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骨质疏松症中小梁骨结构的成像

Imaging of trabecular bone structure in osteoporosis.

作者信息

Link T M, Majumdar S, Grampp S, Guglielmi G, van Kuijk C, Imhof H, Glueer C, Adams J E

机构信息

Department of Clinical Radiology, University of Muenster, D-48129 Muenster, Germany.

出版信息

Eur Radiol. 1999;9(9):1781-8. doi: 10.1007/s003300050922.

Abstract

Osteoporosis is a metabolic bone disorder that is characterized by reduced bone mass and a deterioration of bone structure which results in an increased fracture risk. Since the disease is preventable, diagnostic techniques are of major importance. Standard techniques determine bone mineral density, whereas some of the newer techniques focus on trabecular structure. This article reviews structure analysis techniques in the diagnosis of osteoporosis. Imaging techniques applied to the assessment of trabecular bone structure include conventional radiography, magnification radiography, high-resolution CT (HRCT) and high-resolution MR imaging (HRMRI). The best results were obtained using high-resolution tomographic techniques. The highest spatial resolutions in vivo were achieved using HRMRI. The most common texture analysis techniques that have been used are morphological parameters (analogous to bone histomorphometry). Fractal dimension, co-occurrence matrices, mathematical filter techniques and autocorrelation functions are more complex techniques. Most of the studies evaluating structure analysis show that texture parameters and bone mineral density both predict bone strength and osteoporotic fractures, and that combining both techniques yields the best results in the diagnosis of osteoporosis.

摘要

骨质疏松症是一种代谢性骨病,其特征是骨量减少和骨结构破坏,从而导致骨折风险增加。由于该疾病是可预防的,诊断技术至关重要。标准技术用于测定骨密度,而一些较新的技术则侧重于小梁结构。本文综述了骨质疏松症诊断中的结构分析技术。应用于小梁骨结构评估的成像技术包括传统放射摄影、放大放射摄影、高分辨率CT(HRCT)和高分辨率磁共振成像(HRMRI)。使用高分辨率断层扫描技术可获得最佳结果。HRMRI在体内实现了最高的空间分辨率。最常用的纹理分析技术是形态学参数(类似于骨组织形态计量学)。分形维数、共生矩阵、数学滤波技术和自相关函数是更复杂的技术。大多数评估结构分析的研究表明,纹理参数和骨密度都能预测骨强度和骨质疏松性骨折,并且将这两种技术结合使用在骨质疏松症诊断中能产生最佳结果。

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