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Erschienen in: Skeletal Radiology 4/2021

24.09.2020 | Scientific Article

Measurement of tibial tuberosity—trochlear groove distance by MRI: assessment and correction of knee positioning errors

verfasst von: Niels Egund, Nikolaj Skou, Bjarke Jacobsen, Anne Grethe Jurik

Erschienen in: Skeletal Radiology | Ausgabe 4/2021

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Abstract

Objective

The tibial tuberosity-trochlear groove (TTTG) distance varies with the position of the knee in the MR or CT scanner. We present and assess a simple method for adjustment of adduction or abduction of the knee.

Materials and methods

MRI of the knee encompassing a three-dimensional (3D) sagittal sequence including ≥ 8 cm of the proximal tibia was analyzed (29 females, 17 males; median age 45 years). Using 3D visualization software, the central longitudinal axis of the proximal tibia (TA) was constructed, and the TTTG distance was measured before and after alignment of the TA. Observer reliability was assessed with inter- and intra-class correlation coefficient (ICC) and Bland-Altman plots.

Results

Adduction of the knee occurred in 26 examinations, mean 2.7° (range 0.0° to 9.4°), and abduction in 20 examinations, mean 2.6° (range 0.0° to 7.2°). Following adjustment, the mean TTTG distance increased 2.4 mm (range 0.0 to 6.7 mm) in the knees positioned in adduction and decreased 2.3 mm when in abduction (range 0.0 to 5.5 mm). The correlation coefficient (r2) between the deviation in adduction and abduction and the difference between TTTG unadjusted and adjusted was r2 = 0.96. ICCs were excellent, but limits of agreement were close to ± 3 mm.

