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Numerical simulation of novel concept 4D cardiac microtomography for small rodents based on all-optical Thomson scattering X-ray sources

机译:基于全光学汤姆森散射X射线源的小型啮齿动物新颖概念4D心脏断层扫描的数值模拟

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摘要

Accurate dynamic three-dimensional (4D) imaging of the heart of small rodents is required for the preclinical study of cardiac biomechanics and their modification under pathological conditions, but technological challenges are met in laboratory practice due to the very small size and high pulse rate of the heart of mice and rats as compared to humans. In 4D X-ray microtomography (4D μCT), the achievable spatio-temporal resolution is hampered by limitations in conventional X-ray sources and detectors. Here, we propose a proof-of-principle 4D μCT platform, exploiting the unique spatial and temporal features of novel concept, all-optical X-ray sources based on Thomson scattering (TS). The main spatial and spectral properties of the photon source are investigated using a TS simulation code. The entire data acquisition workflow has been also simulated, using a novel 4D numerical phantom of a mouse chest with realistic intra- and inter-cycle motion. The image quality of a typical single 3D time frame has been studied using Monte Carlo simulations, taking into account the effects of the typical structure of the TS X-ray beam. Finally, we discuss the perspectives and shortcomings of the proposed platform.
机译:临床前对心脏生物力学及其在病理条件下的修改的研究需要对小型啮齿动物的心脏进行精确的动态三维(4D)成像,但由于其体积很小且脉冲频率很高,因此在实验室实践中遇到了技术难题。与人类相比,老鼠和大鼠的心脏。在4D X射线显微断层扫描(4DμCT)中,可实现的时空分辨率受到传统X射线源和检测器的限制。在这里,我们提出一个原理证明的4DμCT平台,该平台利用了新颖概念的独特时空特征,即基于汤姆森散射(TS)的全光学X射线源。使用TS模拟代码研究了光子源的主要空间和光谱特性。整个数据采集工作流程也已进行了模拟,使用了具有逼真的周期内和周期间运动的新型鼠标胸4D数字体模。考虑到TS X射线束的典型结构的影响,已经使用蒙特卡洛模拟研究了典型的单个3D时间帧的图像质量。最后,我们讨论了该平台的观点和不足。

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