基于体素的进行性核上性麻痹形态测量法,使用三维快速低角射影定位器图像:与磁化预处理快速梯度回波的比较。

Cong Shang, Shohei Inui, Daita Kaneda, Yuto Uchida, Hiroshi Toyama, Keita Sakurai, Yoshio Hashizume
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引用次数: 0

摘要

目的:体素形态计量法(VBM)被广泛用于研究进行性核上性麻痹(PSP)患者的白质(WM)萎缩。与磁化准备梯度回波快速采集(MPRAGE)序列等高分辨率三维 T1 加权成像相比,其他三维序列的实用性尚未得到充分评估。本研究旨在评估使用三维快速低角度拍摄序列作为定位图像(L3DFLASH)对PSP患者WM萎缩模式进行VBM分析的可行性:这项回顾性研究包括12名经病理或临床确诊的PSP患者,以及18名年龄和性别匹配的健康对照者,他们都接受了L3DFLASH和MPRAGE序列的扫描。图像处理采用统计参数映射 12 中的计算解剖工具箱 12 进行。除了 VBM 上 PSP 的萎缩性 WM 模式外,我们还使用简单线性回归和 Bland-Altman 图评估了两种序列之间的 WM 容量一致性:结果:尽管 MPRAGE 显示的簇稍大,但使用两种序列的 VBM 显示出与 PSP 相关的 WM 萎缩的相似特征,包括中脑、脑桥、丘脑和前中央回。相比之下,VBM 仅在 L3DFLASH 上显示楔前叶和右顶叶上部的灰质(GM)萎缩。与 MPRAGE 测量的颅内总容积、GM 和脑脊液值不同,L3DFLASH 测量的 WM 值更大。与颅内总容积、脑干、额叶和枕叶相比,其他区域与 WM 容积的相关性相对较低。然而,Bland-Altman图显示出很强的一致性,90%以上的值都在一致性范围内:结论:MPRAGE和L3DFLASH均可用于使用VBM检测与PSP相关的WM萎缩。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Voxel-Based Morphometry of Progressive Supranuclear Palsy Using a 3D Fast Low-angle Shot Localizer Image: A Comparison with Magnetization-Prepared Rapid Gradient Echo.

Purpose: Voxel-based morphometry (VBM) is widely used to investigate white matter (WM) atrophy in patients with progressive supranuclear palsy (PSP). In contrast to high-resolution 3D T1-weighted imaging such as magnetization-prepared rapid acquisition with gradient echo (MPRAGE) sequences, the utility of other 3D sequences has not been sufficiently evaluated. This study aimed to assess the feasibility of using a 3D fast low-angle shot sequence captured as a localizer image (L3DFLASH) for VBM analysis of WM atrophy patterns in patients with PSP.

Methods: This retrospective study included 12 patients with pathologically or clinically confirmed PSP, and 18 age- and sex-matched healthy controls scanned with both L3DFLASH and MPRAGE sequences. Image processing was conducted with the Computational Anatomy Toolbox 12 in statistical parametric mapping 12. In addition to the atrophic WM pattern of PSP on VBM, we assessed the WM volume agreement between the two sequences using simple linear regression and Bland-Altman plots.

Results: Despite the slightly larger clusters on MPRAGE, VBM using both sequences showed similar characteristics of PSP-related WM atrophy, including in the midbrain, pons, thalamus, and precentral gyrus. In contrast, VBM showed gray matter (GM) atrophy of the precuneus and right superior parietal lobule exclusively on L3DFLASH. Unlike the measured values of total intracranial volume, GM, and cerebrospinal fluid on MPRAGE, the value of WM was larger on L3DFLASH. In contrast to the total intracranial volume, brainstem, and frontal and occipital lobes, the correlation with WM volume in other regions was relatively low. However, the Bland-Altman plots demonstrated strong agreement, with over 90% of the values falling within the agreement limits.

Conclusion: Both MPRAGE and L3DFLASH are useful for detecting PSP-related WM atrophy using VBM.

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