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A small-animal imaging system capable of multipinhole circular/helical SPECT and parallel-hole SPECT

机译:具有多针孔圆形/螺旋SPECT和平行孔SPECT的小动物成像系统

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We have designed and built a small-animal single-photon emission computed tomography (SPECT) imaging system equipped with parallel-hole and multipinhole collimators and capable of circular or helical SPECT. Copper-beryllium parallel-hole collimators suitable for imaging the ~35 keV photons from the decay of ~(125)I have been built and installed to achieve useful spatial resolution over a range of object-detector distances and to reduce imaging time on our dual-detector array. To address the resolution limitations in the parallel-hole SPECT and the sensitivity and limited field of view of single-pinhole SPECT, we have incorporated multipinhole circular and helical SPECT in addition to expanding the parallel-hole SPECT capabilities. The pinhole SPECT system is based on a 110 mm diameter circular detector equipped with a pixellated Nal(Tl) scintillator array (1 × 1 × 5 mm~3/pixel). The helical trajectory is accomplished by two stepping motors controlling the rotation of the detector-support gantry and displacement of the animal bed along the axis of rotation of the gantry. Results obtained in SPECT studies of various phantoms show an enlarged field of view, very good resolution and improved sensitivity using multipinhole circular or helical SPECT. Collimators with one, three and five, 1-mm-diameter pinholes have been implemented and compared in these tests. Our objective is to develop a system on which one may readily select a suitable mode of either parallel-hole SPECT or pinhole circular or helical SPECT for a variety of small animal imaging applications.
机译:我们已经设计并建造了一个小动物单光子发射计算机断层摄影(SPECT)成像系统,该系统配备了平行孔和多针孔准直器,并且能够进行圆形或螺旋形SPECT。铜铍平行孔准直仪适合于从〜(125)I的衰变成像至〜35 keV光子,已被安装并安装,以在一定范围内的物体-探测器距离上实现有用的空间分辨率,并减少我们双通道上的成像时间-探测器阵列。为了解决平行孔SPECT中的分辨率限制以及单针孔SPECT的灵敏度和有限的视野,除了扩展了平行孔SPECT的功能之外,我们还引入了多针孔的圆形和螺旋SPECT。针孔SPECT系统基于直径110毫米的圆形检测器,该检测器配备有像素化的Nal(Tl)闪烁体阵列(1×1×5 mm〜3 /像素)。螺旋轨迹是由两个步进电机控制的,该步进电机控制检测器支撑机架的旋转以及动物床沿机架旋转轴的位移。使用多针孔圆形或螺旋形SPECT,在各种体模的SPECT研究中获得的结果显示了更大的视野,非常好的分辨率和更高的灵敏度。在这些测试中,已经实现了具有1、3和5个直径为1毫米的针孔的准直仪并进行了比较。我们的目标是开发一种系统,在该系统上可以轻松地为多种小型动物成像应用选择平行孔SPECT或针孔圆形或螺旋SPECT的合适模式。

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