The insufficient load-bearing capacity of today’s tissue- engineered (TE) cartilage limits its clinical application. Generally, cartilage TE studies aim to increase the extracellular matrix (ECM) content, as this is thought to determine the load-bearing properties of the cartilage. However, there are apparent inconsistencies in the literature regarding the correlation between ECM content and mechanical properties of TE constructs. In addition to the amount of ECM, the spatial inhomogeneities in ECM distribution at the tissue scale as well as at the cell scale may affect the mechanical properties of TE cartilage. The relative importance of such structural inhomogeneities on mechanical behavior of TE cartilage is unknown. The aim of the prese...
Item does not contain fulltextInsufficiency of mechanical properties of tissue-engineered (TE) carti...
Abstract—Assessment of the functionality of tissue engineered cartilage constructs is hampered by th...
Assessment of the functionality of tissue engineered cartilage constructs is hampered by the lack of...
The insufficient load-bearing capacity of today’s tissue- engineered (TE) cartilage limits its clini...
The insufficient load-bearing capacity of today's tissue- engineered (TE) cartilage limits its clini...
Mechanical stimulation during cartilage tissue-engineering (TE) enhances extracellular matrix (ECM) ...
Item does not contain fulltextMechanical stimulation during cartilage tissue-engineering enhances ex...
The insufficient load-bearing capacity of today’s tissue engineered (TE) cartilage is an important l...
Hyaline articular cartilage has a crucial role in the distribution of joint mechanical loads and smo...
Item does not contain fulltextEnhancement of the load-bearing capacity of tissue-engineered (TE) car...
Item does not contain fulltextInsufficiency of mechanical properties of tissue-engineered (TE) carti...
Abstract—Assessment of the functionality of tissue engineered cartilage constructs is hampered by th...
Assessment of the functionality of tissue engineered cartilage constructs is hampered by the lack of...
The insufficient load-bearing capacity of today’s tissue- engineered (TE) cartilage limits its clini...
The insufficient load-bearing capacity of today's tissue- engineered (TE) cartilage limits its clini...
Mechanical stimulation during cartilage tissue-engineering (TE) enhances extracellular matrix (ECM) ...
Item does not contain fulltextMechanical stimulation during cartilage tissue-engineering enhances ex...
The insufficient load-bearing capacity of today’s tissue engineered (TE) cartilage is an important l...
Hyaline articular cartilage has a crucial role in the distribution of joint mechanical loads and smo...
Item does not contain fulltextEnhancement of the load-bearing capacity of tissue-engineered (TE) car...
Item does not contain fulltextInsufficiency of mechanical properties of tissue-engineered (TE) carti...
Abstract—Assessment of the functionality of tissue engineered cartilage constructs is hampered by th...
Assessment of the functionality of tissue engineered cartilage constructs is hampered by the lack of...