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通过计算流体动力学对上颌窦提升前后窦内流体运动和引流进行建模:一项基于模拟的初步研究。

Modelling Intra-Sinus Fluid Movements and Drainage Through Computational Fluid Dynamics Before and After Maxillary Sinus Augmentation: A Simulation-Based Pilot Study.

作者信息

Güldiken Sarıkaya İpek Necla, Tekin Alperen, Suda Fatih, Çukurova Yilmaz Zeynep Gülen, Özcan Mutlu

机构信息

Department of Dentomaxillofacial Surgery, Faculty of Dentistry, Istınye University, İstanbul 34010, Turkey.

Department of Dentomaxillofacial Radiology, Faculty of Dentistry, Istanbul Medeniyet University, İstanbul 34720, Turkey.

出版信息

J Clin Med. 2024 Dec 26;14(1):60. doi: 10.3390/jcm14010060.

Abstract

: Sinus lifting, a procedure to augment bone in the maxilla, may cause complications such as sinusitis due to impaired drainage. This study aimed to assess how sinus lifting impacts airflow in the sinus cavity, which is essential for patients undergoing dental implants. Using computational fluid dynamics (CFD), this research analyzed airflow changes after sinus floor elevation, offering insights into the aerodynamic consequences of the procedure. : Digital modeling and CFD analysis were performed using patient cone-beam computed tomography data. Three different sinus elevation scenarios, each with varying implant heights, were simulated. Airflow simulations were conducted to assess how reshaping the sinus cavity affects aerodynamics and airflow dynamics. Nasal resistance, calculated through pressure drops and flow rates, and wall shear stress, indicating potential mucosal damage, were evaluated. : Although some airflow changes occurred post-surgery, the implants primarily affected the front and rear of the elevated area, with little impact being seen on air entry points. : Maxillary sinus lifting for dental implant placement may impair sinus drainage, especially at higher elevations, increasing the risk of mucosal damage due to intensified airflows in the reduced sinus volume. A more uniform, simplified intra-sinus structure may enhance fluid dynamics and reduce complications.

摘要

上颌窦提升术是一种在上颌骨增加骨量的手术,可能会因引流不畅而导致鼻窦炎等并发症。本研究旨在评估上颌窦提升术如何影响鼻窦腔内的气流,这对接受牙种植体植入的患者至关重要。本研究使用计算流体动力学(CFD)分析了上颌窦底提升术后的气流变化,以深入了解该手术的空气动力学后果。:使用患者锥形束计算机断层扫描数据进行数字建模和CFD分析。模拟了三种不同的上颌窦提升情况,每种情况的种植体高度各不相同。进行气流模拟以评估重塑鼻窦腔如何影响空气动力学和气流动力学。通过压降和流速计算得出的鼻阻力以及表明潜在黏膜损伤的壁面剪应力均进行了评估。:尽管术后出现了一些气流变化,但种植体主要影响提升区域的前部和后部,对空气进入点的影响很小。:用于牙种植体植入的上颌窦提升术可能会损害鼻窦引流,尤其是在提升高度较高时,由于鼻窦容积减小导致气流增强,会增加黏膜损伤的风险。更均匀、简化的鼻窦内结构可能会增强流体动力学并减少并发症。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb96/11720980/1abaf1206d57/jcm-14-00060-g001.jpg

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