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Development and Initial Results of a Tomographic Dual-Modality Positron/Optical Small Animal Imager

机译:层析双模正电子/光学小动物成像仪的研制和初步结果

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A novel concept for integrating PET and optical detection devices in a single instrument is presented. It is intended for simultaneous tomographic imaging of positron-labeled and optical probes in vivo. The optical imaging units consist of a microlens array (MLA) defining the field-of-view, a large area CMOS chip for light detection, and a transferable filter for excitation light blocking. The CMOS sensor array is positioned at the focal plane of the MLA. In a final design proposal optimized for fully tomographic mouse imaging the optical detector size is chosen to be 8.2 mm (transaxially) x 82.0 mm (axially) and has an effective thickness of 3.0 mm. A multitude of such ultra-thin detectors is allocated orthogonally with respect to the imaged object''s long axis for tomographic whole body data acquisition of small animals (mice). PET detector blocks are located in radial extension to the optical detectors and mounted on a common rotatable gantry. Laser(s) used for probe excitation are positioned at radial extension behind the PET rings and are translatable along the axis of rotation allowing for arbitrary probe excitation and improved spatial sampling, particularly of the optical system. Both, the optical detector arrangement as well as the PET detectors are mounted so that excitation light can be introduced through the gaps between individual blocks. An experimental setup has been assembled in our laboratory and phantom data were acquired.
机译:提出了在单个仪器中集成PET和光学检测设备的新颖概念。它旨在用于在体内对正电子标记和光学探针进行同步层析成像。光学成像单元由定义视场的微透镜阵列(MLA),用于光检测的大面积CMOS芯片和用于激发光阻挡的可转移滤光片组成。 CMOS传感器阵列位于MLA的焦平面上。在针对全断层鼠标成像优化的最终设计方案中,光学探测器的尺寸选择为8.2 mm(轴向)×82.0 mm(轴向),有效厚度为3.0 mm。相对于被成像物体的长轴正交地分配多个这种超薄探测器,以获取小型动物(小鼠)的X射线断层扫描全身数据。 PET检测器模块位于光学检测器的径向延伸位置,并安装在通用的可旋转机架上。用于探针激发的激光定位在PET环后面的径向位置,并且可以沿旋转轴平移,从而允许任意探针激发和改善的空间采样,尤其是光学系统的空间采样。光学检测器装置和PET检测器均已安装,因此可以将激发光通过各个模块之间的间隙引入。在我们的实验室中已经组装了一个实验装置,并获得了幻像数据。

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