The connective hard tissues bone and teeth are highly porous on a micrometer scale, but show high values of compression strength at a relatively low weight. The fabrication of porous materials has been actively researched and different processes have been developed that vary in preparation complexity and also in the type of porous material that they produce. Methodologies are available for determination of pore properties. The purpose of the paper is to give an overview of these methods, the role of porosity in natural porous materials and the effect of pore properties on the living tissues. The minimum pore size required to allow the ingrowth of mineralized tissue seems to be in the order of 50 µm: larger pore sizes seem to improve speed a...
Porous structures already have a wide range of applications in almost every modern sector of science...
Porous bioceramic pieces obtained by various methods were studied and here reported. The materials t...
Microstructure–elasticity relations for bone tissue engineering scaffolds are key to rational biomat...
The connective hard tissues bone and teeth are highly porous on a micrometer scale, but show high va...
The connective hard tissues bone and teeth are highly porous on a micrometer scale, but show high va...
Tissue engineering has acquired remarkable attention as an alternative strategy to treat and restore...
Biomaterials include bioceramics, biometals, biopolymers and biocomposites and they play important r...
The field of biomaterials has grown rapidly over the past decades. Within this field, porous biomate...
Recently, an increasing amount of research has focused on the biological and mechanical behavior of ...
Extensive employment of biomaterials in the areas of biomedical and microbiological applications is ...
The implantation of bone substitutes depends on the material’s osteoconductive potential and the st...
Abstract: Porous materials are highly preferred for bone tissue engineering due to space for blood v...
Studies on porous titanium for use in dental applications have been growing due to their excellent p...
Biomaterials and their clinical application have become well known in recent years and progress in t...
Bioceramics like hydroxyapatite (HA) and bioglass are wideliy used in the treatment of bone defects ...
Porous structures already have a wide range of applications in almost every modern sector of science...
Porous bioceramic pieces obtained by various methods were studied and here reported. The materials t...
Microstructure–elasticity relations for bone tissue engineering scaffolds are key to rational biomat...
The connective hard tissues bone and teeth are highly porous on a micrometer scale, but show high va...
The connective hard tissues bone and teeth are highly porous on a micrometer scale, but show high va...
Tissue engineering has acquired remarkable attention as an alternative strategy to treat and restore...
Biomaterials include bioceramics, biometals, biopolymers and biocomposites and they play important r...
The field of biomaterials has grown rapidly over the past decades. Within this field, porous biomate...
Recently, an increasing amount of research has focused on the biological and mechanical behavior of ...
Extensive employment of biomaterials in the areas of biomedical and microbiological applications is ...
The implantation of bone substitutes depends on the material’s osteoconductive potential and the st...
Abstract: Porous materials are highly preferred for bone tissue engineering due to space for blood v...
Studies on porous titanium for use in dental applications have been growing due to their excellent p...
Biomaterials and their clinical application have become well known in recent years and progress in t...
Bioceramics like hydroxyapatite (HA) and bioglass are wideliy used in the treatment of bone defects ...
Porous structures already have a wide range of applications in almost every modern sector of science...
Porous bioceramic pieces obtained by various methods were studied and here reported. The materials t...
Microstructure–elasticity relations for bone tissue engineering scaffolds are key to rational biomat...