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Published in: Knee Surgery, Sports Traumatology, Arthroscopy 2/2020

01-02-2020 | KNEE

Healthy knees have a highly variable patellofemoral alignment: a systematic review

Authors: Bettina Hochreiter, Silvan Hess, Lukas Moser, Michael T. Hirschmann, Felix Amsler, Henrik Behrend

Published in: Knee Surgery, Sports Traumatology, Arthroscopy | Issue 2/2020

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Abstract

Purpose

There is still lack of knowledge regarding the variability of patellofemoral alignment in healthy, non-osteoarthritic knees, without patellofemoral instability. Therefore, a systematic review of the existing literature was performed to evaluate the variability of patellofemoral alignment.

Methods

Patellofemoral alignment of the knee was defined by the following parameters: sulcus angle (SA), femoral trochlear depth (FTD), patellar tilt angle (PTA), lateral patellofemoral angle (LPFA), lateral femoral trochlear inclination (LFTI) and tibial tubercle–trochlear groove distance (TT–TG). The electronic databases MEDLINE and EMBASE were searched from database inception to search date (January 11, 2019) and screened for relevant studies. The PRISMA guidelines were followed. Articles reporting PF alignment measurements of healthy knees in patients between 15 years and 47 years were included.

Results

A total of 15 studies met the inclusion criteria. The studies reported mean values and standard deviations for the SA between 118.7° ± 7 and 168°; for the FTD between 3.4 mm ± 1.1 and 7.1 mm ± 1.8; for the PTA between 0.7° ± 4.99 and 17.05° ± 4.3; for the LPFA between 6.26° ± 4.1 and 11.1° ± 4.0; for the LFTI between 16.3° ± 2.8 and 22.1° ± 1.9; and for the TT–TG between 9.8 mm ± 4.6 and 17.3 mm ± 5.3.

Conclusion

Patellofemoral alignment in the healthy knee is extremely variable. A more precise knowledge of the complex relationship between the patella and the trochlea may help to better diagnose PF disorders and eventually help in selecting the correct therapy. Furthermore, standardised imaging protocols and measurement techniques for patellofemoral parameters are needed.

