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首页> 外文期刊>Acta Otorhinolaryngologica Italica >Thermal water delivery in the nose: experimental results describing droplet deposition through computational fluid dynamics
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Thermal water delivery in the nose: experimental results describing droplet deposition through computational fluid dynamics

机译:鼻子中的热水输送:通过计算流体动力学描述液滴沉积的实验结果

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Thermal water therapies have a role in treating various inflammatory disorders dating back to ancient Greece. Several studies have demonstrated beneficial effects of thermal water inhalations for upper respiratory disorders, such as improvement of mucociliary function and reduction of inflammatory cell infiltration. This experimental study describes the numerical investigation and clinical implications of thermal water droplet deposition in the nasal cavity of a single patient. To our knowledge, the numerical flow simulations described are the first investigations specifically designed for thermal water applications. To simulate nasal airflow, a patient-specific 3D computer model was created from a CT scan. The numerical approach is based on the Large Eddy Simulation (LES) technique and builds entirely upon open-source software. Deposition on mucosa was studied for two droplet sizes (5 and 10 μm diameter), corresponding to common thermal therapy applications (aerosol and vapour inhalation). The simulations consider steady inspiration at two different (low and moderate) breathing intensities. The results of this preliminary study show specific deposition patterns that favour droplet deposition in the middle meatus region to the inferior meatus, with particle size- and breathing intensity-related effects. These global data on particle deposition differ from findings related to the single-phase nasal airflow, which is more evenly distributed between the middle and inferior meatus. The potential clinical consequences of deposition data are discussed. The study furthermore provides evidence for the effectiveness of thermal aerosol and vapour inhalation therapies in reaching important areas of nasal mucosa with considerable clinical significance.
机译:热水疗法在治疗可追溯至古希腊的各种炎症性疾病中具有作用。多项研究表明,吸入热水可改善上呼吸道疾病,如改善粘膜纤毛功能和减少炎症细胞浸润。这项实验研究描述了单个患者鼻腔中热水滴沉积的数值研究及其临床意义。据我们所知,所描述的数值流模拟是专门为热水应用设计的首次研究。为了模拟鼻气流,通过CT扫描创建了特定于患者的3D计算机模型。数值方法基于大型涡流仿真(LES)技术,并且完全基于开源软件。研究了在粘膜上沉积的两种液滴大小(直径分别为5和10μm),对应于常见的热疗应用(气雾和蒸汽吸入)。模拟考虑了两种不同(低和中)呼吸强度下的稳定吸气。这项初步研究的结果表明,特定的沉积模式有利于中鼻道至下鼻道的液滴沉积,并具有与粒径和呼吸强度有关的影响。这些有关颗粒沉积的全球数据不同于与单相鼻气流相关的发现,单相鼻气流更均匀地分布在中鼻道和下鼻道之间。讨论了沉积数据的潜在临床后果。该研究进一步提供了热气雾和蒸汽吸入疗法有效地到达鼻粘膜重要区域的证据,具有重要的临床意义。

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