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Updated: May 4, 2026

Using a Knee Arthrometer to Evaluate Tissue-specific Contributions to Knee Flexion Contracture in the Rat
Published on: November 9, 2018
Tibial tuberosity-trochlea groove distance is dependent on flexion angle and intra-articular version in different
Ole Grunenberg1, Lucas K Palma Kries1, Michael J Raschke1
1Department of Trauma, Hand and Reconstructive Surgery University of Muenster Muenster Germany.
Purpose:
The purpose of this study was to compare the tibial tuberosity-trochlea groove distance (TT-TG) and the tibial tuberosity-posterior cruciate distance (TT-PCL) between conventional and rotatory magnetic resonance imaging (MRI). It was hypothesised that the TT-TG varies between the investigated techniques, due to differences in knee flexion angle and intra-articular version. Variations in TT-TG could lead to misdiagnoses and consequently result in inappropriate surgical indications.
Methods:
Twenty-five patients with both a conventional knee MRI and a rotatory MRI (which allows full knee extension) due to recurrent patellar dislocation were included. TT-TG and TT-PCL, knee flexion angle and intra-articular version (external rotation) were determined in each scan. Inter-rater reliability was assessed using the intraclass correlation coefficient (ICC). Between-group differences were assessed using the Wilcoxon matched-pairs signed-rank test. Spearman's correlation coefficient was used to detect correlations between the TT-TG and TT-PCL with flexion angle and intra-articular version.
Results:
The TT-TG was significantly (p < 0.05) higher in rotatory MRI (median: 18.4 mm, interquartile range [IQR]: 7.3 mm), in comparison to conventional MRI (median: 12 mm, IQR: 5.7 mm), while no significant differences were observed for TT-PCL. Knee flexion angle was significantly higher in the conventional MRI (median: 21.4°, IQR: 8.6°) compared to rotatory MRI (median: 3.1°, IQR: 3.4°, p < 0.0001). The intra-articular version was significantly lower in the conventional MRI (median: 2°, IQR: 6.3°) compared to the rotatory MRI (median: 9°, IQR: 7.3°, p < 0.0001). Measurements showed excellent interrater agreement (ICC: 0.87-0.94).
Conclusion:
TT-TG measurements are dependent on flexion angle and intra-articular version, which vary with differing MRI techniques. Extension of the knee with a simultaneous higher intra-articular version in the rotatory MRI technique, suggests increased TT-TG close to extension, due to the screw-home mechanism. This should be considered to avoid misdiagnosis due to the TT-TG.
Level Of Evidence:
Level III.
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