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Experimental evaluation of the resolution improvement provided by a silicon PET probe

机译:硅PET探针提高分辨率的实验评估

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摘要

A high-resolution PET system, which incorporates a silicon detector probe into a conventional PET scanner, has been proposed to obtain increased image quality in a limited region of interest. Detailed simulation studies have previously shown that the additional probe information improves the spatial resolution of the reconstructed image and increases lesion detectability, with no cost to other image quality measures. The current study expands on the previous work by using a laboratory prototype of the silicon PET-probe system to examine the resolution improvement in an experimental setting. Two different versions of the probe prototype were assessed, both consisting of a back-to-back pair of 1-mm thick silicon pad detectors, one arranged in 32 × 16 arrays of 1.4 mm × 1.4 mm pixels and the other in 40 × 26 arrays of 1.0 mm × 1.0 mm pixels. Each detector was read out by a set of VATAGP7 ASICs and a custom-designed data acquisition board which allowed trigger and data interfacing with the PET scanner, itself consisting of BGO block detectors segmented into 8 × 6 arrays of 6 mm × 12 mm × 30 mm crystals. Limited-angle probe data was acquired from a group of Na-22 point-like sources in order to observe the maximum resolution achievable using the probe system. Data from a Derenzo-like resolution phantom was acquired, then scaled to obtain similar statistical quality as that of previous simulation studies. In this case, images were reconstructed using measurements of the PET ring alone and with the inclusion of the probe data. Images of the Na-22 source demonstrated a resolution of 1.5 mm FWHM in the probe data, the PET ring resolution being approximately 6 mm. Profiles taken through the image of the Derenzo-like phantom showed a clear increase in spatial resolution. Improvements in peak-to-valley ratios of 50% and 38%, in the 4.8 mm and 4.0 mm phantom features respectively, were observed, while previously unresolvable 3.2 mm features were brought to light by the addition of the probe. These results support the possibility of improving the image resolution of a clinical PET scanner using the silicon PET-probe.
机译:已经提出了将硅检测器探针结合到常规PET扫描仪中的高分辨率PET系统,以在感兴趣的有限区域中获得提高的图像质量。先前的详细模拟研究表明,额外的探针信息可提高重建图像的空间分辨率,并增加病变检测能力,而无需其他图像质量措施。当前的研究通过使用硅PET探针系统的实验室原型在实验环境中检查分辨率的提高来扩展以前的工作。评估了探针原型的两个不同版本,两个均由一对背对背的1毫米厚的硅焊盘检测器组成,一个以1.4毫米×1.4毫米像素的32×16阵列排列,另一个以40×26像素排列。 1.0 mm×1.0 mm像素的阵列。每个检测器都由一组VATAGP7 ASIC和一个定制设计的数据采集板读出,该触发板允许触发和数据与PET扫描仪接口,PET扫描仪本身由BGO块检测器组成,该检测器被分成8×6个6 mm×12 mm×30的阵列。毫米晶体。从一组Na-22点状源中获取了有限角度的探针数据,以观察使用探针系统可获得的最大分辨率。从类似Derenzo的分辨率幻象中获取数据,然后进行缩放以获得与先前模拟研究类似的统计质量。在这种情况下,仅使用PET环的测量并结合探针数据即可重建图像。 Na-22来源的图像在探针数据中显示的分辨率为1.5 mm FWHM,PET环分辨率约为6 mm。通过类似Derenzo的幻影的图像拍摄的轮廓显示出空间分辨率的明显提高。观察到在4.8 mm和4.0 mm的幻影特征中峰谷比分别提高了50%和38%,而通过添加探针使以前无法解析的3.2 mm特征暴露出来。这些结果支持使用硅PET探针改善临床PET扫描仪的图像分辨率的可能性。

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