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[骨矿物质含量的定量成像——单次曝光双能减影]

[Quantitative image of bone mineral content--dual energy subtraction in a single exposure].

作者信息

Katoh T

机构信息

Department of Dental Radiology and Radiation Research, Faculty of Dentistry, Tokyo Medical and Dental University.

出版信息

Nihon Igaku Hoshasen Gakkai Zasshi. 1990 Sep 25;50(9):1127-38.

PMID:2247354
Abstract

A dual energy subtraction system was constructed on an experimental basis for the quantitative image of bone mineral content. The system consists of a radiography system and an image processor. Two radiograms were taken with dual x-ray energy in a single exposure using an x-ray beam dichromized by a tin filter. In this system, a film cassette was used where a low speed film-screen system, a copper filter and a high speed film-screen system were layered on top of each other. The images were read by a microdensitometer and processed by a personal computer. The image processing included the corrections of the film characteristics and heterogeneity in the x-ray field, and the dual energy subtraction in which the effect of the high energy component of the dichromized beam on the tube side image was corrected. In order to determine the accuracy of the system, experiments using wedge phantoms made of mixtures of epoxy resin and bone mineral-equivalent materials in various fractions were performed for various tube potentials and film processing conditions. The results indicated that the relative precision of the system was within +/- 4% and that the propagation of the film noise was within +/- 11 mg/cm2 for the 0.2 mm pixels. The results also indicated that the system response was independent of the tube potential and the film processing condition. The bone mineral weight in each phalanx of the freshly dissected hand of a rhesus monkey was measured by this system and compared with the ash weight. The results showed an error of +/- 10%, slightly larger than that of phantom experiments, which is probably due to the effect of fat and the variation of focus-object distance. The air kerma in free air at the object was approximately 0.5 mGy for one exposure. The results indicate that this system is applicable to clinical use and provides useful information for evaluating a time-course of localized bone disease.

摘要

基于实验构建了一个用于骨矿物质含量定量成像的双能减影系统。该系统由一个射线照相系统和一个图像处理器组成。使用由锡滤光片双色化的X射线束在单次曝光中以双X射线能量拍摄两张射线照片。在这个系统中,使用了一个暗盒,其中低速增感屏系统、铜滤光片和高速增感屏系统相互叠加。图像由微密度计读取并由个人计算机处理。图像处理包括胶片特性校正、X射线场中的不均匀性校正以及双能减影,其中校正了双色化束的高能成分对管侧图像的影响。为了确定该系统的准确性,针对各种管电压和胶片处理条件,使用由环氧树脂和骨矿物质等效材料的不同比例混合物制成的楔形体模进行了实验。结果表明,该系统的相对精度在±4%以内,对于0.2毫米像素,胶片噪声的传播在±11毫克/平方厘米以内。结果还表明,系统响应与管电压和胶片处理条件无关。用该系统测量了恒河猴刚解剖的手部每个指骨中的骨矿物质重量,并与灰分重量进行了比较。结果显示误差为±10%,略大于体模实验的误差,这可能是由于脂肪的影响和焦点-物体距离的变化。物体处自由空气中的空气比释动能一次曝光约为0.5毫戈瑞。结果表明,该系统适用于临床应用,为评估局部骨病的病程提供了有用信息。

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