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Annals of Biomedical Engineering|May 20, 2015
Characterization of a New High-Dose Dry Powder Inhaler (DPI) Based on a Fluidized Bed DesignDale R Farkas, Michael Hindle, P Worth LongestJournal of Biomechanical Engineering|June 1, 2013
Development of characteristic upper tracheobronchial airway models for testing pharmaceutical aerosol deliveryRoss L Walenga, Geng Tian, P Worth LongestInternational Journal of Pharmaceutics|November 1, 2020
Characterization of excipient enhanced growth (EEG) tobramycin dry powder aerosol formulationsAmr Hassan, Dale Farkas, Worth Longest, et al.Journal of Applied Physiology (Bethesda, Md. : 1985)|April 5, 2008
Effects of the laryngeal jet on nano- and microparticle transport and deposition in an approximate model of the upper tracheobronchial airwaysJinxiang Xi, P Worth Longest, Ted B MartonenPharmaceutical Research|February 11, 2022
Computational Fluid Dynamics (CFD) Guided Spray Drying Recommendations for Improved Aerosol Performance of a Small-Particle Antibiotic FormulationWorth Longest, Amr Hassan, Dale Farkas, et al.Pharmaceutical Research|May 30, 2019
Use of Computational Fluid Dynamics (CFD) Dispersion Parameters in the Development of a New DPI Actuated with Low Air VolumesWorth Longest, Dale Farkas, Karl Bass, et al.Journal of Vascular Surgery|December 19, 2003
Particle hemodynamics analysis of Miller cuff arterial anastomosisP Worth Longest, Clement Kleinstreuer, Joseph P ArchieInternational Journal of Pharmaceutics|January 15, 2013
Aerosolization characteristics of dry powder inhaler formulations for the excipient enhanced growth (EEG) application: effect of spray drying process conditions on aerosol performanceYoen-Ju Son, P Worth Longest, Michael HindleJournal of Aerosol Medicine and Pulmonary Drug Delivery|November 11, 2011
In vitro tests for aerosol deposition. I: Scaling a physical model of the upper airways to predict drug deposition variation in normal humansRenishkumar R Delvadia, P Worth Longest, Peter R ByronRespiratory Care|October 10, 2013
Improving aerosol drug delivery during invasive mechanical ventilation with redesigned componentsP Worth Longest, Mandana Azimi, Laleh Golshahi, et al.Pageof 14