Takashima Ichiro, Kajiwara Riichi
Human Informatics and Interaction Research Institute, National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba 305-8568, Japan.
Department of Electronics and Bioinformatics, School of Science and Technology, Meiji University, Kawasaki 214-8571, Japan.
Brain Sci. 2021 Sep 29;11(10):1294. doi: 10.3390/brainsci11101294.
Studies using functional magnetic resonance imaging assume that hemodynamic responses have roughly linear relationships with underlying neural activity. However, to accurately investigate the neurovascular transfer function and compare its variability across brain regions, it is necessary to obtain full-field imaging of both electrophysiological and hemodynamic responses under various stimulus conditions with superior spatiotemporal resolution. Optical imaging combined with voltage-sensitive dye (VSD) and intrinsic signals (IS) is a powerful tool to address this issue. We performed VSD and IS imaging in the primary (S1) and secondary (S2) somatosensory cortices of rats to obtain optical maps of whisker-evoked responses. There were characteristic differences in sensory responses between the S1 and S2 cortices: VSD imaging revealed more localized excitatory and stronger inhibitory neural activity in S1 than in S2. IS imaging revealed stronger metabolic responses in S1 than in S2. We calculated the degree of response to compare the sensory responses between cortical regions and found that the ratio of the degree of response of S2 to S1 was similar, irrespective of whether the ratio was determined by VSD or IS imaging. These results suggest that neurovascular coupling does not vary between the S1 and S2 cortices.
使用功能磁共振成像的研究假定血液动力学反应与潜在的神经活动大致呈线性关系。然而,为了准确研究神经血管传递函数并比较其在不同脑区的变异性,有必要在各种刺激条件下以优异的时空分辨率获得电生理和血液动力学反应的全场成像。结合电压敏感染料(VSD)和内在信号(IS)的光学成像就是解决这一问题的有力工具。我们在大鼠的初级(S1)和次级(S2)体感皮层中进行了VSD和IS成像,以获得触须诱发反应的光学图谱。S1和S2皮层的感觉反应存在特征差异:VSD成像显示,S1中的兴奋性神经活动比S2更局限,抑制性神经活动更强。IS成像显示,S1中的代谢反应比S2更强。我们计算了反应程度以比较不同皮层区域之间的感觉反应,发现S2与S1的反应程度之比相似,无论该比值是通过VSD还是IS成像确定的。这些结果表明,S1和S2皮层之间的神经血管耦合没有差异。