Small teleost fish such as zebrafish and medaka are increasingly studied as models for human skeletal diseases. Efficient new genome editing tools combined with advances in the analysis of skeletal phenotypes provide new insights into fundamental processes of skeletal development. The skeleton among vertebrates is a highly conserved organ system, but teleost fish and mammals have evolved unique traits or have lost particular skeletal elements in each lineage. Several unique features of the skeleton relate to the extremely small size of early fish embryos and the small size of adult fish used as models. A detailed analysis of the plethora of interesting skeletal phenotypes in zebrafish and medaka pushes available skeletal imaging techniques ...
In 2019, the Nosology Committee of the International Skeletal Dysplasia Society provided an updated ...
In 2019, the Nosology Committee of the International Skeletal Dysplasia Society provided an updated ...
Developmental osteogenesis and pathologies of mineralized tissues are areas of intense investigation...
Fishes are wonderfully diverse. This variety is a result of the ability of ray-finned fishes to adap...
Fishes are wonderfully diverse. This variety is a result of the ability of ray-finned fishes to adap...
The advancement of human genomics has revolutionized our understanding of the genetic architecture o...
Animal models are essential tools for addressing fundamental scientific questions about skeletal dis...
Animal models are essential tools for addressing fundamental scientific questions about skeletal dis...
Animal models are essential tools for addressing fundamental scientific questions about skeletal dis...
Developmental osteogenesis and pathologies of mineralized tissues are areas of intense investigation...
Developmental osteogenesis and pathologies of mineralized tissues are areas of intense investigation...
In recent years, zebrafish, and to a lesser extent medaka, have become widely used small animal mode...
For many years bone research has been mainly performed in mice, chicken, cell culture systems or hum...
In the last decade, several examples have been produced by scientific literature about zebrafish as ...
Developmental osteogenesis and pathologies of mineralized tissues are areas of intense investigation...
In 2019, the Nosology Committee of the International Skeletal Dysplasia Society provided an updated ...
In 2019, the Nosology Committee of the International Skeletal Dysplasia Society provided an updated ...
Developmental osteogenesis and pathologies of mineralized tissues are areas of intense investigation...
Fishes are wonderfully diverse. This variety is a result of the ability of ray-finned fishes to adap...
Fishes are wonderfully diverse. This variety is a result of the ability of ray-finned fishes to adap...
The advancement of human genomics has revolutionized our understanding of the genetic architecture o...
Animal models are essential tools for addressing fundamental scientific questions about skeletal dis...
Animal models are essential tools for addressing fundamental scientific questions about skeletal dis...
Animal models are essential tools for addressing fundamental scientific questions about skeletal dis...
Developmental osteogenesis and pathologies of mineralized tissues are areas of intense investigation...
Developmental osteogenesis and pathologies of mineralized tissues are areas of intense investigation...
In recent years, zebrafish, and to a lesser extent medaka, have become widely used small animal mode...
For many years bone research has been mainly performed in mice, chicken, cell culture systems or hum...
In the last decade, several examples have been produced by scientific literature about zebrafish as ...
Developmental osteogenesis and pathologies of mineralized tissues are areas of intense investigation...
In 2019, the Nosology Committee of the International Skeletal Dysplasia Society provided an updated ...
In 2019, the Nosology Committee of the International Skeletal Dysplasia Society provided an updated ...
Developmental osteogenesis and pathologies of mineralized tissues are areas of intense investigation...