Shao Xingfeng, Guo Fanhua, Kim JungHwan, Ress David, Zhao Chenyang, Shou Qinyang, Jann Kay, Wang Danny Jj
Laboratory of FMRI Technology (LOFT), Mark & Mary Stevens Neuroimaging and Informatics Institute, Keck School of Medicine, University of Southern California.
Vivian L. Smith Department of Neurosurgery, McGovern Medical School, University of Texas Health Science Center at Houston.
Imaging Neurosci (Camb). 2024;2. doi: 10.1162/imag_a_00311. Epub 2024 Oct 15.
A major challenge for human neuroimaging using functional MRI is the differentiation of neuronal excitation and inhibition which may induce positive and negative BOLD responses. Here we present an innovative multi-contrast laminar functional MRI technique that offers comprehensive and quantitative imaging of neurovascular (CBF, CBV, BOLD) and metabolic (CMRO) responses across cortical layers at 7 Tesla. This technique was first validated through a finger-tapping experiment, revealing 'double-peak' laminar activation patterns within the primary motor cortex. By employing a ring-shaped visual stimulus that elicited positive and negative BOLD responses, we further observed distinct neurovascular and metabolic responses across cortical layers and eccentricities in the primary visual cortex. This suggests potential feedback inhibition of neuronal activities in both superficial and deep cortical layers underlying the negative BOLD signals in the fovea, and also illustrates the neuronal activities in visual areas adjacent to the activated eccentricities.
使用功能磁共振成像(fMRI)进行人类神经成像面临的一个主要挑战是区分可能诱发正性和负性血氧水平依赖(BOLD)反应的神经元兴奋和抑制。在此,我们提出一种创新的多对比度层流功能磁共振成像技术,该技术可在7特斯拉磁场下对皮质各层的神经血管(脑血流量、脑血容量、BOLD)和代谢(脑氧代谢率)反应进行全面且定量的成像。该技术首先通过一项手指敲击实验得到验证,揭示了初级运动皮层内的“双峰”层流激活模式。通过采用一种能诱发正性和负性BOLD反应的环形视觉刺激,我们进一步观察到初级视觉皮层各层和不同偏心度处不同的神经血管和代谢反应。这表明在中央凹负性BOLD信号下方的浅层和深层皮质层中,神经元活动可能存在潜在的反馈抑制,同时也说明了与激活的偏心度相邻的视觉区域中的神经元活动。