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Published in: Knee Surgery, Sports Traumatology, Arthroscopy 10/2017

01-10-2017 | Knee

Why are bone and soft tissue measurements of the TT-TG distance on MRI different in patients with patellar instability?

Authors: Betina B. Hinckel, Riccardo G. Gobbi, Eduardo N. Kihara Filho, Marco K. Demange, José Ricardo Pécora, Marcelo B. Rodrigues, Gilberto Luis Camanho

Published in: Knee Surgery, Sports Traumatology, Arthroscopy | Issue 10/2017

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Abstract

Purpose

To determine whether the tibial tuberosity-to-trochlear groove distance (TT-TG) and patellar tendon-to-trochlear groove distance (PT-TG) are equal, whether the bony and cartilaginous points coincide in the trochlea, and whether the insertion of the PT coincides with the most anterior point of the TT in patients with patellar instability.

Methods

Fifty-three MRI scans of patients with patellar instability were examined. TT-TG and PT-TG were measured by three examiners in 31 knees. Additionally, the bone–cartilage distance in the trochlea [trochlear cartilage to trochlear bone (TC-TB)] and the distance between the mid-point of the PT insertion and the most anterior point of the TT (PT-TT) were measured by one examiner. The intraclass correlation coefficient was used to evaluate the reliability of the measurements between the three examiners. The relationships between the measurements were determined, the means of the measurements were calculated, and the correlations between PT-TG and TT-TG, PT-TT, and TC-TB were assessed.

Results

The ICC was above 0.8. PT-TG was 3.7 mm greater than TT-TG. The TC and TB coincided in 73 % of cases, and the mean TC-TB was 0.3 mm. The PT was lateral to the TT in 94 % of the cases, and the mean PT-TT was 3.4 mm. The Pearson’s correlation coefficients between PT-TG and TT-TG, PT-TT, and TC-TB were 0.946, 0.679, and 0.199, respectively.

Conclusion

TT-TG underestimated PT-TG, primarily due to the lateralization of the PT insertion relative to the most anterior point of the TT. Clinical relevance: our study shows that in patients with patellar instability, there are differences in the absolute values of TT-TG and PT-TG, as previously reported for patients without patellar instability. Hence, normal cut-off values based on case–control studies of TT-TG cannot be equivalently used when measuring PT-TG to indicate TT medialization in patients with patellar instability. It is also important to note that the clinical outcomes cannot be directly compared between patients evaluated using TT-TG versus PT-TG measurements.

