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7T MP2RAGE 采集的丘脑核的快速自动分割。

Fast automatic segmentation of thalamic nuclei from MP2RAGE acquisition at 7 Tesla.

机构信息

Division of Neurology, Children's Hospital of Philadelphia, Philadelphia, Pennsylvania, USA.

Department of Radiology, Perelman School of Medicine at the University of Pennsylvania, Philadelphia, Pennsylvania, USA.

出版信息

Magn Reson Med. 2021 May;85(5):2781-2790. doi: 10.1002/mrm.28608. Epub 2020 Dec 3.

Abstract

PURPOSE

Thalamic nuclei are largely invisible in conventional MRI due to poor contrast. Thalamus Optimized Multi-Atlas Segmentation (THOMAS) provides automatic segmentation of 12 thalamic nuclei using white-matter-nulled (WMn) Magnetization Prepared Rapid Gradient Echo (MPRAGE) sequence at 7T, but increases overall scan duration. Routinely acquired, bias-corrected Magnetization Prepared 2 Rapid Gradient Echo (MP2RAGE) sequence yields superior tissue contrast and quantitative T1 maps. Application of THOMAS to MP2RAGE has been investigated in this study.

METHODS

Eight healthy volunteers and five pediatric-onset multiple sclerosis patients were recruited at Children's Hospital of Philadelphia and scanned at Siemens 7T with WMn-MPRAGE and multi-echo-MP2RAGE (ME-MP2RAGE) sequences. White-matter-nulled contrast was synthesized (MP2-SYN) from T maps from ME-MP2RAGE sequence. Thalamic nuclei were segmented using THOMAS joint label fusion algorithm from WMn-MPRAGE and MP2-SYN datasets. THOMAS pipeline was modified to use majority voting to segment bias corrected T1-weighted uniform (MP2-UNI) images. Thalamic nuclei from MP2-SYN and MP2-UNI images were evaluated against corresponding nuclei obtained from WMn-MPRAGE images using dice coefficients, volume similarity indices (VSIs) and distance between centroids.

RESULTS

For MP2-SYN, dice > 0.85 and VSI > 0.95 was achieved for five larger nuclei and dice > 0.6 and VSI > 0.7 was achieved for seven smaller nuclei. The dice and VSI were slightly higher, whereas the distance between centroids were smaller for MP2-SYN compared to MP2-UNI, indicating improved performance using the MP2-SYN image.

CONCLUSIONS

THOMAS algorithm can successfully segment thalamic nuclei in MP2RAGE images with essentially equivalent quality as WMn-MPRAGE, widening its applicability in studies focused on thalamic involvement in aging and disease.

摘要

目的

由于对比度差,传统 MRI 中丘脑核基本不可见。丘脑优化多图谱分割(THOMAS)使用 7T 时的白质消除(WMn)磁化准备快速梯度回波(MPRAGE)序列对 12 个丘脑核进行自动分割,但会增加整体扫描时间。常规采集、偏置校正的磁化准备 2 快速梯度回波(MP2RAGE)序列可获得更好的组织对比度和定量 T1 图。本研究探讨了 THOMAS 在 MP2RAGE 中的应用。

方法

本研究招募了 8 名健康志愿者和 5 名儿童期起病多发性硬化症患者,在费城儿童医院的西门子 7T 上进行 WMn-MPRAGE 和多回波-MP2RAGE(ME-MP2RAGE)序列扫描。从 ME-MP2RAGE 序列的 T 图中合成白质消除对比(MP2-SYN)。使用 THOMAS 联合标签融合算法从 WMn-MPRAGE 和 MP2-SYN 数据集分割丘脑核。修改了 THOMAS 流水线以使用多数投票来分割偏置校正 T1 加权均匀(MP2-UNI)图像。使用 Dice 系数、体积相似性指数(VSI)和质心距离评估 MP2-SYN 和 MP2-UNI 图像的丘脑核与来自 WMn-MPRAGE 图像的相应核。

结果

对于 MP2-SYN,五个较大的核的 Dice > 0.85 和 VSI > 0.95,七个较小的核的 Dice > 0.6 和 VSI > 0.7。与 MP2-UNI 相比,MP2-SYN 的 Dice 和 VSI 略高,而质心之间的距离更小,表明使用 MP2-SYN 图像可提高性能。

结论

THOMAS 算法可成功分割 MP2RAGE 图像中的丘脑核,其质量与 WMn-MPRAGE 基本相当,拓宽了其在关注丘脑在衰老和疾病中作用的研究中的应用。

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