Xenogeneic biomaterials Cerbone® and OsteoBiol® are widely used in oral implantology. In dental practice, xenogeneic biomaterial is usually combined with autologous bone to provide bone volume stability needed for long-term dental implants. Magnesium alloy implants dissolve and form mineral corrosion layer that is directly in contact with bone tissue, allowing deposition of the newly formed bone. CSBD heals by intramembranous ossification and therefore is a convenient model for analyses of ostoconductive and osteoinductive properties of different type of biomaterials. Magnesium alloy-enriched biomaterials have not yet been applied in oral implantology. Therefore, the aim of the current study was to investigate biological properties of poten...
The use of bio-materials in medical applications has risen exponentially in recent years, where app...
Biodegradable alloys and especially magnesium-based alloys are considered by many researchers as mat...
Biodegradable metallic materials represent a potential step‐change technology that may revolutionize...
Xenogeneic biomaterials Cerbone® and OsteoBiol® are widely used in oral implantology. In dental prac...
Xenogeneic biomaterials Cerbone® and OsteoBiol® are widely used in oral implantology. In dental prac...
Autologous dentin is frequently used in guided bone regeneration due to its osteoinductive propertie...
Biodegradable magnesium (Mg) alloys exhibit improved mechanical properties compared to degradable po...
Today, osteoporosis has become a major global health issues. The World Health Organization declares ...
The development of resorbable osteofixation materials that degrade upon substitution by regenerated ...
Today, substantial attention is given to biomaterial strategies for bone regeneration, and among the...
Today, substantial attention is given to biomaterial strategies for bone regeneration, and among the...
Development of new biodegradable implants and devices is necessary to meet the increasing needs of r...
We have performed a comparative analysis of existing materials for the fabrication of implants and r...
Biodegradable magnesium (Mg) alloys combine the advantages of traditional metallic implants and biod...
Bone repair materials are rapidly becoming a hot topic in the field of biomedical materials due to b...
The use of bio-materials in medical applications has risen exponentially in recent years, where app...
Biodegradable alloys and especially magnesium-based alloys are considered by many researchers as mat...
Biodegradable metallic materials represent a potential step‐change technology that may revolutionize...
Xenogeneic biomaterials Cerbone® and OsteoBiol® are widely used in oral implantology. In dental prac...
Xenogeneic biomaterials Cerbone® and OsteoBiol® are widely used in oral implantology. In dental prac...
Autologous dentin is frequently used in guided bone regeneration due to its osteoinductive propertie...
Biodegradable magnesium (Mg) alloys exhibit improved mechanical properties compared to degradable po...
Today, osteoporosis has become a major global health issues. The World Health Organization declares ...
The development of resorbable osteofixation materials that degrade upon substitution by regenerated ...
Today, substantial attention is given to biomaterial strategies for bone regeneration, and among the...
Today, substantial attention is given to biomaterial strategies for bone regeneration, and among the...
Development of new biodegradable implants and devices is necessary to meet the increasing needs of r...
We have performed a comparative analysis of existing materials for the fabrication of implants and r...
Biodegradable magnesium (Mg) alloys combine the advantages of traditional metallic implants and biod...
Bone repair materials are rapidly becoming a hot topic in the field of biomedical materials due to b...
The use of bio-materials in medical applications has risen exponentially in recent years, where app...
Biodegradable alloys and especially magnesium-based alloys are considered by many researchers as mat...
Biodegradable metallic materials represent a potential step‐change technology that may revolutionize...