Level of evidence

III.
Literature
1.
go back to reference Amis AA (2007) Current concepts on anatomy and biomechanics of patellar stability. Sports Med Arthrosc 15:48–56CrossRefPubMed Amis AA (2007) Current concepts on anatomy and biomechanics of patellar stability. Sports Med Arthrosc 15:48–56CrossRefPubMed
2.
go back to reference Arendt EA, Dejour D (2013) Patella instability: building bridges across the ocean a historic review. Knee Surg Sports Traumatol Arthrosc 21:279–293CrossRefPubMed Arendt EA, Dejour D (2013) Patella instability: building bridges across the ocean a historic review. Knee Surg Sports Traumatol Arthrosc 21:279–293CrossRefPubMed
3.
go back to reference Balcarek P, Jung K, Frosch KH, Sturmer KM (2011) Value of the tibial tuberosity-trochlear groove distance in patellar instability in the young athlete. Am J Sports Med 39:1756–1761CrossRefPubMed Balcarek P, Jung K, Frosch KH, Sturmer KM (2011) Value of the tibial tuberosity-trochlear groove distance in patellar instability in the young athlete. Am J Sports Med 39:1756–1761CrossRefPubMed
4.
go back to reference Balcarek P, Walde TA, Frosch S, Schuttrumpf JP, Wachowski MM, Sturmer KM, Frosch KH (2011) Patellar dislocations in children, adolescents and adults: a comparative MRI study of medial patellofemoral ligament injury patterns and trochlear groove anatomy. Eur J Radiol 79:415–420CrossRefPubMed Balcarek P, Walde TA, Frosch S, Schuttrumpf JP, Wachowski MM, Sturmer KM, Frosch KH (2011) Patellar dislocations in children, adolescents and adults: a comparative MRI study of medial patellofemoral ligament injury patterns and trochlear groove anatomy. Eur J Radiol 79:415–420CrossRefPubMed
5.
go back to reference Beaconsfield T, Pintore E, Maffulli N, Petri GJ (1994) Radiological measurements in patellofemoral disorders. A review. Clin Orthop Relat Res 308:18–28 Beaconsfield T, Pintore E, Maffulli N, Petri GJ (1994) Radiological measurements in patellofemoral disorders. A review. Clin Orthop Relat Res 308:18–28
6.
go back to reference Biyani R, Elias JJ, Saranathan A, Feng H, Guseila LM, Morscher MA, Jones KC (2014) Anatomical factors influencing patellar tracking in the unstable patellofemoral joint. Knee Surg Sports Traumatol Arthrosc 22:2334–2341CrossRefPubMed Biyani R, Elias JJ, Saranathan A, Feng H, Guseila LM, Morscher MA, Jones KC (2014) Anatomical factors influencing patellar tracking in the unstable patellofemoral joint. Knee Surg Sports Traumatol Arthrosc 22:2334–2341CrossRefPubMed
7.
go back to reference Brown DE, Alexander AH, Lichtman DM (1984) The Elmslie-Trillat procedure: evaluation in patellar dislocation and subluxation. Am J Sports Med 12:104–109CrossRefPubMed Brown DE, Alexander AH, Lichtman DM (1984) The Elmslie-Trillat procedure: evaluation in patellar dislocation and subluxation. Am J Sports Med 12:104–109CrossRefPubMed
8.
go back to reference Camp CL, Heidenreich MJ, Dahm DL, Stuart MJ, Levy BA, Krych AJ (2016) Individualizing the tibial tubercle-trochlear groove distance: patellar instability ratios that predict recurrent instability. Am J Sports Med 44:393–399CrossRefPubMed Camp CL, Heidenreich MJ, Dahm DL, Stuart MJ, Levy BA, Krych AJ (2016) Individualizing the tibial tubercle-trochlear groove distance: patellar instability ratios that predict recurrent instability. Am J Sports Med 44:393–399CrossRefPubMed
9.
