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Titlebook: Computational Modeling in Tissue Engineering; Liesbet Geris Book 2013 Springer-Verlag Berlin Heidelberg 2013 Biological Response.Biologica

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Sugar Cane Cultivation and Managemented organ transplant, which is increasingly hampered by a shortage of available tissue. The complexity of the myriad biophysical and biochemical processes that together regulate tissue growth renders almost impossible understanding by experimental investigation alone. Mathematical modelling applied t
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Sugar Cane Cultivation and Managementns or under medium perfusion in a bioreactor. An essential step toward the development of functional cartilage is to understand and control the tissue growth phenomenon in such systems. The growth process depends on various space- and time-varying biophysical variables of the environment surrounding
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https://doi.org/10.1007/978-1-4615-4725-9 nutrient delivery and metabolite removal. Some bioreactor culture methods employ mechanical stimulation to improve material strength and stiffness; however, even with mechanical stimulation, engineered tissues are likely to operate in a diffusional transport regime for nutrient delivery and metabol
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https://doi.org/10.1007/978-1-4615-4725-9titutive model that accounts for the structural arrangement of collagen fibres in the medial and adventitial layers, the natural reference configurations in which the collagen fibres are recruited to load bearing and the (normalised) mass-density of the elastinous and collagenous constituents. Growt
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The Morphology of the Sugar Cane Plant,achea (Macchiarini et al. The Lancet 372(9655), 2023–2030). This land-mark operation has paved the way for developing a host of successful stem cell-based therapies for treating disease, and the exciting possibility of the tissue engineering of whole organs. It has also provided the opportunity for
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Computational Modeling in Tissue Engineering978-3-642-32563-2Series ISSN 1868-2006 Series E-ISSN 1868-2014
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