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Published in: Skeletal Radiology 6/2020

01-06-2020 | Femuroacetabular Impingement | Review Article

Magnetic resonance imaging of impingement and friction syndromes around the knee

Authors: Imran Khan, Tanweer Ashraf, Asif Saifuddin

Published in: Skeletal Radiology | Issue 6/2020

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Abstract

The knee is a complex joint with its function dependent on a combination of osseous and soft tissue structures. Alteration in the relationship of these tissues, due to either acute or chronic repetitive injury with possible underlying congenital predisposing factors, can result in impingement between the structures resulting in pain, particularly on activity. The purpose of this article is to provide a comprehensive review of the MRI features of various impingement syndromes around the knee.
Literature
1.
go back to reference De Maeseneer M, Wuertzer S, De Mey J, Shahabpour M. The imaging findings of impingement syndromes of the lower limb. Clin Radiol. 2017;72(12):1014–24.PubMed De Maeseneer M, Wuertzer S, De Mey J, Shahabpour M. The imaging findings of impingement syndromes of the lower limb. Clin Radiol. 2017;72(12):1014–24.PubMed
2.
go back to reference Aydingoz U, Maras Ozdemir Z, Gunes A, Ergen FB. MRI of lower extremity impingement and friction syndromes in children. Diagn Interv Radiol. 2016;22(6):566–73.PubMedPubMedCentral Aydingoz U, Maras Ozdemir Z, Gunes A, Ergen FB. MRI of lower extremity impingement and friction syndromes in children. Diagn Interv Radiol. 2016;22(6):566–73.PubMedPubMedCentral
3.
go back to reference Faletti C, De Stefano N, Giudice G, Larciprete M. Knee impingement syndromes. Eur J Radiol. 1998;27(Suppl 1):S60–9.PubMed Faletti C, De Stefano N, Giudice G, Larciprete M. Knee impingement syndromes. Eur J Radiol. 1998;27(Suppl 1):S60–9.PubMed
4.
go back to reference Grando H, Chang EY, Chen KC, Chung CB. MR imaging of extrasynovial inflammation and impingement about the knee. Magn Reson Imaging Clin N Am. 2014;22(4):725–41.PubMed Grando H, Chang EY, Chen KC, Chung CB. MR imaging of extrasynovial inflammation and impingement about the knee. Magn Reson Imaging Clin N Am. 2014;22(4):725–41.PubMed
5.
go back to reference Dye SF, Campagna-Pinto D, Dye CC, Shifflett S, Eiman T. Soft-tissue anatomy anterior to the human patella. J Bone Joint Surg Am. 2003;85(6):1012–7.PubMed Dye SF, Campagna-Pinto D, Dye CC, Shifflett S, Eiman T. Soft-tissue anatomy anterior to the human patella. J Bone Joint Surg Am. 2003;85(6):1012–7.PubMed
6.
go back to reference Flores DV, Mejía Gómez C, Pathria MN. Layered approach to the anterior knee: normal anatomy and disorders associated with anterior knee pain. Radiographics. 2018;38(7):2069–101.PubMed Flores DV, Mejía Gómez C, Pathria MN. Layered approach to the anterior knee: normal anatomy and disorders associated with anterior knee pain. Radiographics. 2018;38(7):2069–101.PubMed
7.
go back to reference Claes T, Claes S, De Roeck J, Claes T. Prepatellar friction syndrome: a common cause of knee pain in the elite cyclist. Acta Orthop Belg. 2015;81(4):614–9.PubMed Claes T, Claes S, De Roeck J, Claes T. Prepatellar friction syndrome: a common cause of knee pain in the elite cyclist. Acta Orthop Belg. 2015;81(4):614–9.PubMed
8.
go back to reference Tsavalas N, Karantanas AH. Suprapatellar fat-pad mass effect: MRI findings and correlation with anterior knee pain. Am J Roentgenol. 2013;200(3):W291–6. Tsavalas N, Karantanas AH. Suprapatellar fat-pad mass effect: MRI findings and correlation with anterior knee pain. Am J Roentgenol. 2013;200(3):W291–6.