go back to reference Camp CL, Stuart MJ, Krych AJ, Levy BA, Bond JR, Collins MS, Dahm DL (2013) CT and MRI measurements of tibial tubercle-trochlear groove distances are not equivalent in patients with patellar instability. Am J Sports Med 41:1835–1840CrossRefPubMed Camp CL, Stuart MJ, Krych AJ, Levy BA, Bond JR, Collins MS, Dahm DL (2013) CT and MRI measurements of tibial tubercle-trochlear groove distances are not equivalent in patients with patellar instability. Am J Sports Med 41:1835–1840CrossRefPubMed
10.
go back to reference Cooke TD, Price N, Fisher B, Hedden D (1990) The inwardly pointing knee. An unrecognized problem of external rotational malalignment. Clin Orthop Relat Res 260:56–60 Cooke TD, Price N, Fisher B, Hedden D (1990) The inwardly pointing knee. An unrecognized problem of external rotational malalignment. Clin Orthop Relat Res 260:56–60
12.
go back to reference Dejour D, Le Coultre B (2007) Osteotomies in patello-femoral instabilities. Sports Med Arthrosc 15:39–46CrossRefPubMed Dejour D, Le Coultre B (2007) Osteotomies in patello-femoral instabilities. Sports Med Arthrosc 15:39–46CrossRefPubMed
13.
go back to reference Dejour H, Walch G, Nove-Josserand L, Guier C (1994) Factors of patellar instability: an anatomic radiographic study. Knee Surg Sports Traumatol Arthrosc 2:19–26CrossRefPubMed Dejour H, Walch G, Nove-Josserand L, Guier C (1994) Factors of patellar instability: an anatomic radiographic study. Knee Surg Sports Traumatol Arthrosc 2:19–26CrossRefPubMed
14.
go back to reference Farr J, Covell DJ, Lattermann C (2012) Cartilage lesions in patellofemoral dislocations: incidents/locations/when to treat. Sports Med Arthrosc 20:181–186CrossRefPubMedPubMedCentral Farr J, Covell DJ, Lattermann C (2012) Cartilage lesions in patellofemoral dislocations: incidents/locations/when to treat. Sports Med Arthrosc 20:181–186CrossRefPubMedPubMedCentral
15.
go back to reference Fithian DC, Paxton EW, Stone ML, Silva P, Davis DK, Elias DA, White LM (2004) Epidemiology and natural history of acute patellar dislocation. Am J Sports Med 32:1114–1121CrossRefPubMed Fithian DC, Paxton EW, Stone ML, Silva P, Davis DK, Elias DA, White LM (2004) Epidemiology and natural history of acute patellar dislocation. Am J Sports Med 32:1114–1121CrossRefPubMed
16.
go back to reference Fulkerson JP (1983) Anteromedialization of the tibial tuberosity for patellofemoral malalignment. Clin Orthop Relat Res 177:176–181 Fulkerson JP (1983) Anteromedialization of the tibial tuberosity for patellofemoral malalignment. Clin Orthop Relat Res 177:176–181
17.
go back to reference Guerrero P, Li X, Patel K, Brown M, Busconi B (2009) Medial patellofemoral ligament injury patterns and associated pathology in lateral patella dislocation: an MRI study. BMC Sports Med Arthrosc Rehabil Ther Technol 1:17CrossRef Guerrero P, Li X, Patel K, Brown M, Busconi B (2009) Medial patellofemoral ligament injury patterns and associated pathology in lateral patella dislocation: an MRI study. BMC Sports Med Arthrosc Rehabil Ther Technol 1:17CrossRef
18.
go back to reference Hawkins RJ, Bell RH, Anisette G (1986) Acute patellar dislocations. The natural history. Am J Sports Med 14:117–120CrossRefPubMed Hawkins RJ, Bell RH, Anisette G (1986) Acute patellar dislocations. The natural history. Am J Sports Med 14:117–120CrossRefPubMed
19.
go back to reference Heidenreich MJ, Camp CL, Dahm DL, Stuart MJ, Levy BA, Krych AJ (2015) 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. doi:10.1007/s00167-015-3715-4 PubMed Heidenreich MJ, Camp CL, Dahm DL, Stuart MJ, Levy BA, Krych AJ (2015) 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. doi:10.​1007/​s00167-015-3715-4 PubMed
20.
