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May 26, 2026Arthroscopy Techniques0 citationsOpen Access

A Multiplanar Reformatting Technique to Correct for Scanner Misalignment During Computed Tomography Measurement of Tibial Tuberosity‐Trochlear Groove Distance

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LKLucas KimJSJohannes SiebererKGKevin Girardi

Key Points

  • The aim is to improve the accuracy of the tibial tuberosity-trochlear groove distance measurement during computed tomography scans.
  • Described a multiplanar reformatting technique on 2-dimensional CT scans.
  • Developed an altered coordinate system for measuring TT-TG more accurately and efficiently.
  • Focused on addressing misalignment during scanning.
  • Demonstrated improved accuracy of TT-TG measurements with the new technique.
  • Enhanced reproducibility of measurements for scans prone to misalignment.
  • Potential to improve clinical decision-making for patellofemoral instability.

Abstract

Abstract The tibial tuberosity‐trochlear groove distance (TT‐TG) is a commonly used measurement that impacts clinical decision making for patellofemoral instability. When measured using 2‐dimensional axial slices from imaging modalities like computed tomography (CT) scans, it has been shown to be prone to error depending on patient alignment with the scanner's longitudinal axis. In this technique article, we describe a method using multiplanar reformatting on 2‐dimensional CT scans to create an altered coordinate system to measure TT‐TG measurements more accurately and efficiently. This method can drastically impact the accuracy and reproducibility of TT‐TG measurements for misaligned scans and can help ensure that patients are treated appropriately for their individual level of dysplasia.

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Cite This Study

Kim et al. (2026) studied this question.

synapsesocial.com/papers/6a153b00b5d9c58d83e8d3f6https://doi.org/10.1002/atn2.70073
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