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Tricolor Transgenic Murine Model for Studying Growth Plate Injury
Published on: September 6, 2024
Imaging of Pediatric Growth Plate Disturbances
Jie C Nguyen1, B Keegan Markhardt1, Arnold C Merrow1
1From the Department of Radiology, University of Wisconsin School of Medicine and Public Health, Madison, Wis (J.C.N., B.K.M.); Department of Radiology, Cincinnati Children's Hospital Medical Center, Cincinnati, Ohio (A.C.M.); and Department of Radiology, University of California at San Diego, Rady Children's Hospital and Health Center, San Diego, Calif (J.R.D.).
Insights
Growth plate injuries in children can disrupt bone growth by damaging blood vessels. Understanding these injuries is key for accurate diagnosis and timely treatment to prevent long-term growth disturbances.
Area of Science:
- Pediatric Radiology
- Skeletal Biology
- Orthopedic Imaging
Background:
- Growth plates (physes) are crucial for longitudinal bone growth in children.
- Their function relies on a delicate vascular balance: epiphyseal vessels nourish proliferating chondrocytes, and metaphyseal vessels are vital for chondrocyte death and ossification.
- Dysfunction arises from direct growth plate injury or indirect vascular compromise.
Purpose of the Study:
- To elucidate the pathophysiology of growth plate injuries and their impact on skeletal development.
- To highlight the role of imaging in diagnosing acute injuries and predicting subsequent growth disturbances.
- To emphasize the importance of understanding normal growth plate physiology for accurate interpretation and intervention.
Main Methods:
- Review of the anatomy and physiology of pediatric growth plates.
- Analysis of injury mechanisms (direct vs. indirect) and their vascular consequences.
- Correlation of imaging findings with clinical outcomes and potential treatments.
Main Results:
- Direct insults (e.g., Salter-Harris fractures) can lead to transphyseal bone bridges.
- Indirect insults compromising epiphyseal supply cause osteonecrosis, slowed growth, and potential plate closure.
- Indirect insults to metaphyseal supply disrupt ossification, leading to growth plate widening.
Conclusions:
- Imaging is essential for identifying acute growth plate injuries and subsequent disturbances.
- Understanding growth plate vascularity and injury patterns aids diagnostic accuracy and prognosis.
- Knowledge of these pathophysiologic processes facilitates optimal imaging and timely intervention for better patient outcomes.
Abstract:
The growth plates, or physes, are visible on virtually all images obtained in skeletally immature children. The proper function of these growth plates depends on an intricate balance between chondrocyte proliferation, which requires nourishment from the epiphyseal vessels, and chondrocyte death, which requires the integrity of the metaphyseal vessels. Therefore, injury to the growth plate (ie, direct insult) or vascular compromise on either side of the growth plate (ie, indirect insult) can cause growth plate dysfunction. Direct growth plate insults occur most commonly with Salter-Harris fractures, and injuries that allow the transphyseal communication of vessels are at a higher risk for subsequent transphyseal bone bridge formation. Indirect insults lead to different sequelae that are based on whether the epiphyseal blood supply or metaphyseal blood supply is compromised. Epiphyseal osteonecrosis can result in slowed longitudinal bone growth, with possible growth plate closure, and is often accompanied by an abnormal secondary ossification center. In contrast, the disruption of metaphyseal blood supply alters endochondral ossification and allows the persistence of chondrocytes within the metaphysis, which appear as focal or diffuse growth plate widening. Imaging remains critical for detecting acute injuries and identifying subsequent growth disturbances. Depending on the imaging findings and patient factors, these growth disturbances may be amenable to conservative or surgical treatment. Therefore, an understanding of the anatomy and physiologic features of the normal growth plate and the associated pathophysiologic conditions can increase diagnostic accuracy, enable radiologists to anticipate future growth disturbances, and ensure optimal imaging, with the ultimate goal of timely and appropriate intervention. ©RSNA, 2017.
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