Liu Peiying, Hu Beini, Kartchner Lincoln, Joshi Parimal, Xu Cuimei, Jiang Dengrong
Department of Diagnostic Radiology and Nuclear Medicine, University of Maryland School of Medicine, Baltimore, MD, United States.
Department of Radiology, Johns Hopkins University School of Medicine, Baltimore, MD, United States.
Front Neuroimaging. 2023 Jun 26;2:1205459. doi: 10.3389/fnimg.2023.1205459. eCollection 2023.
Cerebrovascular reactivity (CVR) is typically assessed with a carbon dioxide (CO) stimulus combined with BOLD fMRI. Recently, resting-state (RS) BOLD fMRI has been shown capable of generating CVR maps, providing a potential for broader CVR applications in neuroimaging studies. However, prior RS-CVR studies have primarily been performed at a spatial resolution of 3-4 mm voxel sizes. It remains unknown whether RS-CVR can also be obtained at high-resolution without major degradation in image quality. In this study, we investigated RS-CVR mapping based on resting-state BOLD MRI across a range of spatial resolutions in a group of healthy subjects, in an effort to examine the feasibility of RS-CVR measurement at high resolution. Comparing the results of RS-CVR with the maps obtained by the conventional CO2-inhalation method, our results suggested that good CVR map quality can be obtained at a voxel size as small as 2 mm isotropic. Our results also showed that, RS-CVR maps revealed resolution-dependent sensitivity. However, even at a high resolution of 2 mm isotropic voxel size, the voxel-wise sensitivity is still greater than that of typical task-evoked fMRI. Scan duration affected the sensitivity of RS-CVR mapping, but had no significant effect on its accuracy. These findings suggest that RS-CVR mapping can be applied at a similar resolution as state-of-the-art fMRI studies, which will broaden the use of CVR mapping in basic science and clinical applications including retrospective analysis of previously collected fMRI data.
脑血管反应性(CVR)通常通过二氧化碳(CO₂)刺激结合血氧水平依赖性功能磁共振成像(BOLD fMRI)来评估。最近,静息态(RS)BOLD fMRI已被证明能够生成CVR图谱,为神经影像学研究中更广泛的CVR应用提供了潜力。然而,先前的RS-CVR研究主要是在体素大小为3-4毫米的空间分辨率下进行的。目前尚不清楚在不显著降低图像质量的情况下,是否也能在高分辨率下获得RS-CVR。在本研究中,我们在一组健康受试者中,基于静息态BOLD MRI在一系列空间分辨率下研究了RS-CVR图谱,以检验高分辨率下RS-CVR测量的可行性。将RS-CVR的结果与传统二氧化碳吸入法获得的图谱进行比较,我们的结果表明,在各向同性体素大小小至2毫米时,仍可获得良好的CVR图谱质量。我们的结果还表明,RS-CVR图谱显示出分辨率依赖性敏感性。然而,即使在各向同性体素大小为2毫米的高分辨率下,体素级敏感性仍高于典型的任务诱发fMRI。扫描持续时间影响RS-CVR图谱的敏感性,但对其准确性无显著影响。这些发现表明,RS-CVR图谱可以在与现有fMRI研究相似的分辨率下应用,这将拓宽CVR图谱在基础科学和临床应用中的使用范围,包括对先前收集的fMRI数据进行回顾性分析。