9.
go back to reference Jarraya M, Diaz LE, Roemer FW, Arndt WF, Goud AR, Guermazi A. MRI findings consistent with peripatellar fat pad impingement: how much related to patellofemoral maltracking? Magn Reson Med Sci. 2018;17(3):195–202.PubMed Jarraya M, Diaz LE, Roemer FW, Arndt WF, Goud AR, Guermazi A. MRI findings consistent with peripatellar fat pad impingement: how much related to patellofemoral maltracking? Magn Reson Med Sci. 2018;17(3):195–202.PubMed
10.
go back to reference Draghi F, Ferrozzi G, Urciuoli L, Bortolotto C, Bianchi S. Hoffa’s fat pad abnormalities, knee pain and magnetic resonance imaging in daily practice. Insights Imaging. Springer Berlin Heidelberg. 2016;7(3):373–83.PubMedPubMedCentral Draghi F, Ferrozzi G, Urciuoli L, Bortolotto C, Bianchi S. Hoffa’s fat pad abnormalities, knee pain and magnetic resonance imaging in daily practice. Insights Imaging. Springer Berlin Heidelberg. 2016;7(3):373–83.PubMedPubMedCentral
11.
go back to reference Bohnsack M, Wilharm A, Hurschler C, Rühmann O, Stukenborg-Colsman C, Wirth CJ. Biomechanical and kinematic influences of a total infrapatellar fat pad resection on the knee. Am J Sports Med. 2004;32(8):1873–80.PubMed Bohnsack M, Wilharm A, Hurschler C, Rühmann O, Stukenborg-Colsman C, Wirth CJ. Biomechanical and kinematic influences of a total infrapatellar fat pad resection on the knee. Am J Sports Med. 2004;32(8):1873–80.PubMed
12.
go back to reference Kim SJ, Min BH, Kim HK. Arthroscopic anatomy of the infrapatellar plica. Arthroscopy. 1996;12(5):561–4.PubMed Kim SJ, Min BH, Kim HK. Arthroscopic anatomy of the infrapatellar plica. Arthroscopy. 1996;12(5):561–4.PubMed
13.
go back to reference Saddik D, McNally EG, Richardson M. MRI of Hoffa’s fat pad. Skelet Radiol. 2004;33(8):433–44. Saddik D, McNally EG, Richardson M. MRI of Hoffa’s fat pad. Skelet Radiol. 2004;33(8):433–44.
14.
go back to reference Chung CB, Skaf A, Roger B, Campos J, Stump X, Resnick D. Patellar tendon-lateral femoral condyle friction syndrome: MR imaging in 42 patients. Skelet Radiol. 2001;30(12):694–7. Chung CB, Skaf A, Roger B, Campos J, Stump X, Resnick D. Patellar tendon-lateral femoral condyle friction syndrome: MR imaging in 42 patients. Skelet Radiol. 2001;30(12):694–7.
15.
go back to reference Widjajahakim R, Roux M, Jarraya M, Roemer FW, Neogi T, Lynch JA, et al. Relationship of trochlear morphology and patellofemoral joint alignment to superolateral Hoffa fat pad edema on MR images in individuals with or at risk for osteoarthritis of the knee: the MOST study. Radiology. 2017;284(3):806–14.PubMed Widjajahakim R, Roux M, Jarraya M, Roemer FW, Neogi T, Lynch JA, et al. Relationship of trochlear morphology and patellofemoral joint alignment to superolateral Hoffa fat pad edema on MR images in individuals with or at risk for osteoarthritis of the knee: the MOST study. Radiology. 2017;284(3):806–14.PubMed
16.
go back to reference LLopis E, Padrón M. Anterior knee pain. Eur J Radiol. 2007;62(1):27–43.PubMed LLopis E, Padrón M. Anterior knee pain. Eur J Radiol. 2007;62(1):27–43.PubMed
17.
go back to reference De Smet AA, Davis KW, Dahab KS, Blankenbaker DG, del Rio AM, Bernhardt DT. Is there an association between superolateral Hoffa fat pad edema on MRI and clinical evidence of fat pad impingement? AJR Am J Roentgenol. 2012;199(5):1099–104.PubMed De Smet AA, Davis KW, Dahab KS, Blankenbaker DG, del Rio AM, Bernhardt DT. Is there an association between superolateral Hoffa fat pad edema on MRI and clinical evidence of fat pad impingement? AJR Am J Roentgenol. 2012;199(5):1099–104.PubMed
18.
go back to reference Campagna R, Pessis E, Biau DJ, Guerini H, Feydy A, Thevenin FS, et al. Is superolateral Hoffa fat pad edema a consequence of impingement between lateral femoral condyle and patellar ligament? Radiology. 2012;263(2):469–74.PubMed Campagna R, Pessis E, Biau DJ, Guerini H, Feydy A, Thevenin FS, et al. Is superolateral Hoffa fat pad edema a consequence of impingement between lateral femoral condyle and patellar ligament? Radiology. 2012;263(2):469–74.PubMed
19.
go back to reference Subhawong TK, Eng J, Carrino JA, Chhabra A. Superolateral Hoffa’s fat pad edema: association with patellofemoral maltracking and impingement. Am J Roentgenol. 2010;195(6):1367–73. Subhawong TK, Eng J, Carrino JA, Chhabra A. Superolateral Hoffa’s fat pad edema: association with patellofemoral maltracking and impingement. Am J Roentgenol. 2010;195(6):1367–73.
