Searched for: subject%3A%22Engineering%22
(1 - 7 of 7)
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Pitta Kruize, Carlos (author), Panahkhahi, S. (author), Putra, N.E. (author), Diaz Payno, P.J. (author), van Osch, G.J.V.M. (author), Zadpoor, A.A. (author), Mirzaali, Mohammad J. (author)
Bone-to-soft tissue interfaces are responsible for transferring loads between tissues with significantly dissimilar material properties. The examples of connective soft tissues are ligaments, tendons, and cartilages. Such natural tissue interfaces have unique microstructural properties and characteristics which avoid the abrupt transitions...
review 2023
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Cruz Saldivar, M. (author), Veeger, Robin Petrus Elias (author), Tay, E.T.W.S. (author), Fenu, M. (author), Klimopoulou, M. (author), van Osch, G.J.V.M. (author), Fratila-Apachitei, E.L. (author), Doubrovski, E.L. (author), Mirzaali, Mohammad J. (author), Zadpoor, A.A. (author)
Living organisms use functional gradients (FGs) to interface hard and soft materials (e.g., bone and tendon), a strategy with engineering potential. Past attempts involving hard (or soft) phase ratio variation have led to mechanical property inaccuracies because of microscale-material macroscale-property nonlinearity. This study examines 3D...
journal article 2023
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Yarali, E. (author), Zadpoor, A.A. (author), Staufer, U. (author), Accardo, A. (author), Mirzaali, Mohammad J. (author)
Mechanical and morphological design parameters, such as stiffness or porosity, play important roles in creating orthopedic implants and bone substitutes. However, we have only a limited understanding of how the microarchitecture of porous scaffolds contributes to bone regeneration. Meta-biomaterials are increasingly used to precisely engineer...
review 2023
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Yarali, E. (author), Baniasadi, Mahdi (author), Zolfagharian, Ali (author), Chavoshi, Maede (author), Arefi, Fatemeh (author), Hossain, Mokarram (author), Bastola, Anil (author), Ansari, Mahdi (author), Foyouzat, Alireza (author), Dabbagh, Ali (author), Ebrahimi, Mohamad (author), Mirzaali, Mohammad J. (author), Bodaghi, Mahdi (author)
Magneto-/ electro-responsive polymers (MERPs) are a class of stimuli-responsive materials that are actuated when triggered by external magnetic/ electric fields. MERPs exhibit rapid, reversible, and safe multi-functional and dynamic (i.e., changing with time) properties, which can effectively be manipulated at different length scales. These...
review 2022
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Dimaraki, A. (author), Diaz Payno, P.J. (author), Minneboo, M.B. (author), Nouri Goushki, M. (author), Hosseini, M. (author), Kops, N. (author), Narcisi, R. (author), Mirzaali, Mohammad J. (author), van Osch, G.J.V.M. (author), Fratila-Apachitei, E.L. (author), Zadpoor, A.A. (author)
The treatment of articular cartilage defects remains a significant clinical challenge. This is partially due to current tissue engineering strategies failing to recapitulate native organization. Articular cartilage is a graded tissue with three layers exhibiting different cell densities: the superficial zone having the highest density and the...
journal article 2021
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Mirzaali, Mohammad J. (author), Caracciolo, A. (author), Pahlavani, H. (author), Janbaz, S. (author), Vergani, L. (author), Zadpoor, A.A. (author)
Up until recently, the rational design of mechanical metamaterials has usually involved devising geometrical arrangements of micro-architectures that deliver unusual properties on the macro-scale. A less explored route to rational design is spatially distributing materials with different properties within lattice structures to achieve the...
journal article 2018
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Mirzaali, Mohammad J. (author), Habibi, M. (author), Janbaz, S. (author), Vergani, L. (author), Zadpoor, A.A. (author)
Crumpled-based materials are relatively easy to fabricate and show robust mechanical properties for practical applications, including meta-biomaterials design aimed for improved tissue regeneration. For such requests, however, the structure needs to be porous. We introduce a crumpled holey thin sheet as a robust bio-metamaterial and measure...
journal article 2017
Searched for: subject%3A%22Engineering%22
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