Patellofemoral Imaging and Analysis

Operative Techniques in Sports Medicine - Tập 27 - Trang 150684 - 2019
Seth L. Sherman1, Benjamin Todd Raines2, M. Benjamin Burch2, Taylor Ray1, Beth E. Shubin Stein3
1Division of Sports Medicine, Department of Orthopaedic Surgery, Stanford University Redwood City, CA
2Department of Orthopaedic Surgery, Missouri Orthopaedic Institute, University of Missouri, Columbia, MO
3Division of Sports Medicine, Hospital for Special Surgery, New York, NY

Tài liệu tham khảo

Christensen, 2017, Risk factors and time to recurrent ipsilateral and contralateral patellar dislocations, Am J Sports Med, 45, 2105, 10.1177/0363546517704178 Diederichs, 2010, MR imaging of patellar instability: Injury patterns and assessment of risk factors1, Radiographics, 30, 961, 10.1148/rg.304095755 Drew, 2016, Which patellofemoral joint imaging features are associated with patellofemoral pain? Systematic review and meta-analysis, Osteoarthritis Cartilage, 24, 224, 10.1016/j.joca.2015.09.004 Grelsamer, 1994, Evaluation of patellar shape in the sagittal plane, Am J Sports Med, 22, 61, 10.1177/036354659402200111 Merchant, 1974, Roentgenographic analysis of patellofemoral congruence, J Bone Joint Surg Am, 56, 1391, 10.2106/00004623-197456070-00007 Colvin, 2008, Patellar instability, J Bone Joint Surg Am, 90, 2751, 10.2106/JBJS.H.00211 Paley, 1992, Mechanical axis deviation of the lower limbs. Preoperative planning of uniapical angular deformities of the tibia or femur, Clin Orthop Relat R, 48 Seitlinger, 2012, Tibial tubercle–Posterior cruciate ligament distance, Am J Sports Med, 40, 1119, 10.1177/0363546512438762 Anley, 2015, Defining the role of the tibial tubercle–trochlear groove and tibial tubercle–posterior cruciate ligament distances in the work-up of patients with patellofemoral disorders, Am J Sports Med, 43, 1348, 10.1177/0363546515576128 Camp, 2013, CT and MRI measurements of tibial tubercle–trochlear groove distances are not equivalent in patients with patellar instability, Am J Sports Med, 41, 1835, 10.1177/0363546513484895 Pandit, 2011, Magnetic resonance imaging assessment of tibial tuberosity–trochlear groove distance: normal values for males and females, Int Orthop, 35, 1799, 10.1007/s00264-011-1240-8 Guerrero, 2009, Medial patellofemoral ligament injury patterns and associated pathology in lateral patella dislocation: An MRI study, Bmc Sports Sci Med Rehabil Ther Technol, 1, 17, 10.1186/1758-2555-1-17 Botter, 2006, Quantification of subchondral bone changes in a murine osteoarthritis model using micro-CT, Biorheology, 43, 379 Tat, 2010, Targeting subchondral bone for treating osteoarthritis: What is the evidence, Best Pract Res Clin Rheumatol, 24, 51, 10.1016/j.berh.2009.08.004 Chiba, 2011, In vivo structural analysis of subchondral trabecular bone in osteoarthritis of the hip using multi-detector row CT, Osteoarthritis Cartilage, 19, 180, 10.1016/j.joca.2010.11.002 Balcarek, 2012, MRI but not arthroscopy accurately diagnoses femoral MPFL injury in first-time patellar dislocations, Knee Surg Sports Traumatol Arthrosc, 20, 1575, 10.1007/s00167-011-1775-7 Crema, 2011, Articular cartilage in the knee: Current MR imaging techniques and applications in clinical practice and research, Radiographics, 31, 37, 10.1148/rg.311105084 Potter, 1998, Magnetic resonance imaging of articular cartilage in the knee. An evaluation with use of fast-spin-echo imaging, J Bone Joint Surg Am, 80, 1276, 10.2106/00004623-199809000-00005 Tiderius, 2003, Delayed gadolinium‐enhanced MRI of cartilage (dGEMRIC) in early knee osteoarthritis, Magn