Vazquez Alberto L, Fukuda Mitsuhiro, Crowley Justin C, Kim Seong-Gi
Neuroimaging Laboratory, Department of Radiology, Department of Bioengineering.
Neuroimaging Laboratory, Department of Radiology.
Cereb Cortex. 2014 Nov;24(11):2908-19. doi: 10.1093/cercor/bht147. Epub 2013 Jun 12.
Hemodynamic responses are commonly used to map brain activity; however, their spatial limits have remained unclear because of the lack of a well-defined and malleable spatial stimulus. To examine the properties of neural activity and hemodynamic responses, multiunit activity, local field potential, cerebral blood volume (CBV)-sensitive optical imaging, and laser Doppler flowmetry were measured from the somatosensory cortex of transgenic mice expressing Channelrhodopsin-2 in cortex Layer 5 pyramidal neurons. The magnitude and extent of neural and hemodynamic responses were modulated using different photo-stimulation parameters and compared with those induced by somatosensory stimulation. Photo-stimulation-evoked spiking activity across cortical layers was similar to forelimb stimulation, although their activity originated in different layers. Hemodynamic responses induced by forelimb- and photo-stimulation were similar in magnitude and shape, although the former were slightly larger in amplitude and wider in extent. Altogether, the neurovascular relationship differed between these 2 stimulation pathways, but photo-stimulation-evoked changes in neural and hemodynamic activities were linearly correlated. Hemodynamic point spread functions were estimated from the photo-stimulation data and its full-width at half-maximum ranged between 103 and 175 µm. Therefore, submillimeter functional structures separated by a few hundred micrometers may be resolved using hemodynamic methods, such as optical imaging and functional magnetic resonance imaging.
血流动力学反应通常用于绘制大脑活动图;然而,由于缺乏明确定义且可调节的空间刺激,其空间局限性仍不明确。为了研究神经活动和血流动力学反应的特性,我们对在第5层皮质锥体神经元中表达通道视紫红质-2的转基因小鼠的体感皮质进行了多单元活动、局部场电位、脑血容量(CBV)敏感光学成像和激光多普勒血流测量。使用不同的光刺激参数调节神经和血流动力学反应的幅度和范围,并与体感刺激诱导的反应进行比较。尽管光刺激诱发的跨皮质层的尖峰活动起源于不同层,但其与前肢刺激相似。前肢刺激和光刺激诱发的血流动力学反应在幅度和形状上相似,尽管前者的幅度略大且范围更宽。总之,这两种刺激途径之间的神经血管关系不同,但光刺激诱发的神经和血流动力学活动变化呈线性相关。根据光刺激数据估计血流动力学点扩散函数,其半高宽在103至175 µm之间。因此,使用血流动力学方法,如光学成像和功能磁共振成像,可能分辨出相隔几百微米的亚毫米功能结构。