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自由呼吸小鼠的快速回顾性门控定量四维(4D)心脏微型计算机断层扫描成像

Fast retrospectively gated quantitative four-dimensional (4D) cardiac micro computed tomography imaging of free-breathing mice.

作者信息

Drangova Maria, Ford Nancy L, Detombe Sarah A, Wheatley Andrew R, Holdsworth David W

机构信息

Imaging Research Laboratories, Robarts Research Institute, London, Ontario, Canada.

出版信息

Invest Radiol. 2007 Feb;42(2):85-94. doi: 10.1097/01.rli.0000251572.56139.a3.

Abstract

OBJECTIVE

We sought to demonstrate retrospectively gated dynamic 3D cardiac micro computed tomography (CT) of free-breathing mice.

MATERIALS AND METHODS

Five C57Bl6 mice were scanned using a cone-beam scanner with a slip-ring-mounted flat-panel detector. After the injection of an intravascular iodinated contrast agent, projection images were acquired over the course of 50 seconds, while the scanner rotated through 10 complete rotations. The mouse respiratory and electrocardiogram signals were recorder simultaneously with image acquisition. After acquisition, the projection images were retrospectively sorted into projections belonging to different cardiac time points, occurring only during expiration.

RESULTS

Dynamic 3D cardiac images, with isotropic 150-microm voxel spacing, were reconstructed at 12-millisecond intervals throughout the cardiac cycle in all mice. The average ejection fraction and cardiac output were 58.2+/-4.6% and 11.4+/-1.3 mL/min, respectively. The measured entrance dose for the entire scan was 28 cGy. Repeat scans of the same animals showed that intrasubject variability was smaller than intersubject variability.

CONCLUSIONS

We have developed a high-resolution micro computed tomography method for evaluating the cardiac function and morphology of free-breathing mice in acquisition times shorter than 1 minute.

摘要

目的

我们试图回顾性地展示自由呼吸小鼠的门控动态三维心脏微计算机断层扫描(CT)。

材料与方法

使用带有滑环式平板探测器的锥束扫描仪对5只C57Bl6小鼠进行扫描。注射血管内碘化造影剂后,在50秒内采集投影图像,同时扫描仪旋转10整圈。在采集图像的同时同步记录小鼠的呼吸和心电图信号。采集后,将投影图像回顾性地分类为仅在呼气期间出现的属于不同心脏时间点的投影。

结果

在所有小鼠的整个心动周期中,以12毫秒的间隔重建了各向同性体素间距为150微米的动态三维心脏图像。平均射血分数和心输出量分别为58.2±4.6%和11.4±1.3毫升/分钟。整个扫描的测量入射剂量为28 cGy。对同一动物的重复扫描表明,个体内变异性小于个体间变异性。

结论

我们开发了一种高分辨率微计算机断层扫描方法,用于在短于1分钟的采集时间内评估自由呼吸小鼠的心脏功能和形态。

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