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Nasal sprayed particle deposition in a human nasal cavity under different inhalation conditions

机译:在不同吸入条件下人鼻腔中的鼻喷雾颗粒沉积

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Deposition of polydisperse particles representing nasal spray application in a human nasal cavity was performed under transient breathing profiles of sniffing, constant flow, and breath hold. The LES turbulence model was used to describe the fluid phase. Particles were introduced into the flow field with initial spray conditions, including spray cone angle, insertion angle, and initial velocity. Since nasal spray atomizer design determines the particle conditions, fifteen particle size distributions were used, each defined by a log-normal distribution with a different volume mean diameter ( Dv 50). Particle deposition in the anterior region was approximately 80% when Dv 50 50μm, and this decreased to 45% as Dv 50 decreased to 10μ m for constant and sniff breathing conditions. The decrease in anterior deposition was countered with increased deposition in the middle and posterior regions. The significance of increased deposition in the middle region for drug delivery shows there is potential for nasal delivered drugs to reach the highly vascularised mucosal walls in the main nasal passages. For multiple targeted deposition sites, an optimisation equation was introduced where deposition results of any two targeted sites could be combined and a weighting between 0 to 1 was applied to each targeted site, representing the relative importance of each deposition site.
机译:在嗅探,恒定流动和呼吸保持下的瞬态呼吸型材下进行代表人鼻腔中的鼻腔喷射应用的多分散颗粒。 LES湍流模型用于描述流体阶段。用初始喷射条件引入流场中的颗粒,包括喷雾锥角,插入角度和初始速度。由于鼻喷雾雾化器设计决定了颗粒条件,因此使用了十五个粒度分布,每个分布由具有不同体积平均直径(DV 50)的对数正态分布限定。当DV 50&GT时,前部区域的颗粒沉积约为80%。 50μm,这降至45%,因为DV 50降低至10μm,用于恒定和嗅探呼吸条件。在中间区域和后部区域中的沉积增加,对前沉积的降低。中部地区沉积增加的药物递送的重要性显示出鼻腔递送的鼻腔递送的药物在主要鼻腔通道中达到高度血管化的粘膜壁。对于多个靶向沉积位点,引入了优化方程,其中可以将任何两个靶向位点的沉积结果组合,并将0至1之间的加权施加到每个靶向部位,表示每个沉积位点的相对重要性。

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