20.
go back to reference Jibri ZA, Kamath S. Maltracking and impingement of superolateral Hoffa’s fat pad. Am J Roentgenol. 2011;197(6):W1164–W4. Jibri ZA, Kamath S. Maltracking and impingement of superolateral Hoffa’s fat pad. Am J Roentgenol. 2011;197(6):W1164–W4.
21.
go back to reference Matcuk GR, Cen SY, Keyfes V, Patel DB, Gottsegen CJ, White EA. Superolateral hoffa fat-pad edema and patellofemoral maltracking: predictive modeling. AJR Am J Roentgenol. 2014;203(2):W207–12.PubMed Matcuk GR, Cen SY, Keyfes V, Patel DB, Gottsegen CJ, White EA. Superolateral hoffa fat-pad edema and patellofemoral maltracking: predictive modeling. AJR Am J Roentgenol. 2014;203(2):W207–12.PubMed
22.
go back to reference Jarraya M, Guermazi A, Felson DT, Roemer FW, Nevitt MC, Torner J, et al. Is superolateral Hoffa’s fat pad hyperintensity a marker of local patellofemoral joint disease? - the MOST study. Osteoarthr Cartil. 2017;25(9):1459–67. Jarraya M, Guermazi A, Felson DT, Roemer FW, Nevitt MC, Torner J, et al. Is superolateral Hoffa’s fat pad hyperintensity a marker of local patellofemoral joint disease? - the MOST study. Osteoarthr Cartil. 2017;25(9):1459–67.
23.
go back to reference Li J, Sheng B, Yu F, Guo C, Lv F, Lv F, et al. Quantitative magnetic resonance imaging in patellar tendon-lateral femoral condyle friction syndrome: relationship with subtle patellofemoral instability. Skeletal Radiol. Springer Berlin Heidelberg. 2019;48(8):1251–9.PubMed Li J, Sheng B, Yu F, Guo C, Lv F, Lv F, et al. Quantitative magnetic resonance imaging in patellar tendon-lateral femoral condyle friction syndrome: relationship with subtle patellofemoral instability. Skeletal Radiol. Springer Berlin Heidelberg. 2019;48(8):1251–9.PubMed
24.
go back to reference Mehta K, Wissman R, England E, Dʼheurle A, Newton K, Kenter K. Superolateral Hoffa’s fat pad edema in collegiate volleyball players. J Comput Assist Tomogr. 2015;39(6):945–50.PubMed Mehta K, Wissman R, England E, Dʼheurle A, Newton K, Kenter K. Superolateral Hoffa’s fat pad edema in collegiate volleyball players. J Comput Assist Tomogr. 2015;39(6):945–50.PubMed
25.
go back to reference Hoffa A. The influence of the adipose tissue with regard to the pathology of the knee joint. JAMA. 1904;XLIII(12):795. Hoffa A. The influence of the adipose tissue with regard to the pathology of the knee joint. JAMA. 1904;XLIII(12):795.
26.
go back to reference Kumar D, Alvand A, Beacon JP. Impingement of infrapatellar fat pad (Hoffa’s disease): results of high-portal arthroscopic resection. Arthroscopy. 2007;23(11):1180–1.PubMed Kumar D, Alvand A, Beacon JP. Impingement of infrapatellar fat pad (Hoffa’s disease): results of high-portal arthroscopic resection. Arthroscopy. 2007;23(11):1180–1.PubMed
27.
go back to reference Larbi A, Cyteval C, Hamoui M, Dallaudière B, Zarqane H, Viala P, et al. Hoffa’s disease: a report on 5 cases. Diagn Interv Imaging. 2014;95(11):1079–84.PubMed Larbi A, Cyteval C, Hamoui M, Dallaudière B, Zarqane H, Viala P, et al. Hoffa’s disease: a report on 5 cases. Diagn Interv Imaging. 2014;95(11):1079–84.PubMed
28.
go back to reference von Engelhardt LV, Tokmakidis E, Lahner M, Dàvid A, Haage P, Bouillon B, et al. Hoffa’s fat pad impingement treated arthroscopically: related findings on preoperative MRI in a case series of 62 patients. Arch Orthop Trauma Surg. 2010;130(8):1041–51. von Engelhardt LV, Tokmakidis E, Lahner M, Dàvid A, Haage P, Bouillon B, et al. Hoffa’s fat pad impingement treated arthroscopically: related findings on preoperative MRI in a case series of 62 patients. Arch Orthop Trauma Surg. 2010;130(8):1041–51.
