Detection of scapholunate interosseous ligament injury using dynamic computed tomography-derived arthrokinematics: A prospective clinical trial

Taylor P. Trentadue, Andrew R. Thoreson, Cesar Lopez, Ryan E. Breighner, Kai Nan An, David R. Holmes, Steven L. Moran, Sanjeev Kakar, Naveen S. Murthy, Shuai Leng, Kristin D. Zhao

Research output: Contribution to journalArticlepeer-review

Abstract

Scapholunate interosseous ligament injuries are a major cause of wrist instability and can be difficult to diagnose radiographically. To improve early diagnosis of scapholunate ligament injuries, we compared injury detection between bilateral routine clinical radiographs, static CT, and dynamic four-dimensional CT (4DCT) during wrist flexion-extension and radioulnar deviation. Participants with unilateral scapholunate ligament injuries were recruited to a prospective clinical trial investigating the diagnostic utility of 4DCT imaging for ligamentous wrist injury. Twenty-one participants underwent arthroscopic surgery to confirm scapholunate ligament injury. Arthrokinematics, defined as distributions of interosseous proximities across radioscaphoid and scapholunate articular surfaces at different positions within the motion cycle, were used as CT-derived biomarkers. Preoperative radiographs, static CT, and extrema of 4DCT were compared between uninjured and injured wrists using Wilcoxon signed rank or Kolmogorov-Smirnov tests. Median interosseous proximities at the scapholunate interval were significantly greater in the injured versus the uninjured wrists at static-neutral and maximum flexion, extension, radial deviation, and ulnar deviation. Mean cumulative distribution functions at the radioscaphoid joint were not significantly different between wrists but were significantly shifted at the scapholunate interval towards increased interosseous proximities in injured versus uninjured wrists in all positions. Median and cumulative distribution scapholunate proximities from static-neutral and 4DCT-derived extrema reflect injury status.

Original languageEnglish (US)
Article number104172
JournalMedical Engineering and Physics
Volume128
DOIs
StatePublished - Jun 2024

Keywords

  • Arthrokinematics
  • Dynamic computed tomography
  • Four-dimensional computed tomography
  • Scapholunate
  • Wrist biomechanics

ASJC Scopus subject areas

  • Biophysics
  • Biomedical Engineering

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