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在人类大脑皮层的大部分区域对血流动力学响应函数进行特征描述。

Characterization of the hemodynamic response function across the majority of human cerebral cortex.

机构信息

Department of Neuroscience, Core for Advanced MRI, Baylor College of Medicine, Houston, TX, 77030, USA.

Department of Neuroscience, Core for Advanced MRI, Baylor College of Medicine, Houston, TX, 77030, USA.

出版信息

Neuroimage. 2018 Jun;173:322-331. doi: 10.1016/j.neuroimage.2018.02.061. Epub 2018 Mar 1.

Abstract

A brief (<4 s) period of neural activation evokes a stereotypical sequence of vascular and metabolic events to create the hemodynamic response function (HRF) measured using functional magnetic resonance imaging (fMRI). Linear analysis of fMRI data requires that the HRF be treated as an impulse response, so the character and temporal stability of the HRF are critical issues. Here, a simple audiovisual stimulus combined with a fast-paced task was used to evoke a strong HRF across a majority, ∼77%, of cortex during a single scanning session. High spatiotemporal resolution (2-mm voxels, 1.25-s acquisition time) was used to focus HRF measurements specifically on the gray matter for whole brain. The majority of activated cortex responds with positive HRFs, while ∼27% responds with negative (inverted) HRFs. Spatial patterns of the HRF response amplitudes were found to be similar across subjects. Timing of the initial positive lobe of the HRF was relatively stable across the cortical surface with a mean of 6.1 ± 0.6 s across subjects, yet small but significant timing variations were also evident in specific regions of cortex. The results provide guidance for linear analysis of fMRI data. More importantly, this method provides a means to quantify neurovascular function across most of the brain, with potential clinical utility for the diagnosis of brain pathologies such as traumatic brain injury.

摘要

短暂(<4 秒)的神经激活会引发一系列典型的血管和代谢事件,从而产生使用功能磁共振成像(fMRI)测量的血流动力学响应函数(HRF)。fMRI 数据的线性分析要求将 HRF 视为脉冲响应,因此 HRF 的特征和时间稳定性是关键问题。在这里,使用简单的视听刺激结合快节奏任务,在单次扫描过程中引发了大多数(约 77%)皮层的强烈 HRF。高时空分辨率(2 毫米体素,1.25 秒采集时间)用于专门针对整个大脑的灰质进行 HRF 测量。大多数激活的皮层以正 HRF 做出响应,而约 27%以负(倒置)HRF 做出响应。发现 HRF 响应幅度的空间模式在受试者之间相似。HRF 初始正叶的时间在皮质表面相对稳定,平均为 6.1 ± 0.6 秒,但是在特定的皮层区域也存在明显的小但显著的时间变化。该结果为 fMRI 数据的线性分析提供了指导。更重要的是,该方法提供了一种在大脑大部分区域量化神经血管功能的方法,对于创伤性脑损伤等脑部疾病的诊断具有潜在的临床应用价值。

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