Kim Jung Hwan, Taylor Amanda J, Himmelbach Marc, Hagberg Gisela E, Scheffler Klaus, Ress David
Department of Neuroscience, Baylor College of Medicine, Houston, TX, United States.
Division of Neuropsychology, Center of Neurology, Hertie-Institute for Clinical Brain Research, University of Tübingen, Tübingen, Germany.
Front Neurosci. 2022 Oct 11;16:1009295. doi: 10.3389/fnins.2022.1009295. eCollection 2022.
Subcortical brain regions are absolutely essential for normal human function. These phylogenetically early brain regions play critical roles in human behaviors such as the orientation of attention, arousal, and the modulation of sensory signals to cerebral cortex. Despite the critical health importance of subcortical brain regions, there has been a dearth of research on their neurovascular responses. Blood oxygen level dependent (BOLD) functional MRI (fMRI) experiments can help fill this gap in our understanding. The BOLD hemodynamic response function (HRF) evoked by brief (<4 s) neural activation is crucial for the interpretation of fMRI results because linear analysis between neural activity and the BOLD response relies on the HRF. Moreover, the HRF is a consequence of underlying local blood flow and oxygen metabolism, so characterization of the HRF enables understanding of neurovascular and neurometabolic coupling. We measured the subcortical HRF at 9.4T and 3T with high spatiotemporal resolution using protocols that enabled reliable delineation of HRFs in individual subjects. These results were compared with the HRF in visual cortex. The HRF was faster in subcortical regions than cortical regions at both field strengths. There was no significant undershoot in subcortical areas while there was a significant post-stimulus undershoot that was tightly coupled with its peak amplitude in cortex. The different BOLD temporal dynamics indicate different vascular dynamics and neurometabolic responses between cortex and subcortical nuclei.
大脑皮质下区域对于人类正常功能绝对至关重要。这些在系统发育上较早出现的脑区在人类行为中发挥着关键作用,如注意力定向、觉醒以及对传入大脑皮层的感觉信号进行调制。尽管大脑皮质下区域对健康至关重要,但对其神经血管反应的研究却很匮乏。基于血氧水平依赖(BOLD)的功能磁共振成像(fMRI)实验有助于填补我们在这方面理解的空白。由短暂(<4秒)神经激活诱发的BOLD血液动力学反应函数(HRF)对于解释fMRI结果至关重要,因为神经活动与BOLD反应之间的线性分析依赖于HRF。此外,HRF是潜在局部血流和氧代谢的结果,因此对HRF的特征描述有助于理解神经血管和神经代谢耦合。我们使用能够可靠描绘个体受试者HRF的方案,在9.4T和3T场强下以高时空分辨率测量了皮质下HRF。将这些结果与视觉皮层中的HRF进行了比较。在两个场强下,皮质下区域的HRF都比皮质区域更快。皮质下区域没有明显的负向波,而在皮层中存在明显的刺激后负向波,且与峰值幅度紧密相关。不同的BOLD时间动态表明皮层和皮质下核之间存在不同的血管动态和神经代谢反应。