Mathematical Modeling of Biological Systems : : Geometry, Symmetry and Conservation Laws / / Federico Papa, Carmela Sinisgalli, editor.

Mathematical modeling is a powerful approach supporting the investigation of open problems in natural sciences, in particular physics, biology and medicine. Applied mathematics allows to translate the available information about real-world phenomena into mathematical objects and concepts. Mathematic...

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Place / Publishing House:Basel : : MDPI - Multidisciplinary Digital Publishing Institute,, 2022.
Year of Publication:2022
Language:English
Physical Description:1 online resource (218 pages)
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spelling Mathematical Modeling of Biological Systems : Geometry, Symmetry and Conservation Laws / Federico Papa, Carmela Sinisgalli, editor.
Mathematical Modeling of Biological Systems
Basel : MDPI - Multidisciplinary Digital Publishing Institute, 2022.
1 online resource (218 pages)
text txt rdacontent
computer c rdamedia
online resource cr rdacarrier
Description based on publisher supplied metadata and other sources.
Mathematical modeling is a powerful approach supporting the investigation of open problems in natural sciences, in particular physics, biology and medicine. Applied mathematics allows to translate the available information about real-world phenomena into mathematical objects and concepts. Mathematical models are useful descriptive tools that allow to gather the salient aspects of complex biological systems along with their fundamental governing laws, by elucidating the system behavior in time and space, also evidencing symmetry, or symmetry breaking, in geometry and morphology. Additionally, mathematical models are useful predictive tools able to reliably forecast the future system evolution or its response to specific inputs. More importantly, concerning biomedical systems, such models can even become prescriptive tools, allowing effective, sometimes optimal, intervention strategies for the treatment and control of pathological states to be planned. The application of mathematical physics, nonlinear analysis, systems and control theory to the study of biological and medical systems results in the formulation of new challenging problems for the scientific community. This Special Issue includes innovative contributions of experienced researchers in the field of mathematical modelling applied to biology and medicine.
Information technology.
3-0365-2764-8
Sinisgalli, Carmela, editor.
Papa, Federico, editor.
language English
format eBook
author2 Sinisgalli, Carmela,
Papa, Federico,
author_facet Sinisgalli, Carmela,
Papa, Federico,
author2_variant c s cs
f p fp
author2_role TeilnehmendeR
TeilnehmendeR
title Mathematical Modeling of Biological Systems : Geometry, Symmetry and Conservation Laws /
spellingShingle Mathematical Modeling of Biological Systems : Geometry, Symmetry and Conservation Laws /
title_sub Geometry, Symmetry and Conservation Laws /
title_full Mathematical Modeling of Biological Systems : Geometry, Symmetry and Conservation Laws / Federico Papa, Carmela Sinisgalli, editor.
title_fullStr Mathematical Modeling of Biological Systems : Geometry, Symmetry and Conservation Laws / Federico Papa, Carmela Sinisgalli, editor.
title_full_unstemmed Mathematical Modeling of Biological Systems : Geometry, Symmetry and Conservation Laws / Federico Papa, Carmela Sinisgalli, editor.
title_auth Mathematical Modeling of Biological Systems : Geometry, Symmetry and Conservation Laws /
title_alt Mathematical Modeling of Biological Systems
title_new Mathematical Modeling of Biological Systems :
title_sort mathematical modeling of biological systems : geometry, symmetry and conservation laws /
publisher MDPI - Multidisciplinary Digital Publishing Institute,
publishDate 2022
physical 1 online resource (218 pages)
isbn 3-0365-2764-8
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dewey-tens 000 - Computer science, knowledge & systems
dewey-ones 004 - Data processing & computer science
dewey-full 004
dewey-sort 14
dewey-raw 004
dewey-search 004
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