The advancement of human genomics has revolutionized our understanding of the genetic architecture of many skeletal diseases, including osteoporosis. However, interpreting results from human association studies remains a challenge, since index variants often reside in non-coding regions of the genome and do not possess an obvious regulatory function. To bridge the gap between genetic association and causality, a systematic functional investigation is necessary, such as the one offered by animal models. These models enable us to identify causal mechanisms, clarify the underlying biology, and apply interventions. Over the past several decades, small teleost fishes, mostly zebrafish and medaka, have emerged as powerful systems for modeling the...
Animal models are essential tools for addressing fundamental scientific questions about skeletal dis...
In 2019, the Nosology Committee of the International Skeletal Dysplasia Society provided an updated ...
Osteogenesis imperfecta (OI) is a hereditary brittle bone disorder that is mostly (>90%) caused by d...
Small teleost fish such as zebrafish and medaka are increasingly studied as models for human skeleta...
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...
For many years bone research has been mainly performed in mice, chicken, cell culture systems, or hu...
For many years bone research has been mainly performed in mice, chicken, cell culture systems, or hu...
For many years bone research has been mainly performed in mice, chicken, cell culture systems, or hu...
For many years bone research has been mainly performed in mice, chicken, cell culture systems or hum...
Osteogenesis imperfecta (OI) is a hereditary brittle bone disorder that is mostly (>90%) caused by d...
Fragile bone disorders (FBD) are characterized by increased fracture risks due to insufficient or fr...
Animal models are essential tools for addressing fundamental scientific questions about skeletal dis...
Osteogenesis imperfecta (OI) is a hereditary brittle bone disorder that is mostly (>90%) caused by d...
Osteogenesis imperfecta (OI) is a hereditary brittle bone disorder that is mostly (>90%) caused by d...
Animal models are essential tools for addressing fundamental scientific questions about skeletal dis...
In 2019, the Nosology Committee of the International Skeletal Dysplasia Society provided an updated ...
Osteogenesis imperfecta (OI) is a hereditary brittle bone disorder that is mostly (>90%) caused by d...
Small teleost fish such as zebrafish and medaka are increasingly studied as models for human skeleta...
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...
For many years bone research has been mainly performed in mice, chicken, cell culture systems, or hu...
For many years bone research has been mainly performed in mice, chicken, cell culture systems, or hu...
For many years bone research has been mainly performed in mice, chicken, cell culture systems, or hu...
For many years bone research has been mainly performed in mice, chicken, cell culture systems or hum...
Osteogenesis imperfecta (OI) is a hereditary brittle bone disorder that is mostly (>90%) caused by d...
Fragile bone disorders (FBD) are characterized by increased fracture risks due to insufficient or fr...
Animal models are essential tools for addressing fundamental scientific questions about skeletal dis...
Osteogenesis imperfecta (OI) is a hereditary brittle bone disorder that is mostly (>90%) caused by d...
Osteogenesis imperfecta (OI) is a hereditary brittle bone disorder that is mostly (>90%) caused by d...
Animal models are essential tools for addressing fundamental scientific questions about skeletal dis...
In 2019, the Nosology Committee of the International Skeletal Dysplasia Society provided an updated ...
Osteogenesis imperfecta (OI) is a hereditary brittle bone disorder that is mostly (>90%) caused by d...