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4D XCAT 体模用于多模态成像研究。

4D XCAT phantom for multimodality imaging research.

机构信息

Department of Radiology, Carl E. Ravin Advanced Imaging Laboratories, Duke University Medical Center, 2424 Erwin Road, Hock Plaza, Suite 302, Durham, North Carolina 27705, USA.

出版信息

Med Phys. 2010 Sep;37(9):4902-15. doi: 10.1118/1.3480985.

Abstract

PURPOSE

The authors develop the 4D extended cardiac-torso (XCAT) phantom for multimodality imaging research.

METHODS

Highly detailed whole-body anatomies for the adult male and female were defined in the XCAT using nonuniform rational B-spline (NURBS) and subdivision surfaces based on segmentation of the Visible Male and Female anatomical datasets from the National Library of Medicine as well as patient datasets. Using the flexibility of these surfaces, the Visible Human anatomies were transformed to match body measurements and organ volumes for a 50th percentile (height and weight) male and female. The desired body measurements for the models were obtained using the PEOPLESIZE program that contains anthropometric dimensions categorized from 1st to the 99th percentile for US adults. The desired organ volumes were determined from ICRP Publication 89 [ICRP, "Basic anatomical and physiological data for use in radiological protection: reference values," ICRP Publication 89 (International Commission on Radiological Protection, New York, NY, 2002)]. The male and female anatomies serve as standard templates upon which anatomical variations may be modeled in the XCAT through user-defined parameters. Parametrized models for the cardiac and respiratory motions were also incorporated into the XCAT based on high-resolution cardiac- and respiratory-gated multislice CT data. To demonstrate the usefulness of the phantom, the authors show example simulation studies in PET, SPECT, and CT using publicly available simulation packages.

RESULTS

As demonstrated in the pilot studies, the 4D XCAT (which includes thousands of anatomical structures) can produce realistic imaging data when combined with accurate models of the imaging process. With the flexibility of the NURBS surface primitives, any number of different anatomies, cardiac or respiratory motions or patterns, and spatial resolutions can be simulated to perform imaging research.

CONCLUSIONS

With the ability to produce realistic, predictive 3D and 4D imaging data from populations of normal and abnormal patients under various imaging parameters, the authors conclude that the XCAT provides an important tool in imaging research to evaluate and improve imaging devices and techniques. In the field of x-ray CT, the phantom may also provide the necessary foundation with which to optimize clinical CT applications in terms of image quality versus radiation dose, an area of research that is becoming more significant with the growing use of CT.

摘要

目的

作者开发了 4D 扩展心脏-体部(XCAT)体模,用于多模态成像研究。

方法

使用非均匀有理 B 样条(NURBS)和细分曲面,根据美国国立卫生研究院的 Visible Male 和 Female 解剖数据集以及患者数据集对成年男性和女性的全身进行了高度详细的定义。基于这些曲面的灵活性,将 Visible Human 解剖结构转换为匹配 50 百分位数(身高和体重)男性和女性的身体测量和器官体积。使用包含按美国成年人从第 1 百分位到第 99 百分位分类的人体测量尺寸的 PEOPLESIZE 程序,获得模型所需的身体测量值。通过 ICRP 出版物 89 [ICRP,“用于放射防护的基本解剖学和生理学数据:参考值”,ICRP 出版物 89(国际放射防护委员会,纽约,NY,2002 年)]确定所需的器官体积。男性和女性解剖结构作为标准模板,可通过用户定义的参数在 XCAT 中对解剖结构进行建模。还根据高分辨率心脏和呼吸门控多层 CT 数据,将心脏和呼吸运动的参数化模型合并到 XCAT 中。为了演示体模的有用性,作者展示了使用公共可用模拟包在 PET、SPECT 和 CT 中的示例模拟研究。

结果

如初步研究所示,当与成像过程的准确模型结合使用时,4D XCAT(包含数千个解剖结构)可以生成逼真的成像数据。通过 NURBS 曲面基元的灵活性,可以模拟任何数量的不同解剖结构、心脏或呼吸运动或模式以及空间分辨率,以进行成像研究。

结论

由于能够根据各种成像参数从正常和异常患者的人群中生成逼真的、可预测的 3D 和 4D 成像数据,作者得出结论,XCAT 为评估和改进成像设备和技术的成像研究提供了重要工具。在 X 射线 CT 领域,该体模还可以为优化临床 CT 应用提供必要的基础,特别是在图像质量与辐射剂量方面,随着 CT 使用量的增加,这一研究领域变得越来越重要。

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