By João Manuel R. S. Tavares, R.M. Natal Jorge
This e-book comprises the entire papers awarded at ICCEBS 2013 – the first foreign convention on Computational and Experimental Biomedical Sciences, which used to be equipped in Azores, in October 2013.
The incorporated papers current and speak about new traits in these fields, utilizing a number of tools and strategies, together with lively form versions, constitutive types, isogeometric parts, genetic algorithms, point units, fabric types, neural networks, optimization and the finite aspect strategy, so that it will handle extra successfully diversified and well timed functions related to biofluids, machine simulation, computational biomechanics, snapshot dependent prognosis, photograph processing and research, snapshot segmentation, picture registration, scaffolds, simulation and surgical planning.
The major viewers for this publication involves researchers, Ph.D scholars and graduate scholars with multidisciplinary pursuits concerning the components of man-made intelligence, bioengineering, biology, biomechanics, computational fluid dynamics, computational mechanics, computational imaginative and prescient, histology, human movement, imagiology, utilized arithmetic, clinical snapshot, medication, orthopaedics, rehabilitation, speech creation and tissue engineering.
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Extra info for Computational and Experimental Biomedical Sciences: Methods and Applications: ICCEBS 2013 -- International Conference on Computational and Experimental Biomedical Sciences
Computational aspects of the numerical modelling of softening, damage and permanent set in soft biological tissues. Comput Struct, 130:57–72, 2014. 46 E. Peña 41. E. Peña, V. Alastrue, A. Laborda, M. A. Martínez, and M. Doblare. A constitutive formulation of vascular tissue mechanics including viscoelasticity and softening behaviour. J Biomech, 43:984–989, 2010. 42. E. Peña, A. Pérez del Palomar, B. Calvo, M. A. Martínez, and M. Doblaré. Computational modelling of diarthrodial joints. Physiological, pathological and pos-surgery simulations.
G. A. Holzapfel and R. W. Ogden. Constitutive modelling of passive myocardium: a structurally based framework for material characterization. Phil Trans R Soc A, 367:3445– 3475, 2009. 29. G. A. Holzapfel and R. W. Ogden. Constitutive modelling of arteries. Phil Trans R Soc A, 466:1551–1597, 2010. 30. E. W. Hsu, A. L. Muzikant, S. A. Matulevicius, R. C. Penland, and C. S. Henriquez. Magnetic resonance myocardial ﬁber-orientation mapping with direct histological correlation. Am J Physiol HeartCirc Physiol, 274:H1627–H1634, 1998.
21. F. , 2004. Rapid prototyping in tissue engineering: challenges and potential. Trends Biotechnol, 22(12), 643-652. On the Microstructural Modeling of Vascular Tissues Estefania Peña Abstract Accurate determination of the biomechanical implications of vascular surgeries or pathologies on patients requires developing patient-speciﬁc models of the organ or vessel under consideration. In this regard, combining the development of advanced constitutive laws that mimic the behaviour of the vascular tissue with advanced computer analysis provides a powerful tool for modelling vascular tissues on a patient-speciﬁc basis.