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Quantitative measurement and analysis for detection and treatment planning of developmental dysplasia of the hip

机译:髋关节发育不良检测和治疗计划的定量测量和分析

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Developmental dysplasia of the hip is a congenital hip joint malformation affecting the proximal femurs and acetabulum that are subluxatable, dislocatable, and dislocated. Conventionally, physicians made diagnoses and treatments only based on findings from two-dimensional (2D) images by manually calculating clinic parameters. However, anatomical complexity of the disease and the limitation of current standard procedures make accurate diagnosis quite difficultly. In this study, we developed a system that provides quantitative measurement of 3D clinical indexes based on computed tomography (CT) images. To extract bone structure from surrounding tissues more accurately, the system firstly segments the bone using a knowledge-based fuzzy clustering method, which is formulated by modifying the objective function of the standard fuzzy c-means algorithm with additive adaptation penalty. The second part of the system calculates automatically the clinical indexes, which are extended from 2D to 3D for accurate description of spatial relationship between femurs and acetabulum. To evaluate the system performance, experimental study based on 22 patients with unilateral or bilateral affected hip was performed. The results of 3D acetabulum index (AI) automatically provided by the system were validated by comparison with 2D results measured by surgeons manually. The correlation between the two results was found to be 0.622 (p<0.01).
机译:髋关节的发育不良是一种先天性髋关节畸形,影响近端的股骨和髋臼,其是可变性的,脱臼和错位的。传统上,医生仅通过手动计算临床参数来基于来自二维(2D)图像的发现的诊断和治疗。然而,疾病的解剖学复杂性和当前标准程序的限制很难诊断。在这项研究中,我们开发了一种系统,该系统基于计算的断层扫描(CT)图像提供3D临床指标的定量测量。为了更准确地从周围组织中提取骨骼结构,系统首先使用基于知识的模糊聚类方法分段,该方法通过修改标准模糊C型算法的标准模糊C型算法与添加剂适应惩罚来配制。系统的第二部分自动计算临床指标,该临床指标从2D到3D延伸,以准确描述股骨和髋臼之间的空间关系。为了评估系统性能,基于22例单侧或双侧受影响髋关节患者进行实验研究。通过使用外科医生手动测量的2D结果,验证系统自动提供的3D髋臼指数(AI)的结果。发现两种结果之间的相关性为0.622(P <0.01)。

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