首页> 美国卫生研究院文献>Journal of Cerebral Blood Flow Metabolism >Comparison of cerebral blood flow and structural penumbras in relation to white matter hyperintensities: A multi-modal magnetic resonance imaging study
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Comparison of cerebral blood flow and structural penumbras in relation to white matter hyperintensities: A multi-modal magnetic resonance imaging study

机译:与白质高信号相关的脑血流和结构半影的比较:多模态磁共振成像研究

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摘要

Normal-appearing white matter (NAWM) surrounding WMHs is associated with decreased structural integrity and perfusion, increased risk of WMH growth, and is referred to as the WMH penumbra. Studies comparing structural and cerebral blood flow (CBF) penumbras within the same individuals are lacking, however, and would facilitate our understanding of mechanisms resulting in WM damage. This study aimed to compare both CBF and structural WMH penumbras in non-demented aging. Eighty-two elderly volunteers underwent 3T-MRI including fluid attenuated inversion recovery (FLAIR), pulsed arterial spin labeling and diffusion tensor imaging (DTI). A NAWM layer mask was generated for periventricular and deep WMHs. Mean CBF, DTI-fractional anisotropy (DTI-FA), DTI-mean diffusivity (DTI-MD) and FLAIR intensity for WMHs and its corresponding NAWM layer masks were computed and compared against its mean within total brain NAWM using mixed effects models. For both periventricular and deep WMHs, DTI-FA, DTI-MD and FLAIR intensity changes extended 2-9 mm surrounding WMHs (p ≤ 0.05), while CBF changes extended 13-14 mm (p ≤ 0.05). The CBF penumbra is more extensive than structural penumbras in relation to WMHs and includes WM tissue both with and without microstructural changes. Findings implicate CBF as a potential target for the prevention of both micro and macro structural WM damage.
机译:WMH周围正常出现的白质(NAWM)与结构完整性和灌注下降,WMH生长的风险增加有关,被称为WMH半影。然而,缺乏在同一个人中比较结构和脑血流(CBF)半影的研究,这将有助于我们了解导致WM损伤的机制。这项研究旨在比较非痴呆性衰老中的CBF和结构WMH半影。八十二名老年志愿者接受了3T-MRI检查,包括液体衰减反转恢复(FLAIR),脉冲动脉自旋标记和弥散张量成像(DTI)。为脑室周围和深部WMH生成了NAWM层掩模。计算了WMH及其相应NAWM层掩模的平均CBF,DTI分数各向异性(DTI-FA),DTI平均扩散率(DTI-MD)和FLAIR强度,并使用混合效应模型将其与总脑NAWM中的平均值进行比较。对于脑室和深部WMH,DTI-FA,DTI-MD和FLAIR强度变化在WMH周围扩展2-9 mm(p≤0.05),而CBF变化在13-14 mm(p≤0.05)。就WMH而言,CBF半影比结构半影更为广泛,并且包括具有或不具有微结构变化的WM组织。研究结果表明CBF是预防微观和宏观结构WM损害的潜在目标。

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