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VIRTUAL ASSESSMENT OF THE PERFORMANCE OF AN INHALATION DRUG DELIVERY DEVICE

机译:虚拟评估吸入药物递送装置的性能

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Inhalation therapies are gaining popularity for both respiratory and non-respiratory therapies. However the challenge remains to achieve optimal drug delivery because of the complex interaction between inhaler devices, drug formulations along with patients' coordination and physiology. In order to lower R&D costs and efforts, and understand better the mechanics of pharmaceutical aerosols, system designers are looking for comprehensive tools enabling them to reproduce virtual inhalation processes. Computational fluid dynamics (CFD) techniques represent a non-invasive way of predicting the fate of inhaled medication from oral or nasal delivery devices. The object of this work is to apply CFD methodology to model the full inhalation mechanism, from the drug dispersion inside the device and delivery to the patient, to its journey within the respiratory tract.
机译:吸入疗法对于呼吸和非呼吸疗法来说是普及。然而,由于吸入器装置,药物制剂与患者协调和生理学以及患者的协调和生理学之间的复杂相互作用,挑战仍有待实现最佳药物递送。为了降低研发成本和努力,并了解更好的药物气溶胶机制,系统设计人员正在寻找综合工具,使他们能够重现虚拟吸入过程。计算流体动力学(CFD)技术代表了从口服或鼻输送装置预测吸入药物的命运的非侵入性方式。这项工作的目的是应用CFD方法来模拟全吸入机制,从装置内的药物分散和向患者输送到呼吸道内的旅程。

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