29.
go back to reference Jacobson JA, Lenchik L, Ruhoy MK, Schweitzer ME, Resnick D. MR imaging of the infrapatellar fat pad of Hoffa. RadioGraphics. 1997;17(3):675–91.PubMed Jacobson JA, Lenchik L, Ruhoy MK, Schweitzer ME, Resnick D. MR imaging of the infrapatellar fat pad of Hoffa. RadioGraphics. 1997;17(3):675–91.PubMed
30.
go back to reference Abreu MR, Chung CB, Trudell D, Resnick D. Hoffa’s fat pad injuries and their relationship with anterior cruciate ligament tears: new observations based on MR imaging in patients and MR imaging and anatomic correlation in cadavers. Skelet Radiol. 2008;37(4):301–6. Abreu MR, Chung CB, Trudell D, Resnick D. Hoffa’s fat pad injuries and their relationship with anterior cruciate ligament tears: new observations based on MR imaging in patients and MR imaging and anatomic correlation in cadavers. Skelet Radiol. 2008;37(4):301–6.
31.
go back to reference Dupont JY. Synovial plicae of the knee. Controversies and review. CSM. 1997;16(1):87–122. Dupont JY. Synovial plicae of the knee. Controversies and review. CSM. 1997;16(1):87–122.
32.
go back to reference Ogata S, Uhthoff HK. The development of synovial plicae in human knee joints: an embryologic study. Arthroscopy. 1990;6(4):315–21.PubMed Ogata S, Uhthoff HK. The development of synovial plicae in human knee joints: an embryologic study. Arthroscopy. 1990;6(4):315–21.PubMed
33.
go back to reference Jouanin T, Dupont JY, Halimi P, Lassau JP. Les plicae. Etude anatomique portant sur la dissection de 200 genoux. Anat Clin. 1982;4(1):47–53. Jouanin T, Dupont JY, Halimi P, Lassau JP. Les plicae. Etude anatomique portant sur la dissection de 200 genoux. Anat Clin. 1982;4(1):47–53.
34.
go back to reference Nakayama A, Sugita T, Aizawa T, Takahashi A, Honma T. Incidence of medial plica in 3,889 knee joints in the Japanese population. Arthroscopy. 2011;27(11):1523–7.PubMed Nakayama A, Sugita T, Aizawa T, Takahashi A, Honma T. Incidence of medial plica in 3,889 knee joints in the Japanese population. Arthroscopy. 2011;27(11):1523–7.PubMed
35.
go back to reference García-Valtuille R, Abascal F, Cerezal L, García-Valtuille A, Pereda T, Canga A, et al. Anatomy and MR imaging appearances of synovial plicae of the knee. RadioGraphics. 2002;22(4):775–84.PubMed García-Valtuille R, Abascal F, Cerezal L, García-Valtuille A, Pereda T, Canga A, et al. Anatomy and MR imaging appearances of synovial plicae of the knee. RadioGraphics. 2002;22(4):775–84.PubMed
36.
go back to reference Ewing J. Plica: pathologic or not? J Am Acad Orthop Surg. 1993;1(2):117–21.PubMed Ewing J. Plica: pathologic or not? J Am Acad Orthop Surg. 1993;1(2):117–21.PubMed
37.
go back to reference Lee PYF, Nixion A, Chandratreya A, Murray JM. Synovial plica syndrome of the knee: a commonly overlooked cause of anterior knee pain. Surg J (N Y). 2017;3(1):e9–e16. Lee PYF, Nixion A, Chandratreya A, Murray JM. Synovial plica syndrome of the knee: a commonly overlooked cause of anterior knee pain. Surg J (N Y). 2017;3(1):e9–e16.
38.
go back to reference Kim S-J, Kim J-Y, Lee JW. Pathologic infrapatellar plica. Arthroscopy. 2002;18(5):E25.PubMed Kim S-J, Kim J-Y, Lee JW. Pathologic infrapatellar plica. Arthroscopy. 2002;18(5):E25.PubMed
39.
go back to reference Cothran RL, McGuire PM, Helms CA, Major NM, Attarian DE. MR imaging of infrapatellar plica injury. Am J Roentgenol. 2003;180(5):1443–7. Cothran RL, McGuire PM, Helms CA, Major NM, Attarian DE. MR imaging of infrapatellar plica injury. Am J Roentgenol. 2003;180(5):1443–7.
