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Real-Time Automated Segmentation and Classification of Calcaneal Fractures in CT Images

机译:CT图像中实时自动分割及Calcaneal Fractures分类

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摘要

Calcaneal fractures often occur because of accidents during exercise or activities. In general, the detection of the calcaneal fracture is still carried out manually through CT image observation, and as a result, there is a lack of precision in the analysis. This paper proposes a computer-aid method for the calcaneal fracture detection to acquire a faster and more detailed observation. First, the anatomical plane orientation of the tarsal bone in the input image is selected to determine the location of the calcaneus. Then, several fragments of the calcaneus image are detected and marked by color segmentation. The Sanders system is used to classify fractures in transverse and coronal images into four types, based on the number of fragments. In sagittal image, fractures are classified into three types based on the involvement of the fracture area. The experimental results show that the proposed method achieves a high precision rate of 86%, with a fast computational performance of 133 frames per second (fps), used to analyze the severity of injury to the calcaneus. The results in the test image are validated based on the assessment and evaluation carried out by the physician on the reference datasets.
机译:由于运动或活动期间发生意外,转化性骨折通常发生。通常,通过CT图像观察仍然手动检测转析骨折,结果,在分析中缺乏精度。本文提出了一种对性裂缝检测的计算机辅助方法,获取更快,更详细的观察。首先,选择输入图像中的塔形骨的解剖面向取向以确定计算器的位置。然后,通过颜色分割检测和标记计算结果图像的若干片段。桑德斯系统用于将横向和冠状图像中的骨折分为四种类型,基于片段的碎片。在矢状图像中,裂缝基于裂缝区域的累积分为三种类型。实验结果表明,该方法的高精度率为86%,每秒133帧(FPS)的快速计算性能为133帧,用于分析对计算造成伤害的严重程度。测试图像中的结果基于由医生在参考数据集上执行的评估和评估进行验证。

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