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In-silico Study of the Nasal Cavity's Influence on the Pharyngeal Wall Pressure in Anatomically-Correct Airway Models of Patients with Obstructive Sleep Apnea

机译:硅腔对梗阻性睡眠呼吸暂停患者解剖学校正气道模型咽部壁压力的影响

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Repetitive brief episodes of soft-tissue collapse within the upper airway during sleep characterize obstructive sleep apnea (OSA), an extremely common and disabling disorder. Failure to maintain the patency of the upper airway is caused by the combination of sleep-related loss of compensatory dilator muscle activity and aerodynamic forces promoting closure. The prediction of soft-tissue movement in patient-specific airway 3D mechanical models is emerging as a useful contribution to clinical understanding and decision-making. Such modeling requires reliable estimations of the wall pressure forces. While nasal obstruction has been recognized as a risk factor of OSA, the need to include the nasal cavity in upper-airway models for OSA applications requires consideration, as it is most often omitted because of its complex shape. The hypothesis underpinning this work is that adequate boundary conditions and simple artificial geometric extensions can reproduce the essential effects of the nasal cavity on the pharyngeal flow field and thereby reduce the overall complexity and computational cost of accurate simulations of upper-airway dynamics.
机译:在睡眠期间,在睡眠期间的上呼吸道内的软组织塌陷的重复简报未能维持上气道的通畅是由睡眠相关的补偿扩张肌活动和空气动力促进闭合的空气动力的结合引起的。患者特定气道3D机械模型中软组织运动的预测是对临床理解和决策的有用贡献。这种建模需要可靠地估计壁压力。虽然鼻塞被认为是OSA的危险因素,但是需要将鼻腔中的鼻腔包括用于OSA应用需要考虑,因为它是由于其复杂形状而省略。假设巩固这项工作的假设是足够的边界条件和简单的人工几何延伸可以再现鼻腔对咽流场的基本效果,从而降低了高速公路动态精确模拟的整体复杂性和计算成本。

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