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采用弥散加权单次激发回波平面成像和双聚类分割的精确脑容量测量:与经容量验证的定量磁共振成像的比较。

Accurate brain volumetry with diffusion-weighted spin-echo single-shot echo-planar-imaging and dual-clustering segmentation: comparison with volumetry-validated quantitative magnetic resonance imaging.

机构信息

Department of Radiology, Boston Medical Center, Boston University School of Medicine, 820 Harrison Avenue, 3rd Floor FGH Building, Boston, Massachusetts 02118, USA.

出版信息

Med Phys. 2010 Mar;37(3):1183-90. doi: 10.1118/1.3310384.

Abstract

PURPOSE

Although the diffusion-weighted spin-echo single-shot echo-planar-imaging (DW-SE-sshEPI) is an established quantitative MRI (qMRI) pulse sequence, it is known to be vulnerable to geometric distortions. The purpose of this work is to study is to study brain volumetry accuracy with DW-SE-sshEPI relative previously published volumetry-validated qMRI pulse sequence, specifically the mixed turbo spin-echo (mixed-TSE) pulse sequence, which is robust to magnetic field inhomogeneities and affords much higher spatial resolution.

METHODS

Twenty-eight subjects were imaged with both DW-SE-sshEPI and mixed-TSE pulse sequences. For each subject, the intracranial structures were segmented using a single-qMRI-channel dual-clustering algorithm (for DW-SE-sshEPI) and a three-qMRI-channel dual-clustering algorithm (for mixed-TSE). The respective intracranial volumes were calculated with both data sets and then compared.

RESULTS

The intracranial volumes derived from DW-SE-sshEPI and mixed-TSE data sets are highly and linearly correlated (R2 = 0.9353) with a slope of 0.9911, with one distorted DW-SE-sshEPI data set demonstrating remarkable volume underestimation. Excluding this outlier resulted in improved linear correlation (R2 = 0.9681) with a slope of 1.0003.

CONCLUSIONS

Brain volumetry with DW-SE-sshEPI at 1.5 T data sets can be very accurate for most patients for whom the major magnetic field inhomogeneities result from typical tissue interfaces (e.g., air-tissue or bone-tissue) and typical dental fillings, but not from larger metallic implants.

摘要

目的

虽然扩散加权回波单-shot 回音平面成像(DW-SE-sshEPI)是一种成熟的定量磁共振成像(qMRI)脉冲序列,但它已知易受几何变形的影响。本研究的目的是研究 DW-SE-sshEPI 相对于先前发表的容积验证 qMRI 脉冲序列(特别是混合涡轮自旋回波(mixed-TSE)脉冲序列)的脑容积准确性,该序列对磁场不均匀性具有较强的鲁棒性,并提供更高的空间分辨率。

方法

对 28 名受试者进行了 DW-SE-sshEPI 和 mixed-TSE 脉冲序列成像。对于每个受试者,使用单-qMRI 通道双聚类算法(用于 DW-SE-sshEPI)和三-qMRI 通道双聚类算法(用于 mixed-TSE)对颅内结构进行分割。分别使用两个数据集计算颅内体积,并进行比较。

结果

DW-SE-sshEPI 和 mixed-TSE 数据集得出的颅内体积高度线性相关(R2 = 0.9353),斜率为 0.9911,一个变形的 DW-SE-sshEPI 数据集显示出显著的体积低估。排除这个异常值后,线性相关性得到改善(R2 = 0.9681),斜率为 1.0003。

结论

在 1.5 T 数据集上,DW-SE-sshEPI 的脑容积对大多数患者来说可以非常准确,对于大多数患者来说,主要的磁场不均匀性是由典型的组织界面(例如空气-组织或骨-组织)和典型的牙填充物引起的,而不是由较大的金属植入物引起的。

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