Reson Med, 49, 488, 10.1002/mrm.10389 Wang, 2012, T1rho MRI of menisci and cartilage in patients with osteoarthritis at 3T, Eur J Radiol, 81, 2329, 10.1016/j.ejrad.2011.07.017 Li, 2007, In vivo T1ρ and T2 mapping of articular cartilage in osteoarthritis of the knee using 3T MRI, Osteoarthritis Cartilage, 15, 789, 10.1016/j.joca.2007.01.011 Yoon, 2016, Comparison of T1rho and T2 mapping of knee articular cartilage in an asymptomatic population, Korean J Radiol, 17, 912, 10.3348/kjr.2016.17.6.912 Wheaton, 2005, Detection of changes in articular cartilage proteoglycan by T1ρ magnetic resonance imaging, J Orthop Res, 23, 102, 10.1016/j.orthres.2004.06.015 van de Loo, 1994, Proteoglycan loss and subsequent replenishment in articular cartilage after a mild arthritic insult by IL-1 in mice: Impaired proteoglycan turnover in the recovery phase, Agents Actions, 41, 200, 10.1007/BF02001917 Pakin, 2006, 3D‐T1ρ quantitation of patellar cartilage at 3.0T, J Magn Reson Imaging, 24, 1357, 10.1002/jmri.20733 Dunn, 2004, T2 Relaxation time of cartilage at MR imaging: Comparison with severity of knee osteoarthritis, Radiology, 232, 592, 10.1148/radiol.2322030976 Dardzinski, 1997, Spatial variation of T2 in human articular cartilage, Radiology, 205, 546, 10.1148/radiology.205.2.9356643 Williams, 2004, Glycosaminoglycan Distribution in Cartilage as Determined by Delayed Gadolinium-Enhanced MRI of Cartilage (dGEMRIC): Potential clinical applications, Am J Roentgenol, 182, 167, 10.2214/ajr.182.1.1820167 Jones, 1993, Radiographic assessment of patellofemoral osteoarthritis, Ann Rheum Dis, 52, 655, 10.1136/ard.52.9.655 Ward, 2007, Patella alta: association with patellofemoral alignment and changes in contact area during weight-bearing, J Bone Joint Surg Am, 89, 1749 Insall, 1971, Patella position in the normal knee joint, Radiology, 101, 101, 10.1148/101.1.101 Blackburne, 1977, A new method of measuring patellar height, J Bone Joint Surg Br, 59, 241, 10.1302/0301-620X.59B2.873986 Lancourt, 1975, Patella alta and patella infera. Their etiological role in patellar dislocation, chondromalacia, and apophysitis of the tibial tubercle, J Bone Joint Surg Am, 57, 1112, 10.2106/00004623-197557080-00015 Caton, 1982, [Patella infera. Apropos of 128 cases], Revue Chir Orthop Réparatrice Appar Mot, 68, 317 Thévenin-Lemoine, 2011, Is the Caton-Deschamps Index a valuable ratio to investigate patellar height in children&quest, J Bone Joint Surg Am, 93, e35, 10.2106/JBJS.J.00759 Grelsamer, 1992, The Modified Insall–Salvati ratio for assessment of patellar height, Clin Orthop Relat R, 282, 170, 10.1097/00003086-199209000-00022 Gausden, 2015, Medial patellofemoral reconstruction in children and adolescents, Jbjs Rev, 3, 10.2106/JBJS.RVW.N.00091 Arshi, 2016, Operative management of patellar instability in the United States, Orthop J Sports Med, 4, 10.1177/2325967116662873 Caton, 1989, [Method of measuring the height of the patella], Acta Orthop Belg, 55, 385 Blumensaat, 1938, 149 Bernageau, 1975, [New exploration technic of the patellofemoral joint. Relaxed axial quadriceps and contracted quadriceps], Revue Chir Orthop Réparatrice Appar Mot, 61, 286 Biedert, 2006, The patellotrochlear index: a new index for assessing patellar height, Knee Surg Sports Traumatol Arthrosc, 14, 707, 10.1007/s00167-005-0015-4 Munch, 2016, Patellar articular overlap on MRI is a simple alternative to conventional measurements of patellar height, Orthop J Sports Med, 4, 10.1177/2325967116656328 Mayer, 2012, Patellar tendon tenodesis in association with tibial tubercle distalization for the