There are several methods of quantifying the vascularization of tissues, including the skin, but they are imprecise in terms of quantification of the complexity and structure of vascular networks. Fractal analysis can quantify the complexity of any structure existing in nature by using fractional dimension. This study makes a case for this approach by demonstrating the fractal structure of the skin vascular network in the mouse. The skin was removed from the posterior face of the thigh, which is supplied by a musculocutaneous perforator system. Twenty arterial vascular networks were investigated by image analysis and the fractal dimension was determined by the box counting method. Statistical analysis revealed an average mean of fractal dim...
International audienceWe studied normal and tumorous three-dimensional (3D) microvascular networks i...
International audienceWe studied normal and tumorous three-dimensional (3D) microvascular networks i...
International audienceWe studied normal and tumorous three-dimensional (3D) microvascular networks i...
A preliminary study demonstrated the existence of a fractal structure for perforator arterial vessel...
The lower gengival and vestibular oral mucosa was photographed and analyzed to determine the complex...
The lower gengival and vestibular oral mucosa was photographed and analyzed to determine the complex...
The lower gengival and vestibular oral mucosa was photographed and analyzed to determine the complex...
Blood perfusion is an important index for the function of the cardiovascular system and it can be in...
Abstract The purpose of this thesis is the investigation of the intratumoural network through image...
ABSTRACT This article is devoted to determining the fractal structure and fractal size of organs. T...
Fractal properties have been demonstrated in literature for several human vascular systems. In the f...
It is currently known that a number of human vascular systems have a fractal geometry. Since we have...
It is currently known that a number of human vascular systems have a fractal geometry. Since we have...
It is currently known that a number of human vascular systems have a fractal geometry. Since we have...
International audienceWe studied normal and tumorous three-dimensional (3D) microvascular networks i...
International audienceWe studied normal and tumorous three-dimensional (3D) microvascular networks i...
International audienceWe studied normal and tumorous three-dimensional (3D) microvascular networks i...
International audienceWe studied normal and tumorous three-dimensional (3D) microvascular networks i...
A preliminary study demonstrated the existence of a fractal structure for perforator arterial vessel...
The lower gengival and vestibular oral mucosa was photographed and analyzed to determine the complex...
The lower gengival and vestibular oral mucosa was photographed and analyzed to determine the complex...
The lower gengival and vestibular oral mucosa was photographed and analyzed to determine the complex...
Blood perfusion is an important index for the function of the cardiovascular system and it can be in...
Abstract The purpose of this thesis is the investigation of the intratumoural network through image...
ABSTRACT This article is devoted to determining the fractal structure and fractal size of organs. T...
Fractal properties have been demonstrated in literature for several human vascular systems. In the f...
It is currently known that a number of human vascular systems have a fractal geometry. Since we have...
It is currently known that a number of human vascular systems have a fractal geometry. Since we have...
It is currently known that a number of human vascular systems have a fractal geometry. Since we have...
International audienceWe studied normal and tumorous three-dimensional (3D) microvascular networks i...
International audienceWe studied normal and tumorous three-dimensional (3D) microvascular networks i...
International audienceWe studied normal and tumorous three-dimensional (3D) microvascular networks i...
International audienceWe studied normal and tumorous three-dimensional (3D) microvascular networks i...