go back to reference Hinckel BB, Gobbi RG, Filho EN, Pecora JR, Camanho GL, Rodrigues MB, Demange MK (2015) Are the osseous and tendinous-cartilaginous tibial tuberosity-trochlear groove distances the same on CT and MRI? Skeletal Radiol 44:1085–1093CrossRefPubMed Hinckel BB, Gobbi RG, Filho EN, Pecora JR, Camanho GL, Rodrigues MB, Demange MK (2015) Are the osseous and tendinous-cartilaginous tibial tuberosity-trochlear groove distances the same on CT and MRI? Skeletal Radiol 44:1085–1093CrossRefPubMed
21.
go back to reference Hinckel BB, Gobbi RG, Kihara Filho EN, Demange MK, Pécora JR, Camanho GL (2015) Patellar tendon–trochlear groove angle measurement: a new method for patellofemoral rotational analyses. Orthop J Sports Med 3:2325967115601031CrossRefPubMedPubMedCentral Hinckel BB, Gobbi RG, Kihara Filho EN, Demange MK, Pécora JR, Camanho GL (2015) Patellar tendon–trochlear groove angle measurement: a new method for patellofemoral rotational analyses. Orthop J Sports Med 3:2325967115601031CrossRefPubMedPubMedCentral
22.
go back to reference Ho CP, James EW, Surowiec RK, Gatlin CC, Ellman MB, Cram TR, Dornan GJ, LaPrade RF (2015) Systematic technique-dependent differences in CT versus MRI measurement of the tibial tubercle-trochlear groove distance. Am J Sports Med 43:675–682CrossRefPubMed Ho CP, James EW, Surowiec RK, Gatlin CC, Ellman MB, Cram TR, Dornan GJ, LaPrade RF (2015) Systematic technique-dependent differences in CT versus MRI measurement of the tibial tubercle-trochlear groove distance. Am J Sports Med 43:675–682CrossRefPubMed
23.
go back to reference Koeter S, Diks MJ, Anderson PG, Wymenga AB (2007) A modified tibial tubercle osteotomy for patellar maltracking: results at two years. J Bone Joint Surg Br 89:180–185CrossRefPubMed Koeter S, Diks MJ, Anderson PG, Wymenga AB (2007) A modified tibial tubercle osteotomy for patellar maltracking: results at two years. J Bone Joint Surg Br 89:180–185CrossRefPubMed
24.
go back to reference Koeter S, Horstmann WG, Wagenaar FC, Huysse W, Wymenga AB, Anderson PG (2007) A new CT scan method for measuring the tibial tubercle trochlear groove distance in patellar instability. Knee 14:128–132CrossRefPubMed Koeter S, Horstmann WG, Wagenaar FC, Huysse W, Wymenga AB, Anderson PG (2007) A new CT scan method for measuring the tibial tubercle trochlear groove distance in patellar instability. Knee 14:128–132CrossRefPubMed
25.
go back to reference Kohlitz T, Scheffler S, Jung T, Hoburg A, Vollnberg B, Wiener E, Diederichs G (2013) Prevalence and patterns of anatomical risk factors in patients after patellar dislocation: a case control study using MRI. Eur Radiol 23:1067–1074CrossRefPubMed Kohlitz T, Scheffler S, Jung T, Hoburg A, Vollnberg B, Wiener E, Diederichs G (2013) Prevalence and patterns of anatomical risk factors in patients after patellar dislocation: a case control study using MRI. Eur Radiol 23:1067–1074CrossRefPubMed
26.
go back to reference Kuroda R, Kambic H, Valdevit A, Andrish JT (2001) Articular cartilage contact pressure after tibial tuberosity transfer. A cadaveric study. Am J Sports Med 29:403–409CrossRefPubMed Kuroda R, Kambic H, Valdevit A, Andrish JT (2001) Articular cartilage contact pressure after tibial tuberosity transfer. A cadaveric study. Am J Sports Med 29:403–409CrossRefPubMed
27.
go back to reference Mani S, Kirkpatrick MS, Saranathan A, Smith LG, Cosgarea AJ, Elias JJ (2011) Tibial tuberosity osteotomy for patellofemoral realignment alters tibiofemoral kinematics. Am J Sports Med 39:1024–1031CrossRefPubMedPubMedCentral Mani S, Kirkpatrick MS, Saranathan A, Smith LG, Cosgarea AJ, Elias JJ (2011) Tibial tuberosity osteotomy for patellofemoral realignment alters tibiofemoral kinematics. Am J Sports Med 39:1024–1031CrossRefPubMedPubMedCentral
