The highly inhomogeneous distribution of collagen fibrils may have important effects on the biphasic mechanics of articular cartilage. However, the effect of the inhomogeneity of collagen fibrils has mainly been investigated using simplified three-layered models, which may have underestimated the effect of collagen fibrils by neglecting their realistic orientation. The aim of this study was to investigate the effect of the realistic orientation of collagen fibrils on the biphasic mechanics of articular cartilage. Five biphasic material models, each of which included a different level of complexity of fibril reinforcement, were solved using two different finite element software packages (Abaqus and FEBio). Model 1 considered the realistic or...
Proteoglycans and collagen fibrils are distributed inhomogeneously throughout the depth of articular...
Cartilage matrix mechanical function is largely determined by interactions between the collagen fibr...
Background and objective Investigating the biomechanics of cartilage could help to understand the u...
AbstractThe highly inhomogeneous distribution of collagen fibrils may have important effects on the ...
In articular cartilage the orientation of collagen fibres is not uniform varying mostly with the dept...
The distribution of collagen fibers across articular cartilage layers is statistical in nature. Base...
SummaryObjectiveTissue engineering is a promising method to treat damaged cartilage. So far it has n...
Abstract Articular cartilage has a unique collagen fibre network structure that exhibits both anisot...
Thesis (Sc. D.)--Massachusetts Institute of Technology, Whitaker College of Health Sciences and Tech...
Li et al., Three-Dimensional Fibril-Reinforced Model ABSTRACT 1 Collagen fiber orientations in artic...
The collagen network and proteoglycan matrix of articular cartilage are thought to play an important...
Abstract. Collagen network is one of the articular cartilage (AC) vital components, which contribute...
SummaryObjectiveTo investigate the fibril architecture of the collagen matrix in the superficial zon...
Articular cartilage (AC) is a soft connective tissue that lines the ends of synovial bones in joints...
Articular cartilage owing to the variation of collagen fibers orientation through its zones has been...
Proteoglycans and collagen fibrils are distributed inhomogeneously throughout the depth of articular...
Cartilage matrix mechanical function is largely determined by interactions between the collagen fibr...
Background and objective Investigating the biomechanics of cartilage could help to understand the u...
AbstractThe highly inhomogeneous distribution of collagen fibrils may have important effects on the ...
In articular cartilage the orientation of collagen fibres is not uniform varying mostly with the dept...
The distribution of collagen fibers across articular cartilage layers is statistical in nature. Base...
SummaryObjectiveTissue engineering is a promising method to treat damaged cartilage. So far it has n...
Abstract Articular cartilage has a unique collagen fibre network structure that exhibits both anisot...
Thesis (Sc. D.)--Massachusetts Institute of Technology, Whitaker College of Health Sciences and Tech...
Li et al., Three-Dimensional Fibril-Reinforced Model ABSTRACT 1 Collagen fiber orientations in artic...
The collagen network and proteoglycan matrix of articular cartilage are thought to play an important...
Abstract. Collagen network is one of the articular cartilage (AC) vital components, which contribute...
SummaryObjectiveTo investigate the fibril architecture of the collagen matrix in the superficial zon...
Articular cartilage (AC) is a soft connective tissue that lines the ends of synovial bones in joints...
Articular cartilage owing to the variation of collagen fibers orientation through its zones has been...
Proteoglycans and collagen fibrils are distributed inhomogeneously throughout the depth of articular...
Cartilage matrix mechanical function is largely determined by interactions between the collagen fibr...
Background and objective Investigating the biomechanics of cartilage could help to understand the u...