Shokouhi Sepideh, Fritz Mark A, McDonald Benjamin S, Durko Heather L, Furenlid Lars R, Wilson Donald W, Peterson Todd E
Vanderbilt University, Nashville, TN, USA, telephone: 615-322-6214.
University of Arizona, Center for Gamma-Ray Imaging and the College of Optical Sciences, Tucson, AZ, USA, telephone: 520-626-4256.
IEEE Nucl Sci Symp Conf Rec (1997). 2007 Oct-Nov;2007:2782-2784. doi: 10.1109/NSSMIC.2007.4436717.
We previously demonstrated the feasibility of using silicon double-sided strip detectors (DSSDs) for SPECT imaging of the activity distribution of iodine-125 using a 300-micrometer thick detector. Based on this experience, we now have developed fully customized silicon DSSDs and associated readout electronics with the intent of developing a multi-pinhole SPECT system. Each DSSD has a 60.4 mm × 60.4 mm active area and is 1 mm thick. The strip pitch is 59 micrometers, and the readout of the 1024 strips on each side gives rise to a detector with over one million pixels. Combining four high-resolution DSSDs into a SPECT system offers an unprecedented space-bandwidth product for the imaging of single-photon emitters. The system consists of two camera heads with two silicon detectors stacked one behind the other in each head. The collimator has a focused pinhole system with cylindrical-shaped pinholes that are laser-drilled in a 250 μm tungsten plate. The unique ability to collect projection data at two magnifications simultaneously allows for multiplexed data at high resolution to be combined with lower magnification data with little or no multiplexing. With the current multi-pinhole collimator design, our SPECT system will be capable of offering high spatial resolution, sensitivity and angular sampling for small field-of-view applications, such as molecular imaging of the mouse brain.
我们之前已证明,使用厚度为300微米的探测器,硅双面条型探测器(DSSD)用于碘-125活度分布的单光子发射计算机断层扫描(SPECT)成像具有可行性。基于这一经验,我们现在开发了完全定制的硅DSSD及相关读出电子设备,旨在开发一种多针孔SPECT系统。每个DSSD的有效面积为60.4毫米×60.4毫米,厚度为1毫米。条间距为59微米,每侧1024条的读出产生了一个具有超过一百万个像素的探测器。将四个高分辨率DSSD组合成一个SPECT系统,为单单单光子发射体成像提供了前所未有的空间带宽积。该系统由两个摄像头组成,每个摄像头中有两个硅探测器一个叠在另一个后面。准直器有一个聚焦针孔系统,其圆柱形针孔是在一块250微米厚的钨板上激光打孔制成的。能够同时以两种放大倍数采集投影数据的独特能力,使得高分辨率的多路复用数据能够与低放大倍数数据相结合,且几乎无需或根本无需多路复用。采用当前的多针孔准直器设计,我们的SPECT系统将能够为小视野应用(如小鼠脑部分子成像)提供高空间分辨率、灵敏度和角度采样。