Vascular and neural basis of the BOLD signal

被引:79
作者
Drew, Patrick J. [1 ,2 ,3 ]
机构
[1] Penn State Univ, Dept Engn Sci & Mech, 227 Hammond Bldg, University Pk, PA 16802 USA
[2] Penn State Univ, Dept Biomed Engn, University Pk, PA 16802 USA
[3] Penn State Univ, Dept Neurosurg, University Pk, PA 16802 USA
基金
美国国家卫生研究院;
关键词
IN-VIVO; HEMODYNAMIC-RESPONSES; PYRAMIDAL NEURONS; BLOOD-VOLUME; VOLUNTARY LOCOMOTION; CAPILLARY PERICYTES; LAMINAR DIFFERENCES; CA2+ RESPONSES; VISUAL-CORTEX; FMRI SIGNALS;
D O I
10.1016/j.conb.2019.06.004
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Neural activity in the brain is usually coupled to increases in local cerebral blood flow, leading to the increase in oxygenation that generates the BOLD fMRI signal. Recent work has begun to elucidate the vascular and neural mechanisms underlying the BOLD signal. The dilatory response is distributed throughout the vascular network. Arteries actively dilate within a second following neural activity increases, while venous distensions are passive and have a time course that last tens of seconds. Vasodilation, and thus local blood flow, is controlled by the activity of both neurons and astrocytes via multiple different pathways. The relationship between sensory-driven neural activity and the vascular dynamics in sensory areas are well-captured with a linear convolution model. However, depending on the behavioral state or brain region, the coupling between neural activity and hemodynamic signals can be weak or even inverted.
引用
收藏
页码:61 / 69
页数:9
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