treatment of episodic patellar dislocation with patella alta, Am J Sports Med, 40, 346, 10.1177/0363546511427117 Brattström, 2009, Patella alta in non-dislocating knee joints, Acta Orthop Scand, 41, 578, 10.3109/17453677008991549 Caylor, 1993, The relationship between quadriceps angle and anterior knee pain syndrome, J Orthop Sport Phys, 17, 11, 10.2519/jospt.1993.17.1.11 Aglietti, 1983, Patellar pain and incongruence. I: Measurements of incongruence, Clin Orthop Relat R, 217 Biedert, 1997, Axial computed tomography of the patellofemoral joint with and without quadriceps contraction, Arch Orthop Traum Su, 116, 77, 10.1007/BF00434106 Guerra, 1994, Q angle: Effects of isometric quadriceps contraction and body position, J Orthop Sport Phys, 19, 200, 10.2519/jospt.1994.19.4.200 Sanchez, 2014, Evaluation of Q angle in different static postures, Acta Ortop Bras, 22, 325, 10.1590/1413-78522014220600451 Nguyen, 2009, Relationships between lower extremity alignment and the quadriceps angle, Clin J Sport Med, 19, 201, 10.1097/JSM.0b013e3181a38fb1 Kaneko, 2013, Association between femoral anteversion and lower extremity posture upon single-leg landing: implications for anterior cruciate ligament injury, J Phys Ther Sci, 25, 1213, 10.1589/jpts.25.1213 Dejour, 1994, Factors of patellar instability: An anatomic radiographic study, Knee Surg Sports Traumatol Arthrosc, 2, 19, 10.1007/BF01552649 Schoettle, 2006, The tibial tuberosity–trochlear groove distance; a comparative study between CT and MRI scanning, Knee, 13, 26, 10.1016/j.knee.2005.06.003 Farr, 2007, Anteromedialization: Review and technique, J Knee Surg, 20, 120, 10.1055/s-0030-1248030 Fulkerson, 1983, The etiology of patellofemoral pain in young, active patients: A prospective study, Clin Orthop Relat R, 129 Balcarek, 2011, Value of the tibial tuberosity–trochlear groove distance in patellar instability in the young athlete, Am J Sports Med, 39, 1756, 10.1177/0363546511404883 Brady, 2018, Use of TT-PCL versus TT-TG, Curr Rev Musculoskelet Med, 11, 261, 10.1007/s12178-018-9481-4 Redziniak, 2009, Patellar instability, J Bone Joint Surg Am, 91, 2264 Kurosawa, 1985, Geometry and motion of the knee for implant and orthotic design, J Biomech, 18, 487, 10.1016/0021-9290(85)90663-3 Nahass, 1991, Motion of the knee after condylar resurfacing—An in vivo study, J Biomech, 24, 1107, 10.1016/0021-9290(91)90003-6 Camp, 2016, Individualizing the tibial tubercle–trochlear groove distance, Am J Sports Med, 44, 393, 10.1177/0363546515602483 Hingelbaum, 2014, The TT-TG Index: A new knee size adjusted measure method to determine the TT-TG distance, Knee Surg Sports Traumatol Arthrosc, 22, 2388, 10.1007/s00167-014-3204-1 Caton, 2010, Tibial tubercle osteotomy in patello-femoral instability and in patellar height abnormality, Int Orthop, 34, 305, 10.1007/s00264-009-0929-4 Marquez-Lara, 2017, Variability in patellofemoral alignment measurements on MRI: Influence of knee position, Am J Roentgenol, 208, 1097, 10.2214/AJR.16.17007 Daynes, 2015, Tibial tuberosity-posterior cruciate ligament distance, J Knee Surg, 29, 471, 10.1055/s-0035-1564732 Boutris, 2018, Current evidence advocates use of a new pathologic tibial tubercle–posterior cruciate ligament distance threshold in patients with patellar instability, Knee Surg Sports Traumatol Arthrosc, 26, 2733, 10.1007/s00167-017-4716-2 Brady, 2017, The tibial tubercle–to–trochlear groove distance is reliable in the setting of trochlear dysplasia, and superior to the tibial tubercle–to–posterior cruciate ligament distance when evaluating coronal malalignment in