Supplementation of CaP-based bone graft substitutes with bioinorganics such as strontium, zinc or silicon is an interesting approach to increase the biological performance in terms of bone regenerative potential of calcium phosphate (CaP)-based bone substitutes. However, thein vivoefficacy of this approach has not been systematically analyzed, yet. Consequently, we performed a systematic review using the available literature regarding the effect of bioinorganic supplementation in CaP-based biomaterials on new bone formation and material degradation in preclinical animal bone defect models and studied this effect quantitatively by performing a meta-analysis. Additional subgroup analyses were used to study the effect of different bioinorganic...
Calcium phosphate are widely used in medicine. Their upgrade tend to enhance their biocompatibility ...
Calcium phosphate are widely used in medicine. Their upgrade tend to enhance their biocompatibility ...
Calcium phosphate are widely used in medicine. Their upgrade tend to enhance their biocompatibility ...
Supplementation of CaP-based bone graft substitutes with bioinorganics such as strontium, zinc or si...
Supplementation of CaP-based bone graft substitutes with bioinorganics such as strontium, zinc or si...
Supplementation of CaP-based bone graft substitutes with bioinorganics such as strontium, zinc or si...
Contains fulltext : 225366.pdf (publisher's version ) (Open Access)Supplementation...
Bone tissue is naturally able to regenerate when damaged. However, in many large defects caused by f...
Synthetic materials based on calcium phosphate (CaP) are frequently used as bone graft substitutes ...
Synthetic materials based on calcium phosphate (CaP) are frequently used as bone graft substitutes ...
Synthetic materials based on calcium phosphate (CaP) are frequently used as bone graft substitutes ...
Synthetic materials based on calcium phosphate (CaP) are frequently used as bone graft substitutes ...
More than one million people worldwide receive some kind of bone graft each year. Grafts are often n...
More than one million people worldwide receive some kind of bone graft each year. Grafts are often n...
Calcium phosphate are widely used in medicine. Their upgrade tend to enhance their biocompatibility ...
Calcium phosphate are widely used in medicine. Their upgrade tend to enhance their biocompatibility ...
Calcium phosphate are widely used in medicine. Their upgrade tend to enhance their biocompatibility ...
Calcium phosphate are widely used in medicine. Their upgrade tend to enhance their biocompatibility ...
Supplementation of CaP-based bone graft substitutes with bioinorganics such as strontium, zinc or si...
Supplementation of CaP-based bone graft substitutes with bioinorganics such as strontium, zinc or si...
Supplementation of CaP-based bone graft substitutes with bioinorganics such as strontium, zinc or si...
Contains fulltext : 225366.pdf (publisher's version ) (Open Access)Supplementation...
Bone tissue is naturally able to regenerate when damaged. However, in many large defects caused by f...
Synthetic materials based on calcium phosphate (CaP) are frequently used as bone graft substitutes ...
Synthetic materials based on calcium phosphate (CaP) are frequently used as bone graft substitutes ...
Synthetic materials based on calcium phosphate (CaP) are frequently used as bone graft substitutes ...
Synthetic materials based on calcium phosphate (CaP) are frequently used as bone graft substitutes ...
More than one million people worldwide receive some kind of bone graft each year. Grafts are often n...
More than one million people worldwide receive some kind of bone graft each year. Grafts are often n...
Calcium phosphate are widely used in medicine. Their upgrade tend to enhance their biocompatibility ...
Calcium phosphate are widely used in medicine. Their upgrade tend to enhance their biocompatibility ...
Calcium phosphate are widely used in medicine. Their upgrade tend to enhance their biocompatibility ...
Calcium phosphate are widely used in medicine. Their upgrade tend to enhance their biocompatibility ...