeling may aid precision medicine.
机译:目的。使用计算流体动力学(CFD)技术从根本上理解(1)外科治疗对鼻生理学对次生萎缩性鼻炎的影响和(2)业务的优先事项。主题和方法:借助于医学成像和CFD建模,进行三个虚拟操作(鼻孔穿孔修复,腔缩小,两者的组合),以分析气流,鼻阻力和壁剪应力。结果。与腔缩小虚拟操作相比,隔膜穿孔修复虚拟操作没有显着改变鼻抗性。气流分配随着嗅觉区域的更多空气而变化,并且在所有操作之后的鼻地板较少,尤其是腔缩小操作。在腔室缩小操作后,原始髋轴区域和鼻地板的墙体剪切应力降低。结论。仿真结果表明,如果采用分阶段的手术​​方法,腔内缩小操作优先于隔膜穿孔修复。如果只能选择一个操作,则腔室缩小操作优于隔膜穿孔修复。这项工作表明,基于CFD的建模可以帮助精密药。

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