40.
go back to reference Ozcan M, Copuroğlu C, Ciftdemir M, Turan FN, Calpur OU. Does an abnormal infrapatellar plica increase the risk of chondral damage in the knee. Knee Surg Sports Traumatol Arthrosc. 2011;19(2):218–21.PubMed Ozcan M, Copuroğlu C, Ciftdemir M, Turan FN, Calpur OU. Does an abnormal infrapatellar plica increase the risk of chondral damage in the knee. Knee Surg Sports Traumatol Arthrosc. 2011;19(2):218–21.PubMed
41.
go back to reference Demirag B, Ozturk C, Karakayali M. Symptomatic infrapatellar plica. Knee Surg Sports Traumatol Arthrosc. 2006;14(2):156–60.PubMed Demirag B, Ozturk C, Karakayali M. Symptomatic infrapatellar plica. Knee Surg Sports Traumatol Arthrosc. 2006;14(2):156–60.PubMed
42.
go back to reference Radu A, Discepola F, Volesky M, Munk PL, Le H. Posterior Hoffa’s fat pad impingement secondary to a thickened infrapatellar plica: a case report and review of the literature. J Radiol Case Rep. 2015;9(3):1–7. Radu A, Discepola F, Volesky M, Munk PL, Le H. Posterior Hoffa’s fat pad impingement secondary to a thickened infrapatellar plica: a case report and review of the literature. J Radiol Case Rep. 2015;9(3):1–7.
43.
go back to reference Lapègue F, Sans N, Brun C, Bakouche S, Brucher N, Cambon Z, et al. Imaging of traumatic injury and impingement of anterior knee fat. Diagn Interv Imaging. 2016;97(7–8):789–807.PubMed Lapègue F, Sans N, Brun C, Bakouche S, Brucher N, Cambon Z, et al. Imaging of traumatic injury and impingement of anterior knee fat. Diagn Interv Imaging. 2016;97(7–8):789–807.PubMed
44.
go back to reference Borja MJ, Jose J, Vecchione D, Clifford PD, Lesniak BP. Prefemoral fat pad impingement syndrome: identification and diagnosis. Am J Orthop (Belle Mead NJ). 2013;42(1):E9–11. Borja MJ, Jose J, Vecchione D, Clifford PD, Lesniak BP. Prefemoral fat pad impingement syndrome: identification and diagnosis. Am J Orthop (Belle Mead NJ). 2013;42(1):E9–11.
45.
go back to reference Soder RB, Mizerkowski MD, Petkowicz R, Baldisserotto M. MRI of the knee in asymptomatic adolescent swimmers: a controlled study. Br J Sports Med. 2012;46(4):268–72.PubMed Soder RB, Mizerkowski MD, Petkowicz R, Baldisserotto M. MRI of the knee in asymptomatic adolescent swimmers: a controlled study. Br J Sports Med. 2012;46(4):268–72.PubMed
46.
go back to reference Roth C, Jacobson J, Jamadar D, Caoili E, Morag Y, Housner J. Quadriceps fat pad signal intensity and enlargement on MRI: prevalence and associated findings. Am J Roentgenol. 2004;182(6):1383–7. Roth C, Jacobson J, Jamadar D, Caoili E, Morag Y, Housner J. Quadriceps fat pad signal intensity and enlargement on MRI: prevalence and associated findings. Am J Roentgenol. 2004;182(6):1383–7.
47.
go back to reference Shabshin N, Schweitzer ME, Morrison WB. Quadriceps fat pad edema: significance on magnetic resonance images of the knee. Skelet Radiol. 2006;35(5):269–74. Shabshin N, Schweitzer ME, Morrison WB. Quadriceps fat pad edema: significance on magnetic resonance images of the knee. Skelet Radiol. 2006;35(5):269–74.
48.
go back to reference Wang J, Han W, Wang X, Pan F, Liu Z, Halliday A, et al. Mass effect and signal intensity alteration in the suprapatellar fat pad: associations with knee symptoms and structure. Osteoarthr Cartil. 2014;22(10):1619–26. Wang J, Han W, Wang X, Pan F, Liu Z, Halliday A, et al. Mass effect and signal intensity alteration in the suprapatellar fat pad: associations with knee symptoms and structure. Osteoarthr Cartil. 2014;22(10):1619–26.
49.
go back to reference Schwaiger BJ, Mbapte Wamba J, Gersing AS, Nevitt MC, Facchetti L, McCulloch CE, et al. Hyperintense signal alteration in the suprapatellar fat pad on MRI is associated with degeneration of the patellofemoral joint over 48 months: data from the Osteoarthritis Initiative. Skelet Radiol. 2018;47(3):329–39. Schwaiger BJ, Mbapte Wamba J, Gersing AS, Nevitt MC, Facchetti L, McCulloch CE, et al. Hyperintense signal alteration in the suprapatellar fat pad on MRI is associated with degeneration of the patellofemoral joint over 48 months: data from the Osteoarthritis Initiative. Skelet Radiol. 2018;47(3):329–39.
