BMC Musculoskeletal Disorders (Feb 2023)

High reproducibility of a novel supported anterior drawer test for diagnosing ankle instability

  • Yasutaka Murahashi,
  • Atsushi Teramoto,
  • Katsunori Takahashi,
  • Yohei Okada,
  • Shinichiro Okimura,
  • Rui Imamura,
  • Makoto Kawai,
  • Kota Watanabe,
  • Toshihiko Yamashita

DOI
https://doi.org/10.1186/s12891-023-06246-8
Journal volume & issue
Vol. 24, no. 1
pp. 1 – 8

Abstract

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Abstract Background The manual traditional anterior drawer test (ADT) is essential for deciding the treatment for chronic ankle instability, but it has been shown to have a comparatively low reproducibility and accuracy, especially in less experienced hands. To clarify the inter-examiner reproducibility, we compared the actual distance of anterior translation between junior and senior examiners in ADT. We also evaluated the diagnostic abilities of traditional ADT, and a novel modified ADT (supported ADT). Methods Thirty ankles were included in this study, and ankle instability was defined using stress radiography. All subjects underwent two methods of manual ADT by junior and senior examiners, and ankle instability was judged in a blinded fashion. The anterior drawer distance was calculated from the lengthening measured using a capacitance-type sensor device. Results The degree of anterior translation determined by the junior examiner was significantly lower than that determined by the senior examiner when traditional ADT was performed (3.3 vs. 4.5 mm, P = 0.016), but there was no significant difference in anterior translation between the two examiners when supported ADT was performed (4.6 vs. 4.1 mm, P = 0.168). The inter-examiner reliability of supported ADT was higher than that of traditional ADT. For the junior examiner, the diagnostic accuracy of supported ADT was higher than that of traditional ADT (sensitivity, 0.40 vs. 0.80; specificity, 0.75 vs. 0.80). Conclusion Supported ADT may have the advantage of being a simple manual test of ankle instability with less error between examiners.

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