|
|
Showing 1 - 3 of
3 matches in All Departments
Accelerated Path to Cures provides a transformative perspective on
the power of combining advanced computational technologies,
modeling, bioinformatics and machine learning approaches with
nonclinical and clinical experimentation to accelerate drug
development. This book discusses the application of advanced
modeling technologies, from target identification and validation to
nonclinical studies in animals to Phase 1-3 human clinical trials
and post-approval monitoring, as alternative models of drug
development. As a case of successful integration of computational
modeling and drug development, we discuss the development of oral
small molecule therapeutics for inflammatory bowel disease, from
the application of docking studies to screening new chemical
entities to the development of next-generation in silico human
clinical trials from large-scale clinical data. Additionally, this
book illustrates how modeling techniques, machine learning, and
informatics can be utilized effectively at each stage of drug
development to advance the progress towards predictive, preventive,
personalized, precision medicine, and thus provide a successful
framework for Path to Cures.
Computational Immunology: Models and Tools encompasses the
methodological framework and application of cutting-edge tools and
techniques to study immunological processes at a systems level,
along with the concept of multi-scale modeling. The book's emphasis
is on selected cases studies and application of the most updated
technologies in computational modeling, discussing topics such as
computational modeling and its usage in immunological research,
bioinformatics infrastructure, ODE based modeling, agent based
modeling, and high performance computing, data analytics, and
multiscale modeling. There are also modeling exercises using recent
tools and models which lead the readers to a thorough comprehension
and applicability. The book is a valuable resource for
immunologists, computational biologists, bioinformaticians,
biotechnologists, and computer scientists, as well as all those who
wish to broaden their knowledge in systems modeling.
Accelerated Path to Cures provides a transformative perspective on
the power of combining advanced computational technologies,
modeling, bioinformatics and machine learning approaches with
nonclinical and clinical experimentation to accelerate drug
development. This book discusses the application of advanced
modeling technologies, from target identification and validation to
nonclinical studies in animals to Phase 1-3 human clinical trials
and post-approval monitoring, as alternative models of drug
development. As a case of successful integration of computational
modeling and drug development, we discuss the development of oral
small molecule therapeutics for inflammatory bowel disease, from
the application of docking studies to screening new chemical
entities to the development of next-generation in silico human
clinical trials from large-scale clinical data. Additionally, this
book illustrates how modeling techniques, machine learning, and
informatics can be utilized effectively at each stage of drug
development to advance the progress towards predictive, preventive,
personalized, precision medicine, and thus provide a successful
framework for Path to Cures.
|
|