50.
go back to reference Akao M, Ikemoto T, Takata T, Kitamoto K, Deie M. Suprapatellar plica classification and suprapatellar plica syndrome. Asia Pac J Sports Med Arthrosc Rehabil Technol. 2019;17:10–5.PubMedPubMedCentral Akao M, Ikemoto T, Takata T, Kitamoto K, Deie M. Suprapatellar plica classification and suprapatellar plica syndrome. Asia Pac J Sports Med Arthrosc Rehabil Technol. 2019;17:10–5.PubMedPubMedCentral
51.
go back to reference Dandy DJ. Anatomy of the medial suprapatellar plica and medial synovial shelf. Arthroscopy. 1990;6(2):79–85.PubMed Dandy DJ. Anatomy of the medial suprapatellar plica and medial synovial shelf. Arthroscopy. 1990;6(2):79–85.PubMed
52.
go back to reference Zidorn T. Classification of the suprapatellar septum considering ontogenetic development. Arthroscopy. 1992;8(4):459–64.PubMed Zidorn T. Classification of the suprapatellar septum considering ontogenetic development. Arthroscopy. 1992;8(4):459–64.PubMed
53.
go back to reference Al-Hadithy N, Gikas P, Mahapatra AM, Dowd G. Review article: plica syndrome of the knee. J Orthop Surg (Hong Kong). 2011;19(3):354–8. Al-Hadithy N, Gikas P, Mahapatra AM, Dowd G. Review article: plica syndrome of the knee. J Orthop Surg (Hong Kong). 2011;19(3):354–8.
54.
go back to reference Bae DK, Nam GU, Sun SD, Kim YH. The clinical significance of the complete type of suprapatellar membrane. Arthroscopy. 1998;14(8):830–5.PubMed Bae DK, Nam GU, Sun SD, Kim YH. The clinical significance of the complete type of suprapatellar membrane. Arthroscopy. 1998;14(8):830–5.PubMed
55.
go back to reference Kim SJ, Shin SJ, Koo TY. Arch type pathologic suprapatellar plica. Arthroscopy. 2001;17(5):536–8.PubMed Kim SJ, Shin SJ, Koo TY. Arch type pathologic suprapatellar plica. Arthroscopy. 2001;17(5):536–8.PubMed
56.
go back to reference Klontzas ME, Akoumianakis ID, Vagios I, Karantanas AH. MR imaging findings of medial tibial crest friction. Eur J Radiol. 2013;82(11):e703–6.PubMed Klontzas ME, Akoumianakis ID, Vagios I, Karantanas AH. MR imaging findings of medial tibial crest friction. Eur J Radiol. 2013;82(11):e703–6.PubMed
57.
go back to reference Simeone FJ, Huang AJ, Chang CY, Smith M, Gill TJ, Bredella MA, et al. Posteromedial knee friction syndrome: an entity with medial knee pain and edema between the femoral condyle, sartorius and gracilis. Skelet Radiol. 2015;44(4):557–63. Simeone FJ, Huang AJ, Chang CY, Smith M, Gill TJ, Bredella MA, et al. Posteromedial knee friction syndrome: an entity with medial knee pain and edema between the femoral condyle, sartorius and gracilis. Skelet Radiol. 2015;44(4):557–63.
58.
go back to reference Simeone FJ, Kheterpal A, Chang CY, Palmer WE, Bredella MA, Huang AJ, et al. Ultrasound-guided injection for the diagnosis and treatment of posteromedial knee friction syndrome. Skeletal Radiol. Springer Berlin Heidelberg. 2019;48(4):563–8.PubMed Simeone FJ, Kheterpal A, Chang CY, Palmer WE, Bredella MA, Huang AJ, et al. Ultrasound-guided injection for the diagnosis and treatment of posteromedial knee friction syndrome. Skeletal Radiol. Springer Berlin Heidelberg. 2019;48(4):563–8.PubMed
59.
go back to reference Boles CA, Martin DF. Synovial plicae in the knee. AJR Am Roentgen Ray Soc. 2001;177(1):221–7. Boles CA, Martin DF. Synovial plicae in the knee. AJR Am Roentgen Ray Soc. 2001;177(1):221–7.
60.
go back to reference Kan H, Arai Y, Nakagawa S, Inoue H, Hara K, Minami G, et al. Characteristics of medial plica syndrome complicated with cartilage damage. Int Orthop. 2015;39(12):2489–94.PubMed Kan H, Arai Y, Nakagawa S, Inoue H, Hara K, Minami G, et al. Characteristics of medial plica syndrome complicated with cartilage damage. Int Orthop. 2015;39(12):2489–94.PubMed
61.
go back to reference Liu YW, Skalski MR, Patel DB, White EA, Tomasian A, Matcuk GR. The anterior knee: normal variants, common pathologies, and diagnostic pitfalls on MRI. Skelet Radiol. 2018;47(8):1069–86. Liu YW, Skalski MR, Patel DB, White EA, Tomasian A, Matcuk GR. The anterior knee: normal variants, common pathologies, and diagnostic pitfalls on MRI. Skelet Radiol. 2018;47(8):1069–86.
