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首页> 外文期刊>Brain imaging and behavior >Volumetric comparison of hippocampal subfields extracted from 4-minute accelerated vs. 8-minute high-resolution T2-weighted 3T MRI scans
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Volumetric comparison of hippocampal subfields extracted from 4-minute accelerated vs. 8-minute high-resolution T2-weighted 3T MRI scans

机译:从4分钟加速与8分钟的高分辨率T2加权3T MRI扫描中提取的海马子场的体积比较

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The hippocampus has been widely studied using neuroimaging, as it plays an important role in memory and learning. However, hippocampal subfield information is difficult to capture by standard magnetic resonance imaging (MRI) techniques. To facilitate morphometric study of hippocampal subfields, ADNI introduced a high resolution (0.4mm in plane) T2-weighted turbo spin-echo sequence that requires 8min. With acceleration, the protocol can be acquired in 4min. We performed a comparative study of hippocampal subfield volumes using standard and accelerated protocols on a Siemens Prisma 3T MRI in an independent sample of older adults that included 10 cognitively normal controls, 9 individuals with subjective cognitive decline, 10 with mild cognitive impairment, and 6 with a clinical diagnosis of Alzheimer's disease (AD). The Automatic Segmentation of Hippocampal Subfields (ASHS) software was used to segment 9 primary labeled regions including hippocampal subfields and neighboring cortical regions. Intraclass correlation coefficients were computed for reliability tests between 4 and 8min scans within and across the four groups. Pairwise group analyses were performed, covaried for age, sex and total intracranial volume, to determine whether the patterns of group differences were similar using 4 vs. 8min scans. The 4 and 8min protocols, analyzed by ASHS segmentation, yielded similar volumetric estimates for hippocampal subfields as well as comparable patterns of differences between study groups. The accelerated protocol can provide reliable imaging data for investigation of hippocampal subfields in AD-related MRI studies and the decreased scan time may result in less vulnerability to motion.
机译:海马已经使用神经影像动物广泛研究,因为它在记忆和学习中起着重要作用。然而,通过标准磁共振成像(MRI)技术难以捕获海马子场信息。为了促进海马子场的形态测量研究,ADNI在需要8min的高分辨率(沿平面0.4mm)T2加权涡轮旋转回波序列。通过加速,可以在4分钟内获得协议。我们在Siemens Prisma 3T MRI中使用标准和加速方案在较老年人的独立样本中使用标准和加速方案进行了对比较研究,其中包括10个认知正常对照,9名具有主观认知下降的9个个人,具有轻度认知障碍,6阿尔茨海默病(AD)的临床诊断。海马子场(ASHS)软件的自动分割用于将9个主要标记区域分段,包括海马子场和邻近皮质区域。在四组内部和跨越四组的4至8min扫描之间的可靠性测试计算了内部相关系数。进行成对组分析,调节为年龄,性别和总颅内体积,以确定组差异是否相似使用4 vs.8min扫描。通过灰分分割分析的4和8min方案产生了类似的海马子场的相似体积估计,以及研究组之间的差异模式。加速协议可以提供可靠的成像数据,用于调查AD相关的MRI研究中的海马子场,并且减少的扫描时间可能导致易受运动的脆弱性。

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