Plášek Marek, Masárová Michaela, Bojko Marián, Komínek Pavel, Matoušek Petr, Formánek Martin
Department of Otorhinolaryngology and Head and Neck Surgery, University Hospital Ostrava, 17. Listopadu 1790, 70852 Ostrava, Czech Republic.
Faculty of Medicine, University of Ostrava, 70300 Ostrava, Czech Republic.
Diagnostics (Basel). 2022 Oct 31;12(11):2642. doi: 10.3390/diagnostics12112642.
Passage of nasal airflow during breathing is crucial in achieving accurate diagnosis and optimal therapy for patients with nasal disorders. Computational fluid dynamics (CFD) is the dominant method for simulating and studying airflow. The present study aimed to create a CFD nasal airflow model to determine the major routes of airflow through the nasal cavity and thus help with individualization of surgical treatment of nasal disorders. The three-dimensional nasal cavity model was based on computed tomography scans of the nasal cavity of an adult patient without nasal breathing problems. The model showed the main routes of airflow in the inferior meatus and inferior part of the common meatus, but also surprisingly in the middle meatus and in the middle part of the common nasal meatus. It indicates that the lower meatus and the lower part of the common meatus should not be the only consideration in case of surgery for nasal obstruction in our patient. CFD surgical planning could enable individualized precise surgical treatment of nasal disorders. It could be beneficial mainly in challenging cases such as patients with persistent nasal obstruction after surgery, patients with empty nose syndrome, and patients with a significant discrepancy between the clinical findings and subjective complaints.
呼吸过程中鼻气流的通过对于实现鼻疾病患者的准确诊断和最佳治疗至关重要。计算流体动力学(CFD)是模拟和研究气流的主要方法。本研究旨在创建一个CFD鼻气流模型,以确定气流通过鼻腔的主要路径,从而有助于鼻疾病手术治疗的个体化。三维鼻腔模型基于一名无鼻呼吸问题的成年患者鼻腔的计算机断层扫描。该模型显示了气流在下鼻道和总鼻道下部的主要路径,但令人惊讶的是,在中鼻道和总鼻道中部也有气流。这表明,对于我们的患者,在进行鼻阻塞手术时,下鼻道和总鼻道下部不应是唯一的考虑因素。CFD手术规划可以实现鼻疾病的个体化精确手术治疗。它可能主要有益于具有挑战性的病例,例如手术后持续鼻阻塞的患者、空鼻综合征患者以及临床表现与主观症状存在显著差异的患者。