62.
go back to reference Khan N, McMahon P, Obaid H. Bony morphology of the knee and non-traumatic meniscal tears: is there a role for meniscal impingement? Skelet Radiol. 2014;43(7):955–62. Khan N, McMahon P, Obaid H. Bony morphology of the knee and non-traumatic meniscal tears: is there a role for meniscal impingement? Skelet Radiol. 2014;43(7):955–62.
63.
go back to reference Krych AJ, Wu IT, Desai VS, Kennedy NI, Littrell LA, Collins MS, et al. Osteomeniscal impact edema (OMIE): description of a distinct MRI finding in displaced flap tears of the medial meniscus, with comparison to posterior root tears. J Knee Surg. 2019. Krych AJ, Wu IT, Desai VS, Kennedy NI, Littrell LA, Collins MS, et al. Osteomeniscal impact edema (OMIE): description of a distinct MRI finding in displaced flap tears of the medial meniscus, with comparison to posterior root tears. J Knee Surg. 2019.
65.
go back to reference Herschmiller TA, Anderson JA, Garrett WE, Taylor DC. The trapped medial meniscus tear: an examination maneuver helps predict arthroscopic findings. Orthop J Sports Med. 2015;3(5):2325967115583954.PubMedPubMedCentral Herschmiller TA, Anderson JA, Garrett WE, Taylor DC. The trapped medial meniscus tear: an examination maneuver helps predict arthroscopic findings. Orthop J Sports Med. 2015;3(5):2325967115583954.PubMedPubMedCentral
66.
go back to reference Lecas LK, Helms CA, Kosarek FJ, Garret WE. Inferiorly displaced flap tears of the medial meniscus: MR appearance and clinical significance. Am J Roentgenol. 2000;174(1):161–4. Lecas LK, Helms CA, Kosarek FJ, Garret WE. Inferiorly displaced flap tears of the medial meniscus: MR appearance and clinical significance. Am J Roentgenol. 2000;174(1):161–4.
67.
go back to reference Skaf AY, Hernandez Filho G, Dirim B, Wangwinyuvirat M, Trudell D, Haghigi P, et al. Pericruciate fat pad of the knee: anatomy and pericruciate fat pad inflammation: cadaveric and clinical study emphasizing MR imaging. Skelet Radiol. 2012;41(12):1591–6. Skaf AY, Hernandez Filho G, Dirim B, Wangwinyuvirat M, Trudell D, Haghigi P, et al. Pericruciate fat pad of the knee: anatomy and pericruciate fat pad inflammation: cadaveric and clinical study emphasizing MR imaging. Skelet Radiol. 2012;41(12):1591–6.
68.
go back to reference Huang BK, Campos JC, Michael Peschka PG, Pretterklieber ML, Skaf AY, Chung CB, et al. Injury of the gluteal aponeurotic fascia and proximal iliotibial band: anatomy, pathologic conditions, and MR imaging. RadioGraphics. 2013;33(5):1437–52.PubMed Huang BK, Campos JC, Michael Peschka PG, Pretterklieber ML, Skaf AY, Chung CB, et al. Injury of the gluteal aponeurotic fascia and proximal iliotibial band: anatomy, pathologic conditions, and MR imaging. RadioGraphics. 2013;33(5):1437–52.PubMed
69.
go back to reference Flato R, Passanante GJ, Skalski MR, Patel DB, White EA, Matcuk GR. The iliotibial tract: imaging, anatomy, injuries, and other pathology. Skeletal Radiol. Springer Berlin Heidelberg. 2017;46(5):605–22.PubMed Flato R, Passanante GJ, Skalski MR, Patel DB, White EA, Matcuk GR. The iliotibial tract: imaging, anatomy, injuries, and other pathology. Skeletal Radiol. Springer Berlin Heidelberg. 2017;46(5):605–22.PubMed
70.
go back to reference Muhle C, Ahn JM, Yeh L, Bergman GA, Boutin RD, Schweitzer M, et al. Iliotibial band friction syndrome: MR imaging findings in 16 patients and MR arthrographic study of six cadaveric knees. Radiology. 1999;212(1):103–10.PubMed Muhle C, Ahn JM, Yeh L, Bergman GA, Boutin RD, Schweitzer M, et al. Iliotibial band friction syndrome: MR imaging findings in 16 patients and MR arthrographic study of six cadaveric knees. Radiology. 1999;212(1):103–10.PubMed
71.
