医学
髋臼
髋臼骨折
射线照相术
断裂(地质)
透视图(图形)
放射科
计算机断层摄影术
基石
口腔正畸科
外科
人工智能
计算机科学
视觉艺术
工程类
岩土工程
艺术
作者
Paul S. Potok,K D Hopper,M J Umlauf
出处
期刊:Radiographics
[Radiological Society of North America]
日期:1995-01-01
卷期号:15 (1): 7-23
被引量:40
标识
DOI:10.1148/radiographics.15.1.7899615
摘要
For the patient with a traumatized acetabulum, accurate radiographic diagnosis and classification are the cornerstone of effective clinical care. The classification system of Judet and Letournel has led to improved management of such injuries. However, trauma-related acetabular fractures are often complex, with multiple fragments and secondary fracture lines. Furthermore, the Judet and Letournel system is complicated and easily misunderstood, reflecting the nature of the anatomy itself. Computed tomography (CT) provides information regarding the extent of the fracture and is complementary to radiography for ascertaining the spatial arrangement of fracture fragments. Three-dimensional (3D) reconstruction of CT data can be helpful in understanding the complex fracture patterns. These are divided into two main types: elementary fractures, which consist of injuries to a single structural component, and associated fractures, which are combinations of the elementary types. Three-dimensional CT is especially helpful in gaining perspective on the fracture orientation. Although questions remain as to its clinical application, 3D CT is a useful teaching tool for demonstrating the different types of acetabular fractures.
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