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Comparative Study of Two Flat-Panel X-Ray Detectors Applied to Small-Animal Imaging Cone-Beam Micro-CT

机译:两个平板X射线探测器对小动物成像锥梁微型CT的比较研究

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This work compares two different X-ray flat-panel detectors for its use in high-speed, cone-beam CT applied to small-animal imaging. The main differences between these two devices are the scintillators and the achievable frame rate. Both devices have been tested in terms of system linearity, sensitivity, resolution, stability and noise properties, taking into account the different timing schemes for each one of them and the mandatory corrections on the raw data. Tomographic scans have been carried out using both detectors to evaluate its final performance as well as the delivered dose needed to achieve similar quality scans. An experimental cone-beam CT test-bench has been designed and implemented to perform the different measurements. It uses a micro-focus X-ray source and a rotating stage where the samples are placed. A modified FDK algorithm has been used to reconstruct the acquired data. Both detectors show similar results for pixel linearity and stability measurements, and their noise levels are comparable. The resolution and sensitivity features are better for the direct grown scintillator detector (9 lpmm vs. 6 lpmm, and ~4 times more sensitive for similar delivered dose). Since tomographic reconstructed images for the higher frame-rate detector show acceptable quality, it can be used to implement a faster system for high-speed acquisition techniques like, for example, dynamic imaging or gated protocols.
机译:这项工作比较了两种不同的X射线平板探测器,用于高速,锥形光束CT应用于小动物成像。这两个器件之间的主要差异是闪烁体和可实现的帧速率。考虑到它们中每一个的不同时序方案以及原始数据的强制校正,考虑到了两个设备的系统线性度,灵敏度,分辨率,稳定性和噪声属性。使用两个探测器进行了断层扫描,以评估其最终性能以及实现类似质量扫描所需的交付剂量。设计并实现了实验锥梁CT测试台以执行不同的测量。它使用微聚焦X射线源和放置样品的旋转阶段。已修改的FDK算法已用于重建获取的数据。两个探测器都显示出类似的像素线性和稳定性测量结果,并且它们的噪声水平是可比的。分辨率和敏感性特征对于直接生长的闪烁体检测器更好(9LPMM vs.6LPMM,并且对于类似递送剂量敏感的敏感〜4倍)。由于较高帧速率检测器的断层重建图像显示可接受的质量,因此它可以用于实现更快的系统,用于高速采集技术,例如动态成像或门控协议。

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