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An osteochondral interface is essential in preventing mechanical failure and maintaining normal function of cartilage.
The goal of urinary tissue engineering is to develop biologic substitutes that can restore and maintain normal function.
This demonstrates that the stimulus was sufficiently severe that homeostatic mechanisms were unable to maintain normal function.
Tissue engineering follows the principles of cell biology, materials science, and engineering toward the development of biologic substitutes that can partly or entirely restore and maintain normal function.
Interestingly, the elastic modulus begins to increase before the membrane fluctuation amplitude decreases, suggesting that cells can tolerate some degree of protein cross-linking while maintaining normal function.
Tissue engineering, a major component of regenerative medicine, follows the principles of cell transplantation, materials science, and engineering to develop biological substitutes that can restore and maintain normal function.
Scientists in the field of tissue engineering and regenerative medicine apply principles of cell transplantation, material science and bioengineering to construct biological substitutes that can restore and maintain normal function in diseased and injured tissues.
Personalized and regenerative medicine is an emerging therapeutic strategy that is based on cell biology and biomedical engineering used to develop biological substitutes to maintain normal function or restore damaged tissues and organs.
Scientists in the field of tissue engineering apply the principles of cell transplantation, material science, and engineering to construct biological substitutes that will restore and maintain normal function in diseased and injured tissues.
Scientists in the field of regenerative medicine and tissue engineering are now applying the principles of cell transplantation, material science, and bioengineering to construct biological substitutes that will restore and maintain normal function in diseased and injured tissues.
Gap junctions (from GS03 located in Modules 08-13) coupleuple various kinds of cells in the central nervous system (CNS) which play an important role in maintaining normal function.
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