Level of evidence

III.
Literature
1.
go back to reference Alemparte J, Ekdahl M, Burnier L, Hernandez R, Cardemil A, Cielo R, Danilla S (2007) Patellofemoral evaluation with radiographs and computed tomography scans in 60 knees of asymptomatic subjects. Arthroscopy 23:170–177CrossRef Alemparte J, Ekdahl M, Burnier L, Hernandez R, Cardemil A, Cielo R, Danilla S (2007) Patellofemoral evaluation with radiographs and computed tomography scans in 60 knees of asymptomatic subjects. Arthroscopy 23:170–177CrossRef
2.
go back to reference Brady JM, Sullivan JP, Nguyen J, Mintz D, Green DW, Strickland S, Shubin Stein BE (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. Arthroscopy 33:2026–2034PubMed Brady JM, Sullivan JP, Nguyen J, Mintz D, Green DW, Strickland S, Shubin Stein BE (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. Arthroscopy 33:2026–2034PubMed
3.
go back to reference Carrillon Y, Abidi H, Dejour D, Fantino O, Moyen B, Tran-Minh VA (2000) Patellar instability: assessment on MR images by measuring the lateral trochlear inclination-initial experience. Radiology 216:582–585CrossRef Carrillon Y, Abidi H, Dejour D, Fantino O, Moyen B, Tran-Minh VA (2000) Patellar instability: assessment on MR images by measuring the lateral trochlear inclination-initial experience. Radiology 216:582–585CrossRef
4.
go back to reference Charles MD, Haloman S, Chen L, Ward SR, Fithian D, Afra R (2013) Magnetic resonance imaging-based topographical differences between control and recurrent patellofemoral instability patients. Am J Sport Med 41:374–384CrossRef Charles MD, Haloman S, Chen L, Ward SR, Fithian D, Afra R (2013) Magnetic resonance imaging-based topographical differences between control and recurrent patellofemoral instability patients. Am J Sport Med 41:374–384CrossRef
5.
go back to reference Esfandiarpour F, Lebrun CM, Dhillon S, Boulanger P (2018) In-vivo patellar tracking in individuals with patellofemoral pain and healthy individuals. J Orthop Res 36:2193–2201CrossRef Esfandiarpour F, Lebrun CM, Dhillon S, Boulanger P (2018) In-vivo patellar tracking in individuals with patellofemoral pain and healthy individuals. J Orthop Res 36:2193–2201CrossRef
6.
go back to reference Gürsoy M, Mete BD, Oyar O, Erdoğan N, Uluç ME, Bulut T, Gürsoy S (2018) The association of patellar maltracking with infrapatellar fat pad edema and chondromalacia patella: a quantitative morphological magnetic resonance imaging analysis. Turk J Phys Med Rehab 64:246–252CrossRef Gürsoy M, Mete BD, Oyar O, Erdoğan N, Uluç ME, Bulut T, Gürsoy S (2018) The association of patellar maltracking with infrapatellar fat pad edema and chondromalacia patella: a quantitative morphological magnetic resonance imaging analysis. Turk J Phys Med Rehab 64:246–252CrossRef
7.
go back to reference Van Haver A, De Roo K, De Beule M, Van Cauter S, Audenaert E, Claessens T, Verdonk P (2014) Semi-automated landmark-based 3D analysis reveals new morphometric characteristics in the trochlear dysplastic femur. Knee Surg Sport Traumatol Arthrosc 22:2698–2708CrossRef Van Haver A, De Roo K, De Beule M, Van Cauter S, Audenaert E, Claessens T, Verdonk P (2014) Semi-automated landmark-based 3D analysis reveals new morphometric characteristics in the trochlear dysplastic femur. Knee Surg Sport Traumatol Arthrosc 22:2698–2708CrossRef
8.
go back to reference Hirschmann A, Buck FM, Fucentese SF, Pfirrmann CW (2015) Upright CT of the knee: the effect of weight-bearing on joint alignment. Eur Radiol 25:3398–3404CrossRef Hirschmann A, Buck FM, Fucentese SF, Pfirrmann CW (2015) Upright CT of the knee: the effect of weight-bearing on joint alignment. Eur Radiol 25:3398–3404CrossRef
9.
go back to reference Hirschmann A, Buck FM, Herschel R, Pfirrmann CW, Fucentese SF (2017) Upright weight-bearing CT of the knee during flexion: changes of the patellofemoral and tibiofemoral articulations between 0° and 120°. Knee Surg Sport Traumatol Arthrosc 25:853–862CrossRef Hirschmann A, Buck FM, Herschel R, Pfirrmann CW, Fucentese SF (2017) Upright weight-bearing CT of the knee during flexion: changes of the patellofemoral and tibiofemoral articulations between 0° and 120°. Knee Surg Sport Traumatol Arthrosc 25:853–862CrossRef
10.
go back to reference Hirschmann MT, Konala P, Amsler F, Iranpour F, Friederich NF, Cobb JP (2011) The position and orientation of total knee replacement components: a comparison of conventional radiographs, transverse 2D-CT slices and 3D-CT reconstruction. J Bone Joint Surg 93:629–633CrossRef Hirschmann MT, Konala P, Amsler F, Iranpour F, Friederich NF, Cobb JP (2011) The position and orientation of total knee replacement components: a comparison of conventional radiographs, transverse 2D-CT slices and 3D-CT reconstruction. J Bone Joint Surg 93:629–633CrossRef
12.
go back to reference Kim TH, Sobti A, Lee SH, Lee JS, Oh KJ (2014) The effects of weight-bearing conditions on patellofemoral indices in individuals without and with patellofemoral pain syndrome. Skelet Radiol 43:157–164CrossRef Kim TH, Sobti A, Lee SH, Lee JS, Oh KJ (2014) The effects of weight-bearing conditions on patellofemoral indices in individuals without and with patellofemoral pain syndrome. Skelet Radiol 43:157–164CrossRef
13.
go back to reference Koskinen SK, Taimela S, Nelimarkka O, Komu M, Ph D, Kujala UM (1993) Magnetic resonance imaging of patellofemoral relationships. Skelet Radiol 22:403–410CrossRef Koskinen SK, Taimela S, Nelimarkka O, Komu M, Ph D, Kujala UM (1993) Magnetic resonance imaging of patellofemoral relationships. Skelet Radiol 22:403–410CrossRef
14.
