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Human Hip Joint Cartilage: MRI Quantitative Thickness and Volume Measurements Discriminating Acetabulum and Femoral Head

机译:人髋关节软骨:区分髋臼和股骨头的MRI定量厚度和体积测量

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摘要

This paper aims at developing a quantitative system for measuring human hip cartilage thickness and volume using magnetic resonance imaging (MRI). A new MRI-acquisition technique, named axial rotation, where the acquisition planes are organized around a virtual axis, was used. The MRI protocol consists of a 2-D multiple-echo data image combination (MEDIC) using water excitation. Inner and outer interface contours of acetabulum and femoral head cartilage are obtained using a semiautomated 3-D segmentation method and combined to form 3-D surfaces. A local spherical coordinate system computed from the original contours enables cartilage thickness and volume computation. An anatomical labeling is performed automatically for thickness and volume measurements in predefined subregions: inferior, anterior, superior, and posterior. A registration module is introduced allowing the assessment of cartilage changes over time. Validation of the system was conducted with three protocols each involving data obtained from nine subjects: 1) registration process accuracy; 2) intrareader reproducibility; and 3) intervisit coefficient of variation. Data showed excellent correlation coefficients for either the intrareader (r ges 0.0942, p < 0.0001) or intervisit (r ges 0.0837, p < 0.005) protocols. This noninvasive system, which enables the quantification of cartilage thickness and volume in the human hip joint using MRI, is the first to discriminate the acetabular and femoral head cartilage throughout the entire hip without the use of an external device, and to implement hip registration for follow-up studies on the same subject.
机译:本文旨在开发一种使用磁共振成像(MRI)测量人髋软骨厚度和体积的定量系统。使用了一种新的MRI采集技术,称为轴向旋转,其中采集平面围绕虚拟轴进行组织。 MRI协议由使用水激励的二维多回波数据图像组合(MEDIC)组成。使用半自动3D分割方法获得髋臼和股骨头软骨的内部和外部界面轮廓,并将其合并以形成3D表面。根据原始轮廓计算出的局部球坐标系可以实现软骨厚度和体积的计算。自动执行解剖标记以在预定的子区域(下,前,上和后)中进行厚度和体积测量。引入了注册模块,可以评估随时间变化的软骨。系统的验证是通过三种方案进行的,每种方案都涉及从九个受试者获得的数据: 2)阅读器内的可复制性; 3)检验变异系数。数据显示,对于内部阅读器(r ges 0.0942,p <0.0001)或Intervisit(r ges 0.0837,p <0.005)方案,其相关系数都非常好。这种无创系统能够使用MRI定量人类髋关节的软骨厚度和体积,是第一个无需使用外部设备就能辨认整个髋关节的髋臼和股骨头软骨,并实现髋关节定位的系统。对同一主题的后续研究。

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