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用于动态成像的实验室CT扫描仪。

A laboratory CT scanner for dynamic imaging.

作者信息

Drangova M, Fenster A

机构信息

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

出版信息

Med Phys. 1994 Jun;21(6):731-40. doi: 10.1118/1.597332.

Abstract

A high-resolution laboratory CT scanner has been developed for imaging objects undergoing periodic motion. The scanner comprises an x-ray image intensifier, optically coupled to a linear photodiode array. Gated time-evolved projections of a single slice of the moving object are acquired, reformatted, and reconstructed. The resulting series of CT images shows the object at different phases of its motion cycle. The scanner has an adjustable field of view (FOV) and the resolution can be as high as 3.2 mm-1 (for the 40-mm FOV). The spatial resolution depends on the inherent resolution of the scanner and on the object's velocity. For objects moving at 1 cm s-1, the spatial resolution is reduced by 9% in the direction of motion. The signal intensity in the reconstructed image is linear for materials with attenuation coefficients as high as 1.5 cm-1 (for a 90-kVp x-ray beam), with an average accuracy of +/- 0.02 cm-1. The average accuracy of circumference measurements made from the CT images is +/- 0.3 mm. Lastly, an application of this dynamic CT scanner to imaging excised human arterial specimens under simulated physiological pressure conditions is presented as an example.

摘要

已开发出一种高分辨率实验室CT扫描仪,用于对进行周期性运动的物体进行成像。该扫描仪包括一个与线性光电二极管阵列光学耦合的X射线图像增强器。获取、重新格式化并重建运动物体单一切片的门控时间演化投影。所得的一系列CT图像显示了物体在其运动周期的不同阶段。该扫描仪具有可调节的视野(FOV),分辨率可高达3.2毫米-1(对于40毫米的FOV)。空间分辨率取决于扫描仪的固有分辨率和物体的速度。对于以1厘米/秒速度移动的物体,在运动方向上空间分辨率降低9%。对于衰减系数高达1.5厘米-1的材料(对于90 kVp的X射线束),重建图像中的信号强度呈线性,平均精度为+/- 0.02厘米-1。由CT图像进行的周长测量的平均精度为+/- 0.3毫米。最后,作为示例展示了这种动态CT扫描仪在模拟生理压力条件下对切除的人体动脉标本进行成像的应用。

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