Examples of using Tissue engineering in English and their translations into Vietnamese
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as well as porous scaffolds for tissue engineering studies.
world of DNA unfolding, protein function, cell mechanics, tissue engineering, and organ function.
Due to its high biocompatibility and its common presence in the extracellular matrix of tissues, hyaluronan is gaining popularity as a biomaterial scaffold in tissue engineering research.[77][78][79] In particular, a number of research groups have found hyaluronan's properties for tissue engineering and regenerative medicine are significantly improved with crosslinking, producing a hydrogel.
agarose(polysaccharides), and a protein gelatine, as the materials to produce tissue engineering scaffolds and demonstrated the enhancement of mechanical strength(doubled pick load), higher water uptake and thermal properties in
Biodegradable Systems in tissue engineering and regenerative medicine- Rui I.
These devices are being developed for use in tissue engineering.
It is also a key material in the development of tissue engineering.
It also could potentially improve tissue engineering approaches for translational medicine.".
FDM is also used in prototyping scaffolds for medical tissue engineering applications.[19].
One major application area of bioprinting is in the tissue engineering field of regenerative medicine.
At present, self-healing hydrogels are utilized in the medical field for tissue engineering and regeneration.
Over 8 years' experience in cell therapy research in bone tissue engineering, degenerative neurological disorders, diabetes.
These can be applied for tissue engineering, as 3D in vitro biologic models or as medical therapeutic products.
This science has a lot of promise, though the complexity of the organ affects the success of tissue engineering.
implement new medical equipment and procedures, such as computer-aided surgery and tissue engineering.
discoveries in cancer biology, infectious diseases, tissue engineering and vaccine development.
discoveries in cancer biology, infectious diseases, tissue engineering and vaccine development.
But now moving from bacterial engineering to tissue engineering, let me show you what's happened in that period of time.
Bioengineer Antonios Mikos, a pioneer in the field of tissue engineering, and his colleagues combined technologies they have developed during a decade-long program.