The effects of grid design on the performance of 3D-printed dry powder inhalers
Author:
Funder
Natural Sciences and Engineering Research Council of Canada
China Scholarship Council
Publisher
Elsevier BV
Subject
Pharmaceutical Science
Reference41 articles.
1. “download.pdf.” Accessed: Jul. 27, 2022. [Online]. Available: https://www.fda.gov/media/70851/download.
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3. Measurement of peak inspiratory flow with in-check dial device to simulate low-resistance (Diskus) and high-resistance (Turbohaler) dry powder inhalers in children with asthma;Amirav;Pediatr. Pulmonol.,2005
4. Wall collision and drug-carrier detachment in dry powder inhalers: Using DEM to devise a sub-scale model for CFD calculations;Ariane;Powder Technol.,2018
5. Surface Quality of 3D-Printed Models as a Function of Various Printing Parameters;Arnold;Materials,2019
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1. Understanding the role of swirling flow in dry powder inhalers: Implications for design considerations and pulmonary delivery;Journal of Controlled Release;2024-09
2. Practical Application of 3D Printing for Pharmaceuticals in Hospitals and Pharmacies;Pharmaceutics;2023-07-04
3. Investigation on the influence of design features on the performance of dry powder inhalers: Spiral channel, mouthpiece dimension, and gas inlet;International Journal of Pharmaceutics;2023-07
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