School of Electrical Engineering, Korea Advanced Institute of Science and Technology, Daejeon, Republic of Korea.
Center for Magnetic Resonance Research, Department of Radiology, University of Minnesota Medical School, Minneapolis, Minnesota.
Magn Reson Med. 2018 Nov;80(5):1787-1798. doi: 10.1002/mrm.27203. Epub 2018 Apr 6.
To develop a fast and automated volume-of-interest (VOI) prescription pipeline (AutoVOI) for single-voxel MRS that removes the need for manual VOI placement, allows flexible VOI planning in any brain region, and enables high inter- and intra-subject consistency of VOI prescription.
AutoVOI was designed to transfer pre-defined VOIs from an atlas to the 3D anatomical data of the subject during the scan. The AutoVOI pipeline was optimized for consistency in VOI placement (precision), enhanced coverage of the targeted tissue (accuracy), and fast computation speed. The tool was evaluated against manual VOI placement using existing T -weighted data sets and corresponding VOI prescriptions. Finally, it was implemented on 2 scanner platforms to acquire MRS data from clinically relevant VOIs that span the cerebrum, cerebellum, and the brainstem.
The AutoVOI pipeline includes skull stripping, non-linear registration of the atlas to the subject's brain, and computation of the VOI coordinates and angulations using a minimum oriented bounding box algorithm. When compared against manual prescription, AutoVOI showed higher intra- and inter-subject spatial consistency, as quantified by generalized Dice coefficients (GDC), lower intra- and inter-subject variability in tissue composition (gray matter, white matter, and cerebrospinal fluid) and higher or equal accuracy, as quantified by GDC of prescribed VOI with targeted tissues. High quality spectra were obtained on Siemens and Philips 3T systems from 6 automatically prescribed VOIs by the tool.
Robust automatic VOI prescription is feasible and can help facilitate clinical adoption of MRS by avoiding operator dependence of manual selection.
开发一种用于单体素 MRS 的快速、自动化的感兴趣区(VOI)勾画流水线(AutoVOI),该方法无需手动勾画 VOI,可在大脑的任意区域灵活勾画 VOI,并且能确保勾画 VOI 的高度个体内和个体间一致性。
AutoVOI 旨在在扫描期间将预定义的 VOI 从图谱转移到受检者的 3D 解剖数据中。AutoVOI 流水线针对 VOI 放置的一致性(精度)、目标组织的增强覆盖范围(准确性)和快速计算速度进行了优化。该工具使用现有的 T1 加权数据集和相应的 VOI 处方对现有的手动 VOI 放置进行了评估。最后,它在 2 个扫描仪平台上实现,从横跨大脑、小脑和脑干的临床相关 VOI 中获取 MRS 数据。
AutoVOI 流水线包括颅骨剥离、图谱到受检者大脑的非线性配准,以及使用最小定向包围盒算法计算 VOI 坐标和角度。与手动处方相比,AutoVOI 显示出更高的个体内和个体间空间一致性,如广义 Dice 系数(GDC)所量化的;组织成分(灰质、白质和脑脊液)的个体内和个体间变异性更低;处方 VOI 与目标组织的 GDC 所量化的准确性更高或相等。该工具可从 Siemens 和 Philips 3T 系统中的 6 个自动勾画的 VOI 中获得高质量的谱图。
稳健的自动 VOI 处方是可行的,并且可以通过避免手动选择的操作人员依赖性来帮助促进 MRS 的临床应用。