patellofemoral instability, Arthrosc J Arthrosc Relat Surg, 33, 2026 Heidenreich, 2017, The contribution of the tibial tubercle to patellar instability: analysis of tibial tubercle–trochlear groove (TT-TG) and tibial tubercle–posterior cruciate ligament (TT-PCL) distances, Knee Surg Sports Traumatol Arthrosc, 25, 2347, 10.1007/s00167-015-3715-4 Rmott, 1988, Distal femoral varus osteotomy for valgus deformity of the knee, J Bone Joint Surg Am, 70, 110, 10.2106/00004623-198870010-00017 Kapandji, 1987, The knee, 2, 68 Stoffel, 2007, Patellofemoral contact pressure following high tibial osteotomy: A cadaveric study, Knee Surg Sports Traumatol Arthrosc, 15, 1094, 10.1007/s00167-007-0297-9 Grelsamer, 1993, Radiographic analysis of patellar tilt, J Bone Joint Surg Br, 75, 822, 10.1302/0301-620X.75B5.8376449 Maldague, 1985, [Significance of the radiograph of the knee profile in the detection of patellar instability. Preliminary report], Revue Chir Orthop Réparatrice Appar Mot, 71, 5 Pal, 2012, Patellar tilt correlates with vastus lateralis: Vastus medialis activation ratio in maltracking patellofemoral pain patients, J Orthop Res, 30, 927, 10.1002/jor.22008 Zaffagnini, 2013, Combined ACL reconstruction and closing-wedge HTO for varus angulated ACL-deficient knees, Knee Surg Sports Traumatol Arthrosc, 21, 934, 10.1007/s00167-013-2400-8 Ramappa, 2006, The Effects of Medialization and Anteromedialization of the tibial tubercle on patellofemoral mechanics and kinematics, Am J Sports Med, 34, 749, 10.1177/0363546505283460 Lewallen, 2015, First-time patellofemoral dislocation: Risk factors for recurrent instability, J Knee Surg, 28, 303, 10.1055/s-0034-1398373 Blønd, 2014, Combined arthroscopic deepening trochleoplasty and reconstruction of the medial patellofemoral ligament for patients with recurrent patella dislocation and trochlear dysplasia, Knee Surg Sports Traumatol Arthrosc, 22, 2484, 10.1007/s00167-013-2422-2 Balcarek, 2017, Results of medial patellofemoral ligament reconstruction compared with trochleoplasty plus individual extensor apparatus balancing in patellar instability caused by severe trochlear dysplasia: A systematic review and meta-analysis, Knee Surg Sports Traumatol Arthrosc, 25, 3869, 10.1007/s00167-016-4365-x Dejour, 1990, [Dysplasia of the femoral trochlea], Revue Chir Orthop Réparatrice Appar Mot, 76, 45 White, 2009, Patellofemoral instability, Bulletin Nyu Hosp Joint Dis, 67, 22 Endo, 2011, Radiologic assessment of patellofemoral pain in the athlete, Sports Heal, 3, 195, 10.1177/1941738110397875 DeJour, 2010, The sulcus deepening trochleoplasty—the Lyon's procedure, Int Orthop, 34, 311, 10.1007/s00264-009-0933-8 Remy, 1998, [Reproducibility of the radiographic analysis of dysplasia of the femoral trochlea. Intra- and interobserver analysis of 68 knees], Revue Chir Orthop Réparatrice Appar Mot, 84, 728 Ntagiopoulos, 2014, The incidence of trochlear dysplasia in anterior cruciate ligament tears, Int Orthop, 38, 1269, 10.1007/s00264-014-2291-4 Pfirrmann, 2000, Femoral trochlear dysplasia: MR findings, Radiology, 216, 858, 10.1148/radiology.216.3.r00se38858 Kirsch, 1993, Transient lateral patellar dislocation: diagnosis with MR imaging, Am J Roentgenol, 161, 109, 10.2214/ajr.161.1.8517287 Wibeeg, 2009, Roentgenographs and anatomic studies on the femoropatellar joint: With special reference to chondromalacia patellae, Acta Orthop Scand, 12, 319, 10.3109/17453674108988818 Gudas, 2018, The patello-femoral joint degeneration and the shape of the patella in the population needing an arthroscopic procedure, Medicina, 54, 21, 