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首页> 外文期刊>Physics in medicine and biology. >Evaluation of image reconstruction for mouse brain imaging with synthetic collimation from highly multiplexed SiliSPECT projections.
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Evaluation of image reconstruction for mouse brain imaging with synthetic collimation from highly multiplexed SiliSPECT projections.

机译:高度重构的SiliSPECT投影通过合成准直对小鼠大脑成像进行图像重建的评估。

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摘要

We have performed a theoretical study to explore the potential and limitations of synthetic collimation for SPECT imaging with stacked-detector acquisition (dual magnification). This study will be used to optimize SiliSPECT, a small-animal SPECT for imaging small volumes such as a mouse brain at high sensitivity and resolution. The synthetic collimation enables image reconstruction with a limited number of camera views and in the presence of significant multiplexing. We also developed a new formulation to quantify the multiplexed object sensitivity and investigated how this changes for different acquisition parameters such as number of pinholes and combinations of front and back detector distances for imaging objects as small as the mouse brain. In our theoretical studies, we were not only able to demonstrate better reconstruction results by incorporating two detector magnifications in comparison to either one alone, but also observed an improved image reconstruction by optimizing the detector-collimator distances to change the multiplexing ratio between the front and back detectors.
机译:我们已经进行了理论研究,以探索具有堆叠探测器采集(双倍放大倍数)的SPECT成像的合成准直的潜力和局限性。这项研究将用于优化SiliSPECT,SiliSPECT是一种小动物SPECT,可以以高灵敏度和分辨率对小体积的图像(如小鼠大脑)进行成像。合成准直功能可以在有限的摄像机视角下并且在存在明显的多路复用的情况下重建图像。我们还开发了一种新的公式来量化多路复用对象的灵敏度,并研究了这种变化如何针对不同的采集参数(例如针孔数以及对像老鼠大脑一样小的成像对象的前后检测器距离的组合)的变化。在我们的理论研究中,我们不仅能够通过结合两个检测器放大倍数(而不是单独使用一个检测器)来展示更好的重建结果,而且还通过优化检测器-准直器的距离来改变前部和后部之间的复用比,从而观察到了改进的图像重建。后探测器。

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