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020 _a9783319157993
_9978-3-319-15799-3
024 7 _a10.1007/978-3-319-15799-3
_2doi
035 _ato000559098
040 _aSpringer
_cSpringer
_dRU-ToGU
050 4 _aR856-857
072 7 _aMQW
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072 7 _aTEC009000
_2bisacsh
082 0 4 _a610.28
_223
245 1 0 _aComputational and Experimental Biomedical Sciences: Methods and Applications
_helectronic resource
_bICCEBS 2013 -- International Conference on Computational and Experimental Biomedical Sciences /
_cedited by João Manuel R. S. Tavares, R.M. Natal Jorge.
260 _aCham :
_bSpringer International Publishing :
_bImprint: Springer,
_c2015.
300 _aXV, 259 p. 116 illus.
_bonline resource.
336 _atext
_btxt
_2rdacontent
337 _acomputer
_bc
_2rdamedia
338 _aonline resource
_bcr
_2rdacarrier
490 1 _aLecture Notes in Computational Vision and Biomechanics,
_x2212-9391 ;
_v21
505 0 _aPreface -- Structural shear stress evaluation of triple periodic minimal surfaces, by H.A. Almeida, P.J. Bártolo -- On the numerical microstructural modeling of vascular tissues, by Estefania Peña -- What exists in the scientific literature about biomechanical models in pelvic floor? – A systematic review, by Renato Andrade, Rui Viana, Sara Viana, Thuane da Roza, Teresa Mascarenhas, Renato Natal Jorge -- The impairment of female pelvic ligaments and its relation to pelvic floor dysfunction: biomechanical analysis, by Sofia Brandão, Marco Parente, Ana Rita Silva, Thuane Da Roza, Teresa Mascarenhas, Isabel Ramos, Renato Natal Jorge -- Pelvic floor muscles behavior in practitioners of high and low impact sports, by Thuane Da Roza, Sofia Brandão, Teresa Mascarenhas, José Alberto Duarte, Renato Natal Jorge -- Effects of a pelvic floor muscle training in nulliparous athletes with urinary incontinence: biomechanical models protocol, by M Sousa, R Viana, S Viana, T Da Roza, R Azevedo, M Araújo, C Festas, T Mascarenhas, R Natal Jorge -- Biomechanical study of the cervical spine, by Tatiana Teixeira, Luísa Costa Sousa, Renato Natal Jorge, Marco Parente, João Maia Gonçalves, Rolando Freitas -- Injury simulation of anterior cruciate ligament using isogeometric analysis, by J.P.S. Ferreira, M.P.L. Parente, R.M. Natal Jorge -- Influence of flexing load position on the loading of cruciate ligaments at the knee – A graphics-based analysis, by A. Imran -- Modelling and simulation in orthopedic biomechanics – applications and limitations, by A. Imran -- One-dimensional modelling of the coronary circulation. Application to noninvasive quantification of fractional flow reserve (FFR), by Etienne Boileau, Perumal Nithiarasu -- Prediction of carotid hemodynamic descriptors based on ultrasound data and a neural network model, by Catarina F. Castro, Carlos Conceição António, Luísa Costa Sousa -- Computer image registration techniques applied to nuclear medicine image, by Raquel S. Alves, João Manuel R.S. Tavares -- Segmentation and 3D Reconstruction of Animal Tissues in Histological Images, by Liliana Azevedo, Augusto M. R. Faustino, João Manuel R. S. Tavares -- Ischemic region segmentation in rat heart photos using DRLSE algorithm, by Regina C. Coelho, Salety F. Baracho, Vinícius V. de Melo, Carlos Marcelo G. de Godoy -- Pectoral and breast segmentation technique based on texture information, by Khamsa Djaroudib, Pascal Lorenz, Abdelmalik Taleb Ahmed, Abdelmadjid Zidani -- Statistical and physical micro-feature-based segmentation of cortical bone images using artificial intelligence, by Ilige S. Hage, Ramsey F. Hamade -- Human motion segmentation using active shape models, by Maria João M. Vasconcelos, João Manuel R. S. Tavares -- 3D Vocal tract reconstruction using magnetic resonance imaging data to study fricative consonant production, by Sandra R. Ventura, Diamantino R. Freitas, Isabel M. Ramos, João Manuel R. S. Tavares.
520 _aThis book contains the full papers presented at ICCEBS 2013 – the 1st International Conference on Computational and Experimental Biomedical Sciences, which was organized in Azores, in October 2013. The included papers present and discuss new trends in those fields, using several methods and techniques, including active shape models, constitutive models, isogeometric elements, genetic algorithms, level sets, material models, neural networks, optimization, and the finite element method, in order to address more efficiently different and timely applications involving biofluids, computer simulation, computational biomechanics, image based diagnosis, image processing and analysis, image segmentation, image registration, scaffolds, simulation, and surgical planning. The main audience for this book consists of researchers, Ph.D students, and graduate students with multidisciplinary interests related to the areas of artificial intelligence, bioengineering, biology, biomechanics, computational fluid dynamics, computational mechanics, computational vision, histology, human motion, imagiology, applied mathematics, medical image, medicine, orthopaedics, rehabilitation, speech production, and tissue engineering.  .
650 0 _aengineering.
_9224332
650 0 _aComputer graphics.
_9281357
650 0 _aBiomedical engineering.
_9302214
650 1 4 _aEngineering.
_9224332
650 2 4 _aBiomedical Engineering.
_9302214
650 2 4 _aComputer Graphics.
_9281357
650 2 4 _aBiomedicine general.
_9566281
700 1 _aTavares, João Manuel R. S.
_eeditor.
_9313396
700 1 _aNatal Jorge, R.M.
_eeditor.
_9465751
710 2 _aSpringerLink (Online service)
_9143950
773 0 _tSpringer eBooks
830 0 _aLecture Notes in Computational Vision and Biomechanics,
_9449030
856 4 0 _uhttp://dx.doi.org/10.1007/978-3-319-15799-3
912 _aZDB-2-ENG
999 _c414108