Department of Bioengineering, University of California, Berkeley, CA 94720, USA.
IEEE Trans Med Imaging. 2013 Feb;32(2):338-47. doi: 10.1109/TMI.2012.2227121. Epub 2012 Nov 15.
We acquire the first experimental 3-D tomographic images with magnetic particle imaging (MPI) using projection reconstruction methodology, which is similar to algorithms employed in X-ray computed tomography. The primary advantage of projection reconstruction methods is an order of magnitude increase in signal-to-noise ratio (SNR) due to averaging. We first derive the point spread function, resolution, number of projections required, and the SNR gain in projection reconstruction MPI. We then design and construct the first scanner capable of gathering the necessary data for nonaliased projection reconstruction and experimentally verify our mathematical predictions. We demonstrate that filtered backprojection in MPI is experimentally feasible and illustrate the SNR and resolution improvements with projection reconstruction. Finally, we show that MPI is capable of producing three dimensional imaging volumes in both phantoms and postmortem mice.
我们使用投影重建方法获得了第一个使用磁性粒子成像 (MPI) 的实验性三维层析图像,该方法类似于 X 射线计算机断层扫描中使用的算法。投影重建方法的主要优点是由于平均而导致信噪比 (SNR) 提高了一个数量级。我们首先推导了点扩散函数、分辨率、所需投影数量以及投影重建 MPI 中的 SNR 增益。然后,我们设计并构建了第一个能够收集用于非混淆投影重建所需数据的扫描仪,并通过实验验证了我们的数学预测。我们证明了 MPI 中的滤波反投影在实验上是可行的,并说明了投影重建的 SNR 和分辨率的提高。最后,我们表明 MPI 能够在体模和死后小鼠中生成三维成像体积。
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