10.3390/medicina54020021 Elias, 2002, Acute lateral patellar dislocation at MR imaging: Injury patterns of medial patellar soft-tissue restraints and osteochondral injuries of the inferomedial patella, Radiology, 225, 736, 10.1148/radiol.2253011578 Outerbridge, 1961, The etiology of chondromalacia patellae, J Bone Joint Surg Br, 43-B, 752, 10.1302/0301-620X.43B4.752 van den Borne, 2007, International Cartilage Repair Society (ICRS) and Oswestry macroscopic cartilage evaluation scores validated for use in Autologous Chondrocyte Implantation (ACI) and microfracture, Osteoarthritis Cartilage, 15, 1397, 10.1016/j.joca.2007.05.005 Peterfy, 2004, Whole-Organ Magnetic Resonance Imaging Score (WORMS) of the knee in osteoarthritis, Osteoarthritis Cartilage, 12, 177, 10.1016/j.joca.2003.11.003 Hunter, 2011, Evolution of semi-quantitative whole joint assessment of knee OA: MOAKS (MRI Osteoarthritis Knee Score), Osteoarthritis Cartilage, 19, 990, 10.1016/j.joca.2011.05.004 Sanders, 2001, Medial patellofemoral ligament injury following acute transient dislocation of the patella: MR findings with surgical correlation in 14 patients, J Comput Assist Tomogr, 25, 957, 10.1097/00004728-200111000-00021 Swischuk, 2003, Lateral femoral condylar shearing fractures, Emerg Radiol, 10, 19, 10.1007/s10140-003-0272-9 Deutsch, 1981, Synovial plicae of the knee, Radiology, 141, 627, 10.1148/radiology.141.3.7302215 Saddik, 2004, MRI of Hoffa's fat pad, Skeletal Radiol, 33, 433, 10.1007/s00256-003-0724-z Stephen, 2016, The use of sonographically guided botulinum toxin type A (Dysport) injections into the tensor fasciae latae for the treatment of lateral patellofemoral overload syndrome, Am J Sports Med, 44, 1195, 10.1177/0363546516629432 Grawe, 2015, Tibial tubercle osteotomy: indication and techniques, J Knee Surg, 28, 279, 10.1055/s-0035-1544973 Boutin, 2003, MR imaging features of osteochondritis dissecans of the femoral sulcus, Am J Roentgenol, 180, 641, 10.2214/ajr.180.3.1800641 Choi, 2007, Magnetic resonance imaging in the evaluation of osteochondritis dissecans of the patella, Skeletal Radiol, 36, 929, 10.1007/s00256-007-0357-8 Obedian, 1997, Osteochondritis dissecans of the distal femur and patella, Clin Sport Med, 16, 157, 10.1016/S0278-5919(05)70012-0 Peters, 2000, Osteochondritis dissecans of the patellofemoral joint, Am J Sports Med, 28, 63, 10.1177/03635465000280012201 Smet, 1990, Osteochondritis dissecans of the knee: Value of MR imaging in determining lesion stability and the presence of articular cartilage defects, Am J Roentgenol, 155, 549, 10.2214/ajr.155.3.2117355 Smet, 1996, Reassessment of the MR criteria for stability of osteochondritis dissecans in the knee and ankle, Skeletal Radiol, 25, 159, 10.1007/s002560050054 Kijowski, 2008, Juvenile versus adult osteochondritis dissecans of the knee: Appropriate MR imaging criteria for instability, Radiology, 248, 571, 10.1148/radiol.2482071234 Davies, 2002, The radiologic prevalence of patellofemoral osteoarthritis, Clin Orthop Relat R, 402, 206, 10.1097/00003086-200209000-00020 McAlindon, 1992, Radiographic patterns of osteoarthritis of the knee joint in the community: The importance of the patellofemoral joint, Ann Rheum Dis, 51, 844, 10.1136/ard.51.7.844 Stefanik, 2015, The relation of MRI-detected structural damage in the medial and lateral patellofemoral joint to knee pain: The Multicenter and Framingham Osteoarthritis Studies, Osteoarthritis Cartilage, 23, 565, 10.1016/j.joca.2014.12.023 Canizares, 2003, Bipartite patella fracture, Arthrosc J Arthrosc Relat Surg, 19, 215, 10.1053/jars.2003.50055