Conclusion

Measurement of the TTTG distance by MRI is influenced by a systematic technique-dependent error caused by knee positioning in adduction or abduction. We suggest a simple method for adjusting the positioning.
Literatur
1.
Zurück zum Zitat Dejour H, Walch G, Nove-Josserand L, Guier C. Factors of patellar instability: an anatomic radiographic study. Knee Surg Sports Traumatol Arthrosc. 1994;2(1):19–26.CrossRef Dejour H, Walch G, Nove-Josserand L, Guier C. Factors of patellar instability: an anatomic radiographic study. Knee Surg Sports Traumatol Arthrosc. 1994;2(1):19–26.CrossRef
2.
Zurück zum Zitat Schoettle PB, Zanetti M, Seifert B, Pfirrmann CW, Fucentese SF, Romero J. The tibial tuberosity-trochlear groove distance; a comparative study between CT and MRI scanning. Knee. 2006;13(1):26–31.CrossRef Schoettle PB, Zanetti M, Seifert B, Pfirrmann CW, Fucentese SF, Romero J. The tibial tuberosity-trochlear groove distance; a comparative study between CT and MRI scanning. Knee. 2006;13(1):26–31.CrossRef
3.
Zurück zum Zitat Balcarek P, Ammon J, Frosch S, Walde TA, Schuttrumpf JP, Ferlemann KG, et al. Magnetic resonance imaging characteristics of the medial patellofemoral ligament lesion in acute lateral patellar dislocations considering trochlear dysplasia, patella alta, and tibial tuberosity-trochlear groove distance. Arthroscopy. 2010;26(7):926–35.CrossRef Balcarek P, Ammon J, Frosch S, Walde TA, Schuttrumpf JP, Ferlemann KG, et al. Magnetic resonance imaging characteristics of the medial patellofemoral ligament lesion in acute lateral patellar dislocations considering trochlear dysplasia, patella alta, and tibial tuberosity-trochlear groove distance. Arthroscopy. 2010;26(7):926–35.CrossRef
4.
Zurück zum Zitat Williams AA, Elias JJ, Tanaka MJ, Thawait GK, Demehri S, Carrino JA, et al. The relationship between tibial tuberosity-trochlear groove distance and abnormal patellar tracking in patients with unilateral patellar instability. Arthroscopy. 2016;32(1):55–61.CrossRef Williams AA, Elias JJ, Tanaka MJ, Thawait GK, Demehri S, Carrino JA, et al. The relationship between tibial tuberosity-trochlear groove distance and abnormal patellar tracking in patients with unilateral patellar instability. Arthroscopy. 2016;32(1):55–61.CrossRef
5.
Zurück zum Zitat Goutallier D, Bernageau J, Lecudonnec B. The measurement of the tibial tuberosity. Patella groove distanced technique and results (author's transl). Rev Chir Orthop Reparatrice Appar Mot. 1978;64(5):423–8.PubMed Goutallier D, Bernageau J, Lecudonnec B. The measurement of the tibial tuberosity. Patella groove distanced technique and results (author's transl). Rev Chir Orthop Reparatrice Appar Mot. 1978;64(5):423–8.PubMed
6.
Zurück zum Zitat Brattström H. Shape of the intercondylar groove normally and in recurrent dislocation of patella. Acta OrthopScand. 1964;35(Suppl 68):1–148. Brattström H. Shape of the intercondylar groove normally and in recurrent dislocation of patella. Acta OrthopScand. 1964;35(Suppl 68):1–148.
7.
Zurück zum Zitat Graf KH, Tompkins MA, Agel J, Arendt EA. Q-vector measurements: physical examination versus magnetic resonance imaging measurements and their relationship with tibial tubercle-trochlear groove distance. Knee Surg Sports Traumatol Arthrosc. 2018;26(3):697–704.CrossRef Graf KH, Tompkins MA, Agel J, Arendt EA. Q-vector measurements: physical examination versus magnetic resonance imaging measurements and their relationship with tibial tubercle-trochlear groove distance. Knee Surg Sports Traumatol Arthrosc. 2018;26(3):697–704.CrossRef
8.
Zurück zum Zitat Pandit S, Frampton C, Stoddart J, Lynskey T. Magnetic resonance imaging assessment of tibial tuberosity-trochlear groove distance: normal values for males and females. Int Orthop. 2011;35(12):1799–803.CrossRef Pandit S, Frampton C, Stoddart J, Lynskey T. Magnetic resonance imaging assessment of tibial tuberosity-trochlear groove distance: normal values for males and females. Int Orthop. 2011;35(12):1799–803.CrossRef
9.
