Towards whole brain mapping of the hemodynamic response function.

IF 4.5 2区 医学 Q1 ENDOCRINOLOGY & METABOLISM
Fabio Mangini, Marta Moraschi, Daniele Mascali, Maria Guidi, Michela Fratini, Silvia Mangia, Mauro DiNuzzo, Fabrizio Frezza, Federico Giove
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引用次数: 0

Abstract

Functional magnetic resonance imaging time-series are conventionally processed by linear modelling the evoked response as the convolution of the experimental conditions with a stereotyped hemodynamic response function (HRF). However, the neural signal in response to a stimulus can vary according to task, brain region, and subject-specific conditions. Moreover, HRF shape has been suggested to carry physiological information. The BOLD signal across a range of sensorial and cognitive tasks was fitted using a sine series expansion, and modelled signals were deconvolved, thus giving rise to a task-specific deconvolved HRF (dHRF), which was characterized in terms of amplitude, latency, time-to-peak and full-width at half maximum for each task. We found that the BOLD response shape changes not only across activated regions and tasks, but also across subjects despite the age homogeneity of the cohort. Largest variabilities were observed in mean amplitude and latency across tasks and regions, while time-to-peak and full width at half maximum were relatively more consistent. Additionally, the dHRF was found to deviate from canonicity in several brain regions. Our results suggest that the choice of a standard, uniform HRF may be not optimal for all fMRI analyses and may lead to model misspecifications and statistical bias.

血流动力学反应功能的全脑制图。
功能磁共振成像时间序列的传统处理方法是将诱发反应线性建模为实验条件与定型血流动力学反应函数(HRF)的卷积。然而,对刺激作出反应的神经信号可以根据任务、大脑区域和受试者的特定条件而变化。此外,HRF形状被认为携带生理信息。使用正弦级数展开拟合一系列感官和认知任务中的BOLD信号,并对建模信号进行反卷积,从而产生特定于任务的反卷积HRF (dHRF),该HRF的特征包括每个任务的振幅、延迟、峰值时间和半最大值时的全宽度。我们发现,BOLD反应形状不仅在不同的激活区域和任务之间发生变化,而且在不同的受试者之间也发生变化,尽管队列的年龄同质性。在不同任务和区域的平均振幅和潜伏期中观察到最大的变化,而峰值时间和半最大值的全宽度相对更一致。此外,发现dHRF在几个脑区偏离正常性。我们的研究结果表明,选择一个标准的、统一的HRF可能不是所有fMRI分析的最佳选择,并可能导致模型规格错误和统计偏差。
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来源期刊
Journal of Cerebral Blood Flow and Metabolism
Journal of Cerebral Blood Flow and Metabolism 医学-内分泌学与代谢
CiteScore
12.00
自引率
4.80%
发文量
300
审稿时长
3 months
期刊介绍: JCBFM is the official journal of the International Society for Cerebral Blood Flow & Metabolism, which is committed to publishing high quality, independently peer-reviewed research and review material. JCBFM stands at the interface between basic and clinical neurovascular research, and features timely and relevant research highlighting experimental, theoretical, and clinical aspects of brain circulation, metabolism and imaging. The journal is relevant to any physician or scientist with an interest in brain function, cerebrovascular disease, cerebral vascular regulation and brain metabolism, including neurologists, neurochemists, physiologists, pharmacologists, anesthesiologists, neuroradiologists, neurosurgeons, neuropathologists and neuroscientists.
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