CT of Periarticular Adult Knee Fractures: Classification and Management Implications.
David DreizinTyler J EdmondTina ZhangNathan SarkarOzerk TuranJason NasconePublished in: Radiographics : a review publication of the Radiological Society of North America, Inc (2024)
Periarticular knee fractures, which include fractures of the distal femur, tibial plateau, and patella, account for 5%-10% of musculoskeletal injuries encountered in trauma centers and emergency rooms. These injuries are frequently complex, with articular surface involvement. Surgical principles center on reconstruction of the articular surface as well as restoration of limb length, alignment, and rotation to reestablish functional knee biomechanics. Fixation principles are guided by fracture morphology, and thus, CT with multiplanar reformats and volume rendering is routinely used to help plan surgical intervention. Fractures involving the distal femur, tibial plateau, and patella have distinct management considerations. This comprehensive CT primer of periarticular knee fractures promotes succinct and clinically relevant reporting as well as optimized communication with orthopedic trauma surgeon colleagues by tying fracture type and key CT findings with surgical decision making. Fracture patterns are presented within commonly employed fracture classification systems, rooted in specific biomechanical principles. Fracture typing of distal femur fractures and patellar fractures is performed using Arbeitsgemeinschaft für Osteosynthesefragen/Orthopedic Trauma Association (AO/OTA) classification schemes. Tibial plateau fractures are graded using the Schatzker system, informed by a newer explicitly CT-based three-column concept. For each anatomic region, the fracture pattern helps determine the surgical access required, whether bone grafting is warranted, and the choice of hardware that achieves suitable functional outcomes while minimizing the risk of articular collapse and accelerated osteoarthritis. Emphasis is also placed on recognizing bony avulsive patterns that suggest ligament injury to help guide stress testing in the early acute period. © RSNA, 2024 Supplemental material is available for this article.
Keyphrases
- total knee arthroplasty
- computed tomography
- image quality
- anterior cruciate ligament reconstruction
- dual energy
- contrast enhanced
- knee osteoarthritis
- minimally invasive
- machine learning
- decision making
- bone mineral density
- deep learning
- hip fracture
- randomized controlled trial
- anterior cruciate ligament
- healthcare
- emergency department
- magnetic resonance
- public health
- intensive care unit
- acute respiratory distress syndrome
- tandem mass spectrometry
- pet ct