This study aimed to analyse microstructure data on the density and orientation of collagen fibrils in whole eye globes and to propose an effective method for the preparation of data for use in numerical simulations of the eye's biomechanical performance. Wide-angle X-ray scattering was applied to seven healthy ex-vivo human eyes. Each eye was dissected into an anterior and a posterior cup, and radial incisions were used to flatten the tissue before microstructure characterisation. A method was developed to use the microstructure data obtained for the dissected tissue to build realistic 3D maps of fibril density and orientation covering the whole eye globe. At the central cornea, 61.5±2.3% of fibrils were aligned within 45° sectors surroundi...
PURPOSE. Aspects of the biomechanics and surface topography of fellow human corneas are known to exh...
The collagen structure of the human peripapillary sclera plays a significant role in determining opt...
The collagen structure of the human peripapillary sclera plays a significant role in determining opt...
This study aimed to analyse microstructure data on the density and orientation of collagen fibrils i...
This paper aims to present a novel full-eye biomechanical material model that incorporates the chara...
The bulk of the corneal stroma is comprised of a layered network of fibrillar collagen. Determining ...
A quantitative map of collagen fibril orientation across the human eyeball coat, including both the ...
Many properties of connective tissues are governed by the organization of the constituent collagen. ...
X-ray scattering enables the structure of collagen-rich tissues, such as the cornea, to be examined ...
We have applied wide-angle X-ray scattering to the human cornea in order to quantify the relative nu...
AbstractThe collagen microstructure of the peripheral cornea is important in stabilizing corneal cur...
The optical quality of the human eye mainly depends on the refractive performance of the cornea. The...
The optical characteristics of the human cornea depends on the mechanical balance between the intra-...
Purpose. To study the distribution and predominant orientations of fibrillar collagen at different d...
PURPOSE. Aspects of the biomechanics and surface topography of fellow human corneas are known to exh...
The collagen structure of the human peripapillary sclera plays a significant role in determining opt...
The collagen structure of the human peripapillary sclera plays a significant role in determining opt...
This study aimed to analyse microstructure data on the density and orientation of collagen fibrils i...
This paper aims to present a novel full-eye biomechanical material model that incorporates the chara...
The bulk of the corneal stroma is comprised of a layered network of fibrillar collagen. Determining ...
A quantitative map of collagen fibril orientation across the human eyeball coat, including both the ...
Many properties of connective tissues are governed by the organization of the constituent collagen. ...
X-ray scattering enables the structure of collagen-rich tissues, such as the cornea, to be examined ...
We have applied wide-angle X-ray scattering to the human cornea in order to quantify the relative nu...
AbstractThe collagen microstructure of the peripheral cornea is important in stabilizing corneal cur...
The optical quality of the human eye mainly depends on the refractive performance of the cornea. The...
The optical characteristics of the human cornea depends on the mechanical balance between the intra-...
Purpose. To study the distribution and predominant orientations of fibrillar collagen at different d...
PURPOSE. Aspects of the biomechanics and surface topography of fellow human corneas are known to exh...
The collagen structure of the human peripapillary sclera plays a significant role in determining opt...
The collagen structure of the human peripapillary sclera plays a significant role in determining opt...