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Motion-corrected planar projection imaging for awake and freely moving small animals

机译:运动纠正的平面投影成像,用于清醒和自由移动小动物

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Awake and/or freely moving small animal single photon emission imaging allows the pseudo-continuous study of ~(125)I-labelled macromolecule kinetics, which could not otherwise be performed with systems involving restraint or anaesthesia. Estimating motion free projections in freely moving small animal planar imaging can be considered as a limited angle tomography problem (except that we wish to estimate the projections rather than the 3D volume), where the angular sampling depends on the observed motion. In this study, we hypothesise that the motion corrected planar projections estimated by reconstructing the 3D volume using an iterative reconstruction algorithm and integrating it along the projection path, will closely match the true planar distribution, regardless of the observed motion. We tested this hypothesis using 3D simulations based on a dual opposed detector system, where motion was modelled with 6 degrees of freedom (i.e. rigid body). We also investigated the quantitative accuracy of regional activity extracted from the geometric mean of opposing motion corrected planar projections. Results showed that it is feasible to accurately estimate motion-corrected projections for a wide range of motions around all 3 axes. Errors were dependent on the observed motion, as well as the surrounding activity of overlapping organs, but geometric mean estimates of regional activity were within 10% of expected values. We conclude that quantitatively accurate motion-free projections of the tracer distribution in a freely moving animal can be estimated from dual opposed detectors using MLEM-based motion correction.
机译:唤醒和/或自由移动小动物单光子发射成像允许〜(125)I标记的大分子动力学的伪连续研究,否则不能用涉及克制或麻醉的系统进行。估计在自由移动的小动物平面成像中的运动自由突出物可以被认为是有限的角度断层扫描问题(除了我们希望估计投影而不是3D音量之外),其中角采样取决于观察到的运动。在本研究中,我们假设通过使用迭代重建算法重建3D卷并沿着投影路径集成的运动校正平面投影将与真正的平面分布密切相关,无论观察到的运动如何。我们使用基于双相对的检测器系统使用3D模拟测试了该假设,其中运动被建模为6度自由(即刚体)。我们还研究了从相反运动矫正平面投影的几何平均值提取的区域活动的定量准确性。结果表明,在所有3轴周围的各种运动中准确地估计运动校正的突起是可行的。误差依赖于观察到的运动,以及重叠器官的周围活动,但区域活动的几何平均估计值在预期值的10%以内。我们得出结论,可以从使用基于MLEM的运动校正的双相对的检测器来估计自由移动动物中的示踪剂分布的定量准确的无运动突起。

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