Cao Yang, Cai Zhijie, Shen Enhua, Shen Wei, Chen Xin, Gu Fanji, Shou Tiande
Center for Brain Science Research, School of Life Sciences, Fudan University, 220 Handan Road, Shanghai 200433, PR China.
J Neurosci Methods. 2007 Jan 15;159(1):181-6. doi: 10.1016/j.jneumeth.2006.06.023. Epub 2006 Jul 31.
Optical imaging based on intrinsic signals is a powerful method to visualize the activities of neural assembly in the cortex of animals in vivo, especially the detailed functional architecture of the visual cortex. Here, a new index, two-dimensional (2D) C0 complexity has been used to give a quantitative measure of the spatial pattern of the neural activity in orientation maps optically recorded from the visual cortex of cats globally. Results show that 2D C0 complexity could be employed to reveal the dynamic process of generating an orientation map in the visual cortex, and describe the variance of the neural responses in cortical area 17 under high and normal intraocular pressure. This suggests that 2D C0 could be used as a new quantitative measure for