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Reliability of the depth-dependent high-resolution BOLD hemodynamic response in human visual cortex and vicinity

机译:深度依赖性高分辨率BOLD血流动力学反应在人类视觉皮层及其附近的可靠性

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摘要

Functional magnetic resonance imaging (fMRI) often relies on a hemodynamic response function (HRF), the stereotypical blood oxygen level dependent (BOLD) response elicited by a brief (<4 seconds) stimulus. Early measurements of the HRF used coarse spatial resolutions (≥3 mm voxels) that would generally include contributions from white matter, gray matter, and the extra-pial compartment (the space between the pial surface and skull including pial blood vessels) within each voxel. To resolve these contributions, high-resolution fMRI (0.9-mm voxels) was performed at 3T in early visual cortex and its apposed white-matter and extra-pial compartments. The results characterized the depth dependence of the HRF and its reliability during nine fMRI sessions. Significant HRFs were observed in white-matter and extra-pial compartments as well as in gray matter. White-matter HRFs were faster and weaker than in the gray matter, while extra-pial HRFs were comparatively slower and stronger. Depth trends of the HRF peak amplitude were stable throughout a broad depth range that included all three compartments for each session. Across sessions, however, the depth trend of HRF peak amplitudes was stable only in the white matter and deep-intermediate gray matter, while there were strong session-to-session variations in the superficial gray matter and the extra-pial compartment. Thus, high-resolution fMRI can resolve significant and dynamically distinct HRFs in gray matter, white matter, and extra-pial compartments.
机译:功能磁共振成像(fMRI)通常依赖于血流动力学反应功能(HRF),即短暂(<4秒)刺激引起的定型血氧水平依赖性(BOLD)反应。 HRF的早期测量使用了粗糙的空间分辨率(≥3 mm体素),通常包括每个体素中的白质,灰质和额外的车厢(在皮层表面和颅骨之间的空间,包括皮层血管)的贡献。为了解决这些问题,在早期视皮层及其相对的白质和椎外隔室中于3T进行了高分辨率fMRI(0.9毫米体素)。结果表征了在9个fMRI会话中HRF的深度依赖性及其可靠性。在白色和隔室以及灰质中观察到了显着的HRF。白质HRF比灰质更快和更弱,而椎外HRF相对更慢和更强。 HRF峰值振幅的深度趋势在包括每个会话的所有三个隔室在内的较宽深度范围内保持稳定。然而,在整个疗程中,HRF峰值幅度的深度趋势仅在白质和深中间灰质中是稳定的,而在表层灰质和脉外室中,各个疗程之间的变化很大。因此,高分辨率fMRI可以解析灰质,白质和椎外隔室中明显且动态不同的HRF。

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