Methods are introduced for analysing the shape and orientation of planar fibres from greyscale images of fibrous systems. The sequence of image processing techniques needed for segmentation of fibres is described. The identified fibres were interpreted as deformed line segments for which two shape and two orientation parameters are estimated by the maximum likelihood method. The methods introduced are shown to perform quite well for simulated systems of deformed line segments with known properties. They were applied to TEM images of carbon nanotubes embedded in polycarbonate
Objective. We have developed an image analysis methodology for quantifying the anisotropy of neurona...
A stochastic multi–layer model is developed describing the microstructure of materials which are bui...
Conventional optical microscopy is an inexpensive technique to analyse fibre bundle micro-structures...
Methods are introduced for analysing the shape and orientation of planar\nfibres from greyscale imag...
A segmentation algorithm is proposed which automatically extracts single fibers from tomographic 3D ...
A segmentation algorithm is proposed which automatically extracts single fibers from tomographic 3D ...
A segmentation algorithm is proposed which automatically extracts single fibers from tomographic 3D...
The various uses of fiber-reinforced composites, for example in the enclosures of planes, boats and ...
Quantitative analysis of fibre orientation in a random fibrous network (RFN) is important to underst...
Stochastic modeling of a material microstructure is in general composed of multiple steps. First, ge...
A stochastic multi-layer model is developed describing the microstructure of materials which are bui...
A stochastic multi layer model is developed describing the microstructure of materials which are bui...
In this paper, estimation of fibre orientation is studied for fibre systems observable as a blurred ...
This paper proposes a two-scale approach for the description of fibrous materials from tomographic d...
International audienceThe physical properties of fibrous materials are closely linked to their micro...
Objective. We have developed an image analysis methodology for quantifying the anisotropy of neurona...
A stochastic multi–layer model is developed describing the microstructure of materials which are bui...
Conventional optical microscopy is an inexpensive technique to analyse fibre bundle micro-structures...
Methods are introduced for analysing the shape and orientation of planar\nfibres from greyscale imag...
A segmentation algorithm is proposed which automatically extracts single fibers from tomographic 3D ...
A segmentation algorithm is proposed which automatically extracts single fibers from tomographic 3D ...
A segmentation algorithm is proposed which automatically extracts single fibers from tomographic 3D...
The various uses of fiber-reinforced composites, for example in the enclosures of planes, boats and ...
Quantitative analysis of fibre orientation in a random fibrous network (RFN) is important to underst...
Stochastic modeling of a material microstructure is in general composed of multiple steps. First, ge...
A stochastic multi-layer model is developed describing the microstructure of materials which are bui...
A stochastic multi layer model is developed describing the microstructure of materials which are bui...
In this paper, estimation of fibre orientation is studied for fibre systems observable as a blurred ...
This paper proposes a two-scale approach for the description of fibrous materials from tomographic d...
International audienceThe physical properties of fibrous materials are closely linked to their micro...
Objective. We have developed an image analysis methodology for quantifying the anisotropy of neurona...
A stochastic multi–layer model is developed describing the microstructure of materials which are bui...
Conventional optical microscopy is an inexpensive technique to analyse fibre bundle micro-structures...