20 results on '"Frijlink, P."'
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2. Personalized Medicine in Pediatrics: The Clinical Potential of Orodispersible Films
3. Influence of Miscibility of Protein-Sugar Lyophilizates on Their Storage Stability
4. Simplifying Influenza Vaccination During Pandemics: Sublingual Priming and Intramuscular Boosting of Immune Responses with Heterologous Whole Inactivated Influenza Vaccine
5. Quantitative Characterization of Agglomerate Abrasion in a Tumbling Blender by Using the Stokes Number Approach
6. The Stokes Number Approach to Support Scale-Up and Technology Transfer of a Mixing Process
7. A Non-Invasive, Low-Cost Study Design to Determine the Release Profile of Colon Drug Delivery Systems: A Feasibility Study
8. CLSM as Quantitative Method to Determine the Size of Drug Crystals in a Solid Dispersion
9. A New Strategy to Stabilize Oxytocin in Aqueous Solutions: I. The Effects of Divalent Metal Ions and Citrate Buffer
10. Bottom-Up Preparation Techniques for Nanocrystals of Lipophilic Drugs
11. Controlled Crystallization of the Lipophilic Drug Fenofibrate During Freeze-Drying: Elucidation of the Mechanism by In-Line Raman Spectroscopy
12. Intranasal Delivery of Influenza Subunit Vaccine Formulated with GEM Particles as an Adjuvant
13. Preservation of the Immunogenicity of Dry-powder Influenza H5N1 Whole Inactivated Virus Vaccine at Elevated Storage Temperatures
14. Prediction of the Ease of Subdivision of Scored Tablets from Their Physical Parameters
15. Development and Application of a Process Window for Achieving High-Quality Coating in a Fluidized Bed Coating Process
16. Quantitative Image Analysis for Evaluating the Coating Thickness and Pore Distribution in Coated Small Particles
17. Using the Internal Stress Concept to Assess the Importance of Moisture Sorption-induced Swelling on the Moisture Transport through the Glassy HPMC Films
18. Pore Direction in Relation to Anisotropy of Mechanical Strength in a Cubic Starch Compact
19. Development of Stable Influenza Vaccine Powder Formulations: Challenges and Possibilities
20. In Vitro Performance Testing of the Novel Medspray® Wet Aerosol Inhaler Based on the Principle of Rayleigh Break-up
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