28.
go back to reference Pandit S, Frampton C, Stoddart J, Lynskey T (2011) Magnetic resonance imaging assessment of tibial tuberosity-trochlear groove distance: normal values for males and females. Int Orthop 35:1799–1803CrossRefPubMedPubMedCentral Pandit S, Frampton C, Stoddart J, Lynskey T (2011) Magnetic resonance imaging assessment of tibial tuberosity-trochlear groove distance: normal values for males and females. Int Orthop 35:1799–1803CrossRefPubMedPubMedCentral
29.
go back to reference Saudan M, Fritschy D (2000) AT-TG (anterior tuberosity-trochlear groove): interobserver variability in CT measurements in subjects with patellar instability. Rev Chir Orthop Reparatrice Appar Mot 86:250–255PubMed Saudan M, Fritschy D (2000) AT-TG (anterior tuberosity-trochlear groove): interobserver variability in CT measurements in subjects with patellar instability. Rev Chir Orthop Reparatrice Appar Mot 86:250–255PubMed
30.
go back to reference Schoettle PB, Zanetti M, Seifert B, Pfirrmann CW, Fucentese SF, Romero J (2006) The tibial tuberosity-trochlear groove distance; a comparative study between CT and MRI scanning. Knee 13:26–31CrossRefPubMed Schoettle PB, Zanetti M, Seifert B, Pfirrmann CW, Fucentese SF, Romero J (2006) The tibial tuberosity-trochlear groove distance; a comparative study between CT and MRI scanning. Knee 13:26–31CrossRefPubMed
31.
go back to reference Seeley MA, Knesek M, Vanderhave KL (2013) Osteochondral injury after acute patellar dislocation in children and adolescents. J Pediatr Orthop 33:511–518CrossRefPubMed Seeley MA, Knesek M, Vanderhave KL (2013) Osteochondral injury after acute patellar dislocation in children and adolescents. J Pediatr Orthop 33:511–518CrossRefPubMed
32.
go back to reference Seitlinger G, Scheurecker G, Hogler R, Labey L, Innocenti B, Hofmann S (2012) Tibial tubercle-posterior cruciate ligament distance: a new measurement to define the position of the tibial tubercle in patients with patellar dislocation. Am J Sports Med 40:1119–1125CrossRefPubMed Seitlinger G, Scheurecker G, Hogler R, Labey L, Innocenti B, Hofmann S (2012) Tibial tubercle-posterior cruciate ligament distance: a new measurement to define the position of the tibial tubercle in patients with patellar dislocation. Am J Sports Med 40:1119–1125CrossRefPubMed
33.
go back to reference Shih YF, Bull AM, Amis AA (2004) The cartilaginous and osseous geometry of the femoral trochlear groove. Knee Surg Sports Traumatol Arthrosc 12:300–306CrossRefPubMed Shih YF, Bull AM, Amis AA (2004) The cartilaginous and osseous geometry of the femoral trochlear groove. Knee Surg Sports Traumatol Arthrosc 12:300–306CrossRefPubMed
34.
go back to reference Skelley N, Friedman M, McGinnis M, Smith C, Hillen T, Matava M (2015) Inter- and intraobserver reliability in the MRI measurement of the tibial tubercle-trochlear groove distance and trochlea dysplasia. Am J Sports Med 43:873–878CrossRefPubMed Skelley N, Friedman M, McGinnis M, Smith C, Hillen T, Matava M (2015) Inter- and intraobserver reliability in the MRI measurement of the tibial tubercle-trochlear groove distance and trochlea dysplasia. Am J Sports Med 43:873–878CrossRefPubMed
35.
