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Respiration Simulation of Human Upper Airway for Analysis of Obstructive Sleep Apnea Syndrome

机译:人类上气道呼吸模拟分析阻塞性睡眠呼吸暂停综合征

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Obstructive sleep apnea syndrome (OSAS) is a disease that the pha-ryngeal portion collapses repeatedly during sleep and finally results in the cessation of breathing. So far the potential pathogenesis factors that may cause OSAS are discussed from two main aspects: anatomic abnormalities of the upper airway and the weak or absence of nerve control mechanism. In this study, a three-dimensional finite element model which possesses high geometrical similarity with the real anatomical structure is built. By making use of the pressure in upper airway measured in normal expiration and apnea episode, the fluid field in upper airway and the displacement of the soft tissue around the airway are calculated using fluid-structure coupled algorithm, and then the result between normal respiration and apnea episode are compared. According to the result, the region where the maximum negative pressure and the largest displacement occur will be the most domains the airway collapses and breath apnea appears.
机译:阻塞性睡眠呼吸暂停综合征(OSAS)是一种疾病,即在睡眠期间反复坍塌,最终导致呼吸停止。到目前为止,可能导致OSA的潜在发病机构是从两个主要方面讨论的:上气道的解剖异常和神经控制机制的弱或不存在。在该研究中,建立了具有与实际解剖结构具有高几何相似性的三维有限元模型。通过在正常到期和呼吸暂停中测量的上气道中的压力,使用流体 - 结构耦合算法计算上气道中的流体场和气道周围的软组织的位移,然后常规呼吸与比较呼吸暂停剧集。根据结果​​,发生最大负压和最大位移的区域将是气道坍塌和呼吸呼吸暂停的最大域。

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