Zurück zum Zitat Matsushita T, Kuroda R, Oka S, Matsumoto T, Takayama K, Kurosaka M. Clinical outcomes of medial patellofemoral ligament reconstruction in patients with an increased tibial tuberosity-trochlear groove distance. Knee Surg Sports Traumatol Arthrosc. 2014;22(10):2438–44.CrossRef Matsushita T, Kuroda R, Oka S, Matsumoto T, Takayama K, Kurosaka M. Clinical outcomes of medial patellofemoral ligament reconstruction in patients with an increased tibial tuberosity-trochlear groove distance. Knee Surg Sports Traumatol Arthrosc. 2014;22(10):2438–44.CrossRef
10.
Zurück zum Zitat Arendt EA, Dejour D. Patella instability: building bridges across the ocean a historic review. Knee Surg Sports Traumatol Arthrosc. 2013;21(2):279–93.CrossRef Arendt EA, Dejour D. Patella instability: building bridges across the ocean a historic review. Knee Surg Sports Traumatol Arthrosc. 2013;21(2):279–93.CrossRef
11.
Zurück zum Zitat Koeter S, Diks MJ, Anderson PG, Wymenga AB. A modified tibial tubercle osteotomy for patellar maltracking: results at two years. J Bone Joint Surg (Br). 2007;89(2):180–5.CrossRef Koeter S, Diks MJ, Anderson PG, Wymenga AB. A modified tibial tubercle osteotomy for patellar maltracking: results at two years. J Bone Joint Surg (Br). 2007;89(2):180–5.CrossRef
12.
Zurück zum Zitat Tecklenburg K, Feller JA, Whitehead TS, Webster KE, Elzarka A. Outcome of surgery for recurrent patellar dislocation based on the distance of the tibial tuberosity to the trochlear groove. J Bone Joint Surg (Br). 2010;92(10):1376–80.CrossRef Tecklenburg K, Feller JA, Whitehead TS, Webster KE, Elzarka A. Outcome of surgery for recurrent patellar dislocation based on the distance of the tibial tuberosity to the trochlear groove. J Bone Joint Surg (Br). 2010;92(10):1376–80.CrossRef
13.
Zurück zum Zitat Wilcox JJ, Snow BJ, Aoki SK, Hung M, Burks RT. Does landmark selection affect the reliability of tibial tubercle-trochlear groove measurements using MRI? Clin Orthop Relat Res. 2012;470(8):2253–60.CrossRef Wilcox JJ, Snow BJ, Aoki SK, Hung M, Burks RT. Does landmark selection affect the reliability of tibial tubercle-trochlear groove measurements using MRI? Clin Orthop Relat Res. 2012;470(8):2253–60.CrossRef
14.
Zurück zum Zitat Tensho K, Akaoka Y, Shimodaira H, Takanashi S, Ikegami S, Kato H, et al. What components comprise the measurement of the tibial tuberosity-trochlear groove distance in a patellar dislocation population? J Bone Joint Surg Am. 2015;97(17):1441–8.CrossRef Tensho K, Akaoka Y, Shimodaira H, Takanashi S, Ikegami S, Kato H, et al. What components comprise the measurement of the tibial tuberosity-trochlear groove distance in a patellar dislocation population? J Bone Joint Surg Am. 2015;97(17):1441–8.CrossRef
15.
Zurück zum Zitat Yin L, Chen C, Duan X, Deng B, Xiong R, Wang F, et al. Influence of the image levels of distal femur on the measurement of tibial tubercle-trochlear groove distance--a comparative study. J Orthop Surg Res. 2015;10:174,015-0323-4. Yin L, Chen C, Duan X, Deng B, Xiong R, Wang F, et al. Influence of the image levels of distal femur on the measurement of tibial tubercle-trochlear groove distance--a comparative study. J Orthop Surg Res. 2015;10:174,015-0323-4.
16.
Zurück zum Zitat Smith BW, Millar EA, Jones KC, Elias JJ. Variations in tibial tuberosity to trochlear groove and posterior cruciate ligament distances due to tibial external and valgus rotations. J Knee Surg. 2018;31(6):557–61.CrossRef Smith BW, Millar EA, Jones KC, Elias JJ. Variations in tibial tuberosity to trochlear groove and posterior cruciate ligament distances due to tibial external and valgus rotations. J Knee Surg. 2018;31(6):557–61.CrossRef
17.
Zurück zum Zitat Hochreiter B, Hess S, Moser L, Hirschmann MT, Amsler F, Behrend H. Healthy knees have a highly variable patellofemoral alignment: a systematic review. Knee Surg Sports Traumatol Arthrosc. 2020;28(2):398–406.CrossRef Hochreiter B, Hess S, Moser L, Hirschmann MT, Amsler F, Behrend H. Healthy knees have a highly variable patellofemoral alignment: a systematic review. Knee Surg Sports Traumatol Arthrosc. 2020;28(2):398–406.CrossRef
18.
