Martinos Center for Biomedical Imaging, Department of Radiology, Massachusetts General Hospital & Harvard Medical School, Boston, MA, United States of America.
PicoRad Imaging LLC, Wayland, MA, United States of America.
Biomed Phys Eng Express. 2023 Dec 5;10(1). doi: 10.1088/2057-1976/ad0f40.
The Dynamic Cardiac SPECT (DC-SPECT) system is being developed at the Massachusetts General Hospital, featuring a static cardio focus asymmetrical geometry enabling simultaneous high-resolution and high-sensitivity imaging. Among 14 design iterations of the DC-SPECT with varying number of detector heads, system sensitivity and resolution, the current version under development features 10 mm FWHM geometrical resolution (without resolution recovery) and 0.07% sensitivity at the center of the FOV, this is 1.5× resolution gain and 7× sensitivity gain compared to a conventional dual head gamma camera (0.01% sensitivity and 15-mm resolution). This work presents improvement in imaging resolution by implementing a spatially variant point spread function (SV-PSF) with list mode MLEM reconstruction. A resolution recovery method by PSF deconvolution is validated on list mode MLEM reconstruction for the DC-SPECT. A spatial invariant PSF is included as an additional test to show the influence of the PSF modelling accuracy on reconstructed image quality. We compare the MLEM reconstruction with and without PSF deconvolution; an analytic model is used for the calculation of system response, and the results are compared to the reconstruction with system modelling using Monte Carlo (MC) based methods. Results show that with PSF modelling applied, the quality of the reconstructed image is improved, and the DC-SPECT system can achieve a 4.5 mm central spatial resolution with average 795 counts/Mbq. Both the SV-PSF and the spatial-invariant PSF improve the image quality, and the reconstruction with SV-PSF generates line profiles closer to the ground truth. The results show substantial improvement over the GE Discovery 570c performance (7 mm spatial resolution with an average 460 counts/MBq, 5.8 mm resolution at the FOV center). The impact of PSF deconvolution is significant, improvement of the reconstructed image quality is evident in comparison to MC simulated system matrix with the same sampling size in the simulation.
正在马萨诸塞州综合医院开发动态心脏单光子发射计算机断层扫描 (DC-SPECT) 系统,该系统采用静态心脏聚焦不对称几何结构,能够同时实现高分辨率和高灵敏度成像。在具有不同数量探测器头、系统灵敏度和分辨率的 14 个 DC-SPECT 设计迭代中,当前正在开发的版本具有 10 毫米全宽半高分辨率(无分辨率恢复)和视野中心 0.07%的灵敏度,与传统的双探头伽马相机相比,这分别提高了 1.5 倍的分辨率和 7 倍的灵敏度(0.01%的灵敏度和 15 毫米的分辨率)。本工作通过在列表模式最大似然期望最大化重建中实现空间变化点扩散函数 (SV-PSF),提高了成像分辨率。通过 PSF 反卷积对 DC-SPECT 的列表模式 MLEM 重建进行了分辨率恢复验证。作为附加测试,包含了空间不变 PSF,以显示 PSF 建模精度对重建图像质量的影响。我们比较了有无 PSF 反卷积的 MLEM 重建;使用解析模型计算系统响应,并将结果与基于蒙特卡罗 (MC) 的方法的系统建模的重建进行比较。结果表明,应用 PSF 建模后,重建图像的质量得到了提高,DC-SPECT 系统可以达到 4.5 毫米的中心空间分辨率,平均每个探头为 795 计数/MBq。SV-PSF 和空间不变 PSF 都提高了图像质量,并且 SV-PSF 重建生成的线轮廓更接近真实情况。结果表明,与 GE Discovery 570c 性能(7 毫米空间分辨率,平均 460 计数/MBq,视野中心 5.8 毫米分辨率)相比,有了实质性的提高。PSF 反卷积的影响显著,与具有相同采样大小的 MC 模拟系统矩阵相比,重建图像质量的提高显而易见。