首页> 外文期刊>Osteoporosis international: a journal established as result of cooperation between the European Foundation for Osteoporosis and the National Osteoporosis Foundation of the USA >Image resolution and magnification using a cone beam densitometer: optimizing data acquisition for hip morphometric analysis.
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Image resolution and magnification using a cone beam densitometer: optimizing data acquisition for hip morphometric analysis.

机译:使用锥形束密度计的图像分辨率和放大倍率:针对髋部形态分析优化数据采集。

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摘要

Bone mineral density (BMD) is a primary determinant of hip fracture risk. However, other factors, notably the femoral geometry, can influence hip fracture risk. The purpose of this study was to evaluate the potential of a new cone beam densitometer, the DMS Lexxos, in order to visualise femoral morphometry. Resolution, magnification and distortion were assessed in vitro using a line pair test pattern and a matrix test object. Results were given in comparison with currently available systems: the Hologic Discovery A and the Lunar Prodigy densitometers. The DMS Lexxos image resolution was the same in the longitudinal and transversal directions evaluated between 1.4 and 0.5 line pairs/mm (lps/mm) for an attenuation varying from 25 to 325 mm of Perplex. The longitudinal resolution was evaluated between 0.9 and 0.5 lps/mm with the Hologic Discovery densitometer, and inferior to 0.5 with the Lunar Prodigy; as for transversal resolution, it varied from 0.63 to 0.5 lps/mm and from 0.6 to inferior 0.5 lps/mm, respectively. The image was isotropic without magnification with the GE-Lunar Prodigy, whereas there was only a transversal magnification with the Hologic Discovery device. The magnification was about 1.17% cm(-1 )in the two directions, while increasing the distance of the phantom above the examination table with the Lexxos. This magnification was isotropic without distortion. The magnification could be evaluated from two images taken before and after translation of the C-arm, and a magnification correction could be applied. This method was applied to a phantom and to a human cadaver femoral bone.
机译:骨矿物质密度(BMD)是髋部骨折风险的主要决定因素。但是,其他因素(尤其是股骨的几何形状)也会影响髋部骨折的风险。这项研究的目的是评估新型锥形束密度计DMS Lexxos的潜力,以可视化股骨形态。使用线对测试图案和矩阵测试对象在体外评估分辨率,放大倍率和失真。与目前可用的系统(Hologic Discovery A和Lunar Prodigy密度计)相比,给出了结果。 DMS Lexxos图像分辨率在纵向和横向方向上均相同,衰减范围为Perplex的25至325 mm,在1.4至0.5线对/ mm(lps / mm)之间进行评估。使用Hologic Discovery密度计评估的纵向分辨率在0.9至0.5 lps / mm之间,而使用Lunar Prodigy评估的纵向分辨率低于0.5;至于横向分辨率,则分别从0.63到0.5 lps / mm和从0.6到下0.5 lps / mm。图像是各向同性的,没有使用GE-Lunar Prodigy进行放大,而使用Hologic Discovery装置只有横向放大。在两个方向上的放大倍率约为1.17%cm(-1),同时使用Lexxos增加了体模在检查台上方的距离。该放大率是各向同性的,没有畸变。可以从平移C臂之前和之后拍摄的两个图像评估放大倍率,并且可以应用放大倍率校正。该方法适用于人体模型和人体尸体股骨。

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