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最小误差投影排序优化自由呼吸小鼠门控心脏 micro-CT。

Least-error projection sorting to optimize retrospectively gated cardiac micro-CT of free-breathing mice.

机构信息

Robarts Research Institute, London, Ontario, Canada.

出版信息

Med Phys. 2012 Mar;39(3):1452-61. doi: 10.1118/1.3681949.

Abstract

PURPOSE

To develop and characterize a technique for optimizing image quality by eliminating streaking artifacts in retrospectively gated microcomputed tomography (micro-CT) images of mice caused by insufficient and irregular angular sampling.

METHODS

A least-error sorting technique was developed to minimize streak artifacts in retrospectively gated cardiac micro-CT images. To ensure complete filling of projection space, for each angular position, the projection acquired closest to the desired cardiac phase is used to reconstruct a volumetric image. An acrylic slanted-edge phantom undergoing cyclic motion was used to characterize the system's resolution. The phantom was scanned using a volumetric micro-CT scanner equipped with a flat-panel detector mounted on a slip-ring gantry. Projection images of the moving phantom were collected over a period of 60 s using a variety of acquisition protocols with the rotation period of the gantry ranging from 1 to 5 s. The modulation transfer function (MTF) of the reconstructed images was measured for many combinations of acquisition and reconstruction parameters. The use of the least-error technique was also demonstrated in vivo.

RESULTS

The motion blurring introduced into the images at physiologically significant velocities of 6 cm∕s agreed well with predicted values; limiting resolution (frequency at 10% MTF) degraded from 2.5 to 1.0 mm(-1) for a velocity of 6 cm∕s and 5 s∕rotation gantry speed. Faster gantry rotation speeds led to improved temporal resolution but the scanner's data storage and transfer rates and field of view limitations made scanning at gantry speeds faster than 2 s∕rotation impractical.

CONCLUSIONS

The least-error technique effectively eliminates streaking artifact caused by missing views and allows for optimization of image quality in retrospectively gated micro-CT.

摘要

目的

开发并描述一种技术,通过消除因角度采样不足和不规则导致的 retrospectively gated 微计算机断层扫描(micro-CT)图像中的条纹伪影,来优化图像质量。

方法

开发了一种最小误差排序技术,以最小化 retrospectively gated 心脏 micro-CT 图像中的条纹伪影。为了确保投影空间的完全填充,对于每个角度位置,使用最接近所需心脏相位的采集来重建体积图像。使用经过周期性运动的亚克力倾斜边缘幻影来表征系统的分辨率。使用配备安装在滑环龙门架上的平板探测器的容积 micro-CT 扫描仪对幻影进行扫描。使用各种采集协议,在旋转周期为 1 到 5 秒的范围内,对移动幻影的投影图像进行 60 秒的采集。对于许多采集和重建参数组合,测量了重建图像的调制传递函数(MTF)。还在体内证明了最小误差技术的使用。

结果

以生理上有意义的 6cm/s 的速度引入的运动模糊与预测值吻合良好;当速度为 6cm/s 且龙门架转速为 5s/转时,限制分辨率(10%MTF 频率)从 2.5mm^-1 降低到 1.0mm^-1。更快的龙门架旋转速度导致了更好的时间分辨率,但扫描仪的数据存储和传输速率以及视场限制使得在龙门架速度快于 2s/转时进行扫描变得不切实际。

结论

最小误差技术有效地消除了因缺失视图引起的条纹伪影,并允许在 retrospectively gated micro-CT 中优化图像质量。

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