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Imaging the basic function unit of small/medium animal via diagnostic CT with an adaptor-and-holder assembly (AAHA) - Feasibility study

机译:通过带有适配器和支架组件(AAHA)的诊断性CT对中小型动物的基本功能单元进行成像-可行性研究

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Imaging the basic functional unit (BFU) of small/medium animal - an organ's smallest assembly of diverse cells that functions like the organ itself- is of significance in pre-clinical research. A BFU is usually a spheroid with its horizontal, transverse and vertical radii equal to ~50 μm and its dimension is virtually the same in small/medium animal and human. Apparently, state-of-the-art diagnostic CT scanners can't image the BFU of small/medium animal directly because of its insufficient spatial resolution. Micro-CT is of sufficient spatial resolution, but its contrast, temporal and spectral resolutions are inferior to its counterparts of diagnostic CT. We propose to image the basic function unit of small/medium animal using diagnostic CT with an adaptor-and-holder assembly (AAHA). In data acquisition, the adaptor rotates in phase with x-ray source, but the animal holder spins at an angular velocity that is opposite to the direction of adaptor rotation. Consequently, the pose of the animal remains unchanged in data acquisition, which can reduce animal's visceral motion substantially. With such an AAHA device, the spatial resolution can be increased more than 2.5 times, while the temporal resolution can potentially be increased 2 times if super-short scan is exercised. In practice, the AAHA device may not align perfectly and rotate rigorously in phase with x-ray source. Hence, motion-compensated reconstruction is needed. With a preliminary evaluation conducted in the feasibility study, it is believed that, a diagnostic CT with the AAHA device may enable imaging small/medium animal at superior spatiotemporal and contrast resolution in comparison to micro-CT.
机译:对中小型动物的基本功能单位(BFU)进行成像-一种器官中各种细胞的最小集合,其功能类似于器官本身-在临床前研究中具有重要意义。 BFU通常是球状体,其水平,横向和垂直半径等于〜50μm,并且在中小型动物和人类中其尺寸实际上是相同的。显然,最先进的诊断CT扫描仪由于其空间分辨率不足而无法直接对中小型动物的BFU成像。 Micro-CT具有足够的空间分辨率,但其对比度,时间和光谱分辨率均低于诊断CT的同类分辨率。我们建议使用带有适配器和支架组件(AAHA)的诊断性CT成像中小型动物的基本功能单元。在数据采集中,适配器与X射线源同相旋转,但动物固定器以与适配器旋转方向相反的角速度旋转。因此,动物的姿势在数据获取中保持不变,这可以大大减少动物的内脏运动。使用这种AAHA设备,如果执行超短扫描,则空间分辨率可以提高2.5倍以上,而时间分辨率则可以提高2倍。在实践中,AAHA设备可能无法与X射线源完美对准并严格旋转。因此,需要运动补偿的重建。通过可行性研究的初步评估,可以相信,与微型CT相比,具有AAHA装置的诊断CT可以使时空和对比度分辨率更高的小型/中型动物成像。

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