Development of Innovative Drugs via Modeling with MATLAB : A Practical Guide / by Ronald Gieschke, Daniel Serafin
By: Gieschke, Ronald
Contributor(s): Serafin, Daniel
Material type:
E-bookPublisher: Berlin, Heidelberg : Springer International Publishing, 2014Description: 1 recurso en línea (XV, 399 p.) : 192 ilustraciones, 112 ilustraciones en color.ISBN: 9783642397653.Subject: Toxicología
| Item type | Current library | Collection | Call number | Copy number | Status | Date due | Barcode | Item holds | |
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Madrid Digital Acceso Electrónico (UEM) | Ciencias de la Salud | RA1211 .G54 2014 EB (Browse shelf(Opens below)) | .i11550521 | Acceso electrónico | eBOOK .i11550521 |
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| RA1211 2021 EB Free Radical Biology and Environmental Toxicity | RA1211 2023 EB Biomarkers in Toxicology | RA1211 .B873 2014 EB An Introduction to Toxicology | RA1211 .G54 2014 EB Development of Innovative Drugs via Modeling with MATLAB : A Practical Guide | RA1211 .M373 2017 EB Medical toxicology : antidotes and anecdotes | RA1211 .S783 2015 EB Studies on Experimental Toxicology and Pharmacology | RA1211 .T695 2015 EB Toxicological Risk Assessment for Beginners |
Background of pharmacologic modeling -- First example of a computational model -- Differential equations in MATLAB -- Pharmacologic modeling -- Drug-disease modeling -- Population analyses -- Clinical trial simulation -- Graphics-based modeling -- Outlook -- Appendix A: Hints to MATLAB programs -- Appendix B: Solution to exercises
The development of innovative drugs is becoming more difficult while relying on empirical approaches. This inspired all major pharmaceutical companies to pursue alternative model-based paradigms. The key question is: How to find innovative compounds and, subsequently, appropriate dosage regimens? Written from the industry perspective and based on many years of experience, this book offers: {u00A7} Concepts for creation of drug-disease models, introduced and supplemented with extensive MATLAB programs {u00A7} Guidance for exploration and modification of these programs to enhance the understanding of key principles {u00A7} Usage of differential equations to pharmacokinetic, pharmacodynamic and (patho-) physiologic problems thereby acknowledging their dynamic nature {u00A7} A range of topics from single exponential decay to adaptive dosing, from single subject exploration to clinical trial simulation, and from empirical to mechanistic disease modeling. Students with an undergraduate mathematical background or equivalent education, interest in life sciences and skills in a high-level programming language such as MATLAB, are encouraged to engage in model-based pharmaceutical research and development
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