go back to reference Fairclough J, Hayashi K, Toumi H, Lyons K, Bydder G, Phillips N, et al. The functional anatomy of the iliotibial band during flexion and extension of the knee: implications for understanding iliotibial band syndrome. J Anatomy. 39 ed. John Wiley & Sons, Ltd (10.1111). 2006;208(3):309–16. Fairclough J, Hayashi K, Toumi H, Lyons K, Bydder G, Phillips N, et al. The functional anatomy of the iliotibial band during flexion and extension of the knee: implications for understanding iliotibial band syndrome. J Anatomy. 39 ed. John Wiley & Sons, Ltd (10.1111). 2006;208(3):309–16.
72.
go back to reference Renne JW. The iliotibial band friction syndrome. J Bone Joint Surg Am. 1975;57(8):1110–1.PubMed Renne JW. The iliotibial band friction syndrome. J Bone Joint Surg Am. 1975;57(8):1110–1.PubMed
73.
go back to reference Orava S. Iliotibial tract friction syndrome in athletes--an uncommon exertion syndrome on the lateral side of the knee. Br J Sports Med. 1978;12(2):69–73.PubMedPubMedCentral Orava S. Iliotibial tract friction syndrome in athletes--an uncommon exertion syndrome on the lateral side of the knee. Br J Sports Med. 1978;12(2):69–73.PubMedPubMedCentral
74.
go back to reference Strauss EJ, Kim S, Calcei JG, Park D. Iliotibial band syndrome: evaluation and management. J Am Acad Orthop Surg. 2011;19(12):728–36.PubMed Strauss EJ, Kim S, Calcei JG, Park D. Iliotibial band syndrome: evaluation and management. J Am Acad Orthop Surg. 2011;19(12):728–36.PubMed
75.
go back to reference Vasilevska V, Szeimies U, Stäbler A. Magnetic resonance imaging signs of iliotibial band friction in patients with isolated medial compartment osteoarthritis of the knee. Skelet Radiol. 2009;38(9):871–5. Vasilevska V, Szeimies U, Stäbler A. Magnetic resonance imaging signs of iliotibial band friction in patients with isolated medial compartment osteoarthritis of the knee. Skelet Radiol. 2009;38(9):871–5.
77.
go back to reference Noble CA. Iliotibial band friction syndrome in runners. Am J Sports Med. SAGE Publications. 1980;8(4):232–4.PubMed Noble CA. Iliotibial band friction syndrome in runners. Am J Sports Med. SAGE Publications. 1980;8(4):232–4.PubMed
78.
go back to reference Mansour R, Yoong P, McKean D, Teh JL. The iliotibial band in acute knee trauma: patterns of injury on MR imaging. Skelet Radiol. 2014;43(10):1369–75. Mansour R, Yoong P, McKean D, Teh JL. The iliotibial band in acute knee trauma: patterns of injury on MR imaging. Skelet Radiol. 2014;43(10):1369–75.
79.
go back to reference Isusi M, Oleaga L, Campo M, Grande D. MRI findings in iliotibial band friction syndrome: a report of two cases. Radiologia. 2007;49(6):433–5.PubMed Isusi M, Oleaga L, Campo M, Grande D. MRI findings in iliotibial band friction syndrome: a report of two cases. Radiologia. 2007;49(6):433–5.PubMed
80.
go back to reference Jadhav SP, More SR, Riascos RF, Lemos DF, Swischuk LE. Comprehensive review of the anatomy, function, and imaging of the popliteus and associated pathologic conditions. RadioGraphics. 2014;34(2):496–513.PubMed Jadhav SP, More SR, Riascos RF, Lemos DF, Swischuk LE. Comprehensive review of the anatomy, function, and imaging of the popliteus and associated pathologic conditions. RadioGraphics. 2014;34(2):496–513.PubMed
81.
go back to reference Gaine WJ, Mohammed A. Osteophyte impingement of the popliteus tendon as a cause of lateral knee joint pain. Knee. 2002;9(3):249–52.PubMed Gaine WJ, Mohammed A. Osteophyte impingement of the popliteus tendon as a cause of lateral knee joint pain. Knee. 2002;9(3):249–52.PubMed
Metadata
Title
Magnetic resonance imaging of impingement and friction syndromes around the knee
Authors
Imran Khan
Tanweer Ashraf
Asif Saifuddin
Publication date
01-06-2020
Publisher
Springer Berlin Heidelberg
Published in
Skeletal Radiology / Issue 6/2020
Print ISSN: 0364-2348
Electronic ISSN: 1432-2161
DOI
https://doi.org/10.1007/s00256-020-03379-y

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