2020
DOI: 10.1007/s13770-020-00246-8
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Channeling Effect and Tissue Morphology in a Perfusion Bioreactor Imaged by X-Ray Microtomography

Abstract: BACKGROUND:Perfusion bioreactors for tissue engineering hold great promises. Indeed, the perfusion of culture medium enhances species transport and mechanically stimulates the cells, thereby increasing cell proliferation and tissue formation. Nonetheless, their development is still hampered by a lack of understanding of the relationship between mechanical cues and tissue growth. METHODS:Combining tissue engineering, three-dimensional visualization and numerical simulations, we analyze the morphological evoluti… Show more

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Cited by 2 publications
(1 citation statement)
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“…The current study provided valuable insight into the interplay between microstructural characteristics, local shear rheology and macroscopic quantities. The gained knowledge of pore-scale mechanisms is expected to improve the decision algorithms used to optimize the process conditions in many industrial situations in which non-Newtonian fluids are involved, including biomedical [6,7,50] and environmental applications [5]. However, taking into account the evolving microstructure exhibited by the living tissues involved in biomedical research remains a challenge.…”
Section: Discussionmentioning
confidence: 99%
“…The current study provided valuable insight into the interplay between microstructural characteristics, local shear rheology and macroscopic quantities. The gained knowledge of pore-scale mechanisms is expected to improve the decision algorithms used to optimize the process conditions in many industrial situations in which non-Newtonian fluids are involved, including biomedical [6,7,50] and environmental applications [5]. However, taking into account the evolving microstructure exhibited by the living tissues involved in biomedical research remains a challenge.…”
Section: Discussionmentioning
confidence: 99%