go back to reference Staeubli HU, Bosshard C, Porcellini P, Rauschning W (2002) Magnetic resonance imaging for articular cartilage: cartilage-bone mismatch. Clin Sports Med 21:417–433CrossRefPubMed Staeubli HU, Bosshard C, Porcellini P, Rauschning W (2002) Magnetic resonance imaging for articular cartilage: cartilage-bone mismatch. Clin Sports Med 21:417–433CrossRefPubMed
36.
go back to reference Staubli HU, Durrenmatt U, Porcellini B, Rauschning W (1999) Anatomy and surface geometry of the patellofemoral joint in the axial plane. J Bone Joint Surg Br 81:452–458CrossRefPubMed Staubli HU, Durrenmatt U, Porcellini B, Rauschning W (1999) Anatomy and surface geometry of the patellofemoral joint in the axial plane. J Bone Joint Surg Br 81:452–458CrossRefPubMed
37.
go back to reference Thakkar RS, Del Grande F, Wadhwa V, Chalian M, Andreisek G, Carrino JA, Eng J, Chhabra A (2015) Patellar instability: CT and MRI measurements and their correlation with internal derangement findings. Knee Surg Sports Traumatol Arthrosc. doi:10.1007/s00167-015-3614-8 PubMed Thakkar RS, Del Grande F, Wadhwa V, Chalian M, Andreisek G, Carrino JA, Eng J, Chhabra A (2015) Patellar instability: CT and MRI measurements and their correlation with internal derangement findings. Knee Surg Sports Traumatol Arthrosc. doi:10.​1007/​s00167-015-3614-8 PubMed
38.
go back to reference Wagenaar FC, Koeter S, Anderson PG, Wymenga AB (2007) Conventional radiography cannot replace CT scanning in detecting tibial tubercle lateralisation. Knee 14:51–54CrossRefPubMed Wagenaar FC, Koeter S, Anderson PG, Wymenga AB (2007) Conventional radiography cannot replace CT scanning in detecting tibial tubercle lateralisation. Knee 14:51–54CrossRefPubMed
39.
go back to reference Wagner D, Pfalzer F, Hingelbaum S, Huth J, Mauch F, Bauer G (2013) The influence of risk factors on clinical outcomes following anatomical medial patellofemoral ligament (MPFL) reconstruction using the gracilis tendon. Knee Surg Sports Traumatol Arthrosc 21:318–324CrossRefPubMed Wagner D, Pfalzer F, Hingelbaum S, Huth J, Mauch F, Bauer G (2013) The influence of risk factors on clinical outcomes following anatomical medial patellofemoral ligament (MPFL) reconstruction using the gracilis tendon. Knee Surg Sports Traumatol Arthrosc 21:318–324CrossRefPubMed
40.
go back to reference Wilcox JJ, Snow BJ, Aoki SK, Hung M, Burks RT (2012) Does landmark selection affect the reliability of tibial tubercle-trochlear groove measurements using MRI? Clin Orthop Relat Res 470:2253–2260CrossRefPubMedPubMedCentral Wilcox JJ, Snow BJ, Aoki SK, Hung M, Burks RT (2012) Does landmark selection affect the reliability of tibial tubercle-trochlear groove measurements using MRI? Clin Orthop Relat Res 470:2253–2260CrossRefPubMedPubMedCentral
41.
go back to reference Wittstein JR, Bartlett EC, Easterbrook J, Byrd JC (2006) Magnetic resonance imaging evaluation of patellofemoral malalignment. Arthroscopy 22:643–649CrossRefPubMed Wittstein JR, Bartlett EC, Easterbrook J, Byrd JC (2006) Magnetic resonance imaging evaluation of patellofemoral malalignment. Arthroscopy 22:643–649CrossRefPubMed
Metadata
Title
Why are bone and soft tissue measurements of the TT-TG distance on MRI different in patients with patellar instability?
Authors
Betina B. Hinckel
Riccardo G. Gobbi
Eduardo N. Kihara Filho
Marco K. Demange
José Ricardo Pécora
Marcelo B. Rodrigues
Gilberto Luis Camanho
Publication date
01-10-2017
Publisher
Springer Berlin Heidelberg
Published in
Knee Surgery, Sports Traumatology, Arthroscopy / Issue 10/2017
Print ISSN: 0942-2056
Electronic ISSN: 1433-7347
DOI
https://doi.org/10.1007/s00167-016-4095-0

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