go back to reference Macri EM, Stefanik JJ, Khan KK, Crossley KM (2016) Is tibiofemoral or patellofemoral alignment or trochlear morphology associated with patellofemoral osteoarthritis? A systematic review. Arthritis Care Res 68:1453–1470CrossRef Macri EM, Stefanik JJ, Khan KK, Crossley KM (2016) Is tibiofemoral or patellofemoral alignment or trochlear morphology associated with patellofemoral osteoarthritis? A systematic review. Arthritis Care Res 68:1453–1470CrossRef
15.
go back to reference Marquez-Lara A, Andersen J, Lenchik L, Ferguson CM, Gupta P (2017) Variability in patellofemoral alignment measurements on MRI: influence of knee position. AJR 208:1097–1102CrossRef Marquez-Lara A, Andersen J, Lenchik L, Ferguson CM, Gupta P (2017) Variability in patellofemoral alignment measurements on MRI: influence of knee position. AJR 208:1097–1102CrossRef
16.
go back to reference Mehl J, Feucht MJ, Bode G, Dovi-Akue D, Südkamp NP, Niemeyer P (2016) Association between patellar cartilage defects and patellofemoral geometry: a matched-pair MRI comparison of patients with and without isolated patellar cartilage defects. Knee Surg Sport Traumatol Arthrosc 24:838–846CrossRef Mehl J, Feucht MJ, Bode G, Dovi-Akue D, Südkamp NP, Niemeyer P (2016) Association between patellar cartilage defects and patellofemoral geometry: a matched-pair MRI comparison of patients with and without isolated patellar cartilage defects. Knee Surg Sport Traumatol Arthrosc 24:838–846CrossRef
17.
go back to reference Nicolaas L, Tigchelaar S, Koëter S (2011) Patellofemoral evaluation with magnetic resonance imaging in 51 knees of asymptomatic subjects. Knee Surg Sport Traumatol Arthrosc 19:1735–1739CrossRef Nicolaas L, Tigchelaar S, Koëter S (2011) Patellofemoral evaluation with magnetic resonance imaging in 51 knees of asymptomatic subjects. Knee Surg Sport Traumatol Arthrosc 19:1735–1739CrossRef
18.
go back to reference Prakash J, Seon JK, Woo SH, Jin C, Song EK (2016) Comparison of radiological parameters between normal and patellar dislocation groups in korean population: a rotational profile CT-based study. Knee Surg Rel Res 28:302–311CrossRef Prakash J, Seon JK, Woo SH, Jin C, Song EK (2016) Comparison of radiological parameters between normal and patellar dislocation groups in korean population: a rotational profile CT-based study. Knee Surg Rel Res 28:302–311CrossRef
19.
go back to reference Sebro R, Weintraub S (2017) Knee morphometric and alignment measurements with MR imaging in young adults with central cartilage lesions of the patella and trochlea. Diagn Interv Imaging 98:429–440CrossRef Sebro R, Weintraub S (2017) Knee morphometric and alignment measurements with MR imaging in young adults with central cartilage lesions of the patella and trochlea. Diagn Interv Imaging 98:429–440CrossRef
20.
go back to reference Seitlinger G, Scheurecker G, Högler R, Labey L, Innocenti B, Hofmann S (2014) The position of the tibia tubercle in 0°–90° flexion: comparing patients with patella dislocation to healthy volunteers. Knee Surg Sport Traumatol Arthrosc 22:2396–2400CrossRef Seitlinger G, Scheurecker G, Högler R, Labey L, Innocenti B, Hofmann S (2014) The position of the tibia tubercle in 0°–90° flexion: comparing patients with patella dislocation to healthy volunteers. Knee Surg Sport Traumatol Arthrosc 22:2396–2400CrossRef
21.
go back to reference Shibanuma N, Sheehan FT, Stanhope SJ (2005) Limb positioning is critical for defining patellofemoral alignment and femoral shape. Clin Orthop Relat Res 434:198–206CrossRef Shibanuma N, Sheehan FT, Stanhope SJ (2005) Limb positioning is critical for defining patellofemoral alignment and femoral shape. Clin Orthop Relat Res 434:198–206CrossRef
22.
go back to reference Stephen JM, Lumpaopong P, Dodds AL, Williams A, Amis AA (2015) The effect of tibial tuberosity medialization and lateralization on patellofemoral joint kinematics, contact mechanics, and stability. Am J Sport Med 43:186–194CrossRef Stephen JM, Lumpaopong P, Dodds AL, Williams A, Amis AA (2015) The effect of tibial tuberosity medialization and lateralization on patellofemoral joint kinematics, contact mechanics, and stability. Am J Sport Med 43:186–194CrossRef
23.
go back to reference Tsakoniti AE, Mandalidis DG, Athanasopoulos SI, Stoupis CA (2011) Effect of Q-angle on patellar positioning and thickness of knee articular cartilages. Surg Radiol Anat 33:97–104CrossRef Tsakoniti AE, Mandalidis DG, Athanasopoulos SI, Stoupis CA (2011) Effect of Q-angle on patellar positioning and thickness of knee articular cartilages. Surg Radiol Anat 33:97–104CrossRef
24.
go back to reference Yamada Y, Toritsuka Y, Nakamura N, Horibe S, Sugamoto K, Yoshikawa H, Shino K (2017) Correlation of 3D shift and 3D tilt of the patella in patients with recurrent dislocation of the patella and healthy volunteers: an in vivo analysis based on 3-dimensional computer models. Am J Sports Med 45:3111–3118CrossRef Yamada Y, Toritsuka Y, Nakamura N, Horibe S, Sugamoto K, Yoshikawa H, Shino K (2017) Correlation of 3D shift and 3D tilt of the patella in patients with recurrent dislocation of the patella and healthy volunteers: an in vivo analysis based on 3-dimensional computer models. Am J Sports Med 45:3111–3118CrossRef
Metadata
Title
Healthy knees have a highly variable patellofemoral alignment: a systematic review
Authors
Bettina Hochreiter
Silvan Hess
Lukas Moser
Michael T. Hirschmann
Felix Amsler
Henrik Behrend
Publication date
01-02-2020
Publisher
Springer Berlin Heidelberg
Published in
Knee Surgery, Sports Traumatology, Arthroscopy / Issue 2/2020
Print ISSN: 0942-2056
Electronic ISSN: 1433-7347
DOI
https://doi.org/10.1007/s00167-019-05587-z

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