Abstract

BackgroundThere is a high incidence of injury to the lateral ligament of the ankle in daily living and sports activities. The anterior talofibular ligament (ATFL) is the most frequent types of ankle injuries. It is of great clinical significance to achieve intelligent localization and injury evaluation of ATFL due to its vulnerability.MethodsAccording to the specific characteristics of bones in different slices, the key slice was extracted by image segmentation and characteristic analysis. Then, the talus and fibula in the key slice were segmented by distance regularized level set evolution (DRLSE), and the curvature of their contour pixels was calculated to find useful feature points including the neck of talus, the inner edge of fibula, and the outer edge of fibula. ATFL area can be located using these feature points so as to quantify its first-order gray features and second-order texture features. Support vector machine (SVM) was performed for evaluation of ATFL injury.ResultsData were collected retrospectively from 158 patients who underwent MRI, and were divided into normal (68) and tear (90) group. The positioning accuracy and Dice coefficient were used to measure the performance of ATFL localization, and the mean values are 87.7% and 77.1%, respectively, which is helpful for the following feature extraction. SVM gave a good prediction ability with accuracy of 93.8%, sensitivity of 88.9%, specificity of 100%, precision of 100%, and F1 score of 94.2% in the test set.ConclusionExperimental results indicate that the proposed method is reliable in diagnosing ATFL injury. This study may provide a potentially viable method for aided clinical diagnoses of some ligament injury.

Highlights

  • There is a high incidence of injury to the lateral ligament of the ankle in daily living and sports activities

  • PyCharm was used as Integrated Development Environment (IDE), and Python was used as programming language

  • In order to objectively evaluate the performance of anterior talofibular ligament (ATFL) localization, the positioning accuracy (PA) and Dice Similarity Coefficient (DSC) are used as evaluation index [30]

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Summary

Introduction

There is a high incidence of injury to the lateral ligament of the ankle in daily living and sports activities [1, 2]. The. Yan et al BMC Med Imaging (2021) 21:130 images. Yan et al BMC Med Imaging (2021) 21:130 images It requires high clinical experience for doctors, and the diagnosis from different doctors can be controversial. MRI has the advantage of high soft tissue resolution, which can clearly display anatomical details such as ligaments and tendons [8]. It has been routinely applied in the examination of ankle injury [9]. Qualitative evaluation using MRI cannot dynamically evaluate ligaments and provide quantitative morphological features to guide diagnosis, treatment and prognosis

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