Zurück zum Zitat Dietrich TJ, Betz M, Pfirrmann CW, Koch PP, Fucentese SF. End-stage extension of the knee and its influence on tibial tuberosity-trochlear groove distance (TTTG) in asymptomatic volunteers. Knee Surg Sports Traumatol Arthrosc. 2014;22(1):214–8.CrossRef Dietrich TJ, Betz M, Pfirrmann CW, Koch PP, Fucentese SF. End-stage extension of the knee and its influence on tibial tuberosity-trochlear groove distance (TTTG) in asymptomatic volunteers. Knee Surg Sports Traumatol Arthrosc. 2014;22(1):214–8.CrossRef
19.
Zurück zum Zitat Camathias C, Pagenstert G, Stutz U, Barg A, Muller-Gerbl M, Nowakowski AM. The effect of knee flexion and rotation on the tibial tuberosity-trochlear groove distance. Knee Surg Sports Traumatol Arthrosc. 2016;24(9):2811–7.CrossRef Camathias C, Pagenstert G, Stutz U, Barg A, Muller-Gerbl M, Nowakowski AM. The effect of knee flexion and rotation on the tibial tuberosity-trochlear groove distance. Knee Surg Sports Traumatol Arthrosc. 2016;24(9):2811–7.CrossRef
20.
Zurück zum Zitat Marquez-Lara A, Andersen J, Lenchik L, Ferguson CM, Gupta P. Variability in patellofemoral alignment measurements on MRI: influence of knee position. AJR Am J Roentgenol. 2017;208(5):1097–102.CrossRef Marquez-Lara A, Andersen J, Lenchik L, Ferguson CM, Gupta P. Variability in patellofemoral alignment measurements on MRI: influence of knee position. AJR Am J Roentgenol. 2017;208(5):1097–102.CrossRef
21.
Zurück zum Zitat Yao L, Gai N, Boutin RD. Axial scan orientation and the tibial tubercle-trochlear groove distance: error analysis and correction. AJR Am J Roentgenol. 2014;202(6):1291–6.CrossRef Yao L, Gai N, Boutin RD. Axial scan orientation and the tibial tubercle-trochlear groove distance: error analysis and correction. AJR Am J Roentgenol. 2014;202(6):1291–6.CrossRef
22.
Zurück zum Zitat Ho CP, James EW, Surowiec RK, Gatlin CC, Ellman MB, Cram TR, et al. Systematic technique-dependent differences in CT versus MRI measurement of the tibial tubercle-trochlear groove distance. Am J Sports Med. 2015;43(3):675–82.CrossRef Ho CP, James EW, Surowiec RK, Gatlin CC, Ellman MB, Cram TR, et al. Systematic technique-dependent differences in CT versus MRI measurement of the tibial tubercle-trochlear groove distance. Am J Sports Med. 2015;43(3):675–82.CrossRef
23.
Zurück zum Zitat Egund N, Palmer J. Femoral anatomy described in cylindrical coordinates using computed tomography. Acta Radiol Diagn (Stockh). 1984;25(3):209–15.CrossRef Egund N, Palmer J. Femoral anatomy described in cylindrical coordinates using computed tomography. Acta Radiol Diagn (Stockh). 1984;25(3):209–15.CrossRef
24.
Zurück zum Zitat Bland JM, Altman DG. Statistical methods for assessing agreement between two methods of clinical measurement. Lancet. 1986;1(8476):307–10.CrossRef Bland JM, Altman DG. Statistical methods for assessing agreement between two methods of clinical measurement. Lancet. 1986;1(8476):307–10.CrossRef
25.
Zurück zum Zitat Shrout PE, Fleiss JL. Intraclass correlations: uses in assessing rater reliability. Psychol Bull. 1979;86(2):420–8.CrossRef Shrout PE, Fleiss JL. Intraclass correlations: uses in assessing rater reliability. Psychol Bull. 1979;86(2):420–8.CrossRef
26.
Zurück zum Zitat Edholm P. Anatomic angles determined from two radiographic projections. Instrument description and measurement techniques. Acta Radiol Diagn (Stockh). 1966;(Suppl 259):1–86. Edholm P. Anatomic angles determined from two radiographic projections. Instrument description and measurement techniques. Acta Radiol Diagn (Stockh). 1966;(Suppl 259):1–86.
27.
Zurück zum Zitat Billing L. Roentgen examination of the proximal femur end in children and adolescents; a standardized technique also suitable for determination of the collum-, anteversion-, and epiphyseal angles; a study of slipped epiphysis and coxa plana. Acta Radiol Suppl. 1954;110:1–80.PubMed Billing L. Roentgen examination of the proximal femur end in children and adolescents; a standardized technique also suitable for determination of the collum-, anteversion-, and epiphyseal angles; a study of slipped epiphysis and coxa plana. Acta Radiol Suppl. 1954;110:1–80.PubMed
28.
Zurück zum Zitat Berryman F, Pynsent P, McBryde C. A semi-automated method for measuring femoral shape to derive version and its comparison with existing methods. Int J Numer Method Biomed Eng. 2014;30(11):1314–25.CrossRef Berryman F, Pynsent P, McBryde C. A semi-automated method for measuring femoral shape to derive version and its comparison with existing methods. Int J Numer Method Biomed Eng. 2014;30(11):1314–25.CrossRef
29.
Zurück zum Zitat Hernandez RJ, Tachdjian MO, Poznanski AK, Dias LS. CT determination of femoral torsion. AJR Am J Roentgenol. 1981;137(1):97–101.CrossRef Hernandez RJ, Tachdjian MO, Poznanski AK, Dias LS. CT determination of femoral torsion. AJR Am J Roentgenol. 1981;137(1):97–101.CrossRef
30.
Zurück zum Zitat Tomczak RJ, Guenther KP, Rieber A, Mergo P, Ros PR, Brambs HJ. MR imaging measurement of the femoral antetorsional angle as a new technique: comparison with CT in children and adults. AJR Am J Roentgenol. 1997;168(3):791–4.CrossRef Tomczak RJ, Guenther KP, Rieber A, Mergo P, Ros PR, Brambs HJ. MR imaging measurement of the femoral antetorsional angle as a new technique: comparison with CT in children and adults. AJR Am J Roentgenol. 1997;168(3):791–4.CrossRef
31.
Zurück zum Zitat Camp CL, Stuart MJ, Krych AJ, Levy BA, Bond JR, Collins MS, et al. CT and MRI measurements of tibial tubercle-trochlear groove distances are not equivalent in patients with patellar instability. Am J Sports Med. 2013;41(8):1835-40. Camp CL, Stuart MJ, Krych AJ, Levy BA, Bond JR, Collins MS, et al. CT and MRI measurements of tibial tubercle-trochlear groove distances are not equivalent in patients with patellar instability. Am J Sports Med. 2013;41(8):1835-40.
32.
Zurück zum Zitat Anley CM, Morris GV, Saithna A, James SL, Snow M. 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. 2015;43(6):1348–53.CrossRef Anley CM, Morris GV, Saithna A, James SL, Snow M. 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. 2015;43(6):1348–53.CrossRef
33.
Zurück zum Zitat Brady JM, Sullivan JP, Nguyen J, Mintz D, Green DW, Strickland S, et al. 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 oatellofemoral instability. Arthroscopy. 2017;33(11):2026–34.PubMed Brady JM, Sullivan JP, Nguyen J, Mintz D, Green DW, Strickland S, et al. 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 oatellofemoral instability. Arthroscopy. 2017;33(11):2026–34.PubMed
34.
Zurück zum Zitat Zhang LK, Wang XM, Niu YZ, Liu HX, Wang F. Relationship between patellar tracking and the "screw-home" mechanism of tibiofemoral joint. Orthop Surg. 2016;8(4):490–5.CrossRef Zhang LK, Wang XM, Niu YZ, Liu HX, Wang F. Relationship between patellar tracking and the "screw-home" mechanism of tibiofemoral joint. Orthop Surg. 2016;8(4):490–5.CrossRef
35.
Zurück zum Zitat Izadpanah K, Weitzel E, Vicari M, Hennig J, Weigel M, Sudkamp NP, et al. Influence of knee flexion angle and weight bearing on the tibial tuberosity-trochlear groove (TTTG) distance for evaluation of patellofemoral alignment. Knee Surg Sports Traumatol Arthrosc. 2014;22(11):2655–61.CrossRef Izadpanah K, Weitzel E, Vicari M, Hennig J, Weigel M, Sudkamp NP, et al. Influence of knee flexion angle and weight bearing on the tibial tuberosity-trochlear groove (TTTG) distance for evaluation of patellofemoral alignment. Knee Surg Sports Traumatol Arthrosc. 2014;22(11):2655–61.CrossRef
36.
Zurück zum Zitat Suomalainen JS, Regalado G, Joukainen A, Kaariainen T, Kononen M, Manninen H, et al. Effects of knee flexion and extension on the tibial tuberosity-trochlear groove (TT-TG) distance in adolescents. J Exp Orthop. 2018;5(1):31,018-0149-1.CrossRef Suomalainen JS, Regalado G, Joukainen A, Kaariainen T, Kononen M, Manninen H, et al. Effects of knee flexion and extension on the tibial tuberosity-trochlear groove (TT-TG) distance in adolescents. J Exp Orthop. 2018;5(1):31,018-0149-1.CrossRef
Metadaten
Titel
Measurement of tibial tuberosity—trochlear groove distance by MRI: assessment and correction of knee positioning errors
verfasst von
Niels Egund
Nikolaj Skou
Bjarke Jacobsen
Anne Grethe Jurik
Publikationsdatum
24.09.2020
Verlag
Springer Berlin Heidelberg
Erschienen in
Skeletal Radiology / Ausgabe 4/2021
Print ISSN: 0364-2348
Elektronische ISSN: 1432-2161
DOI
https://doi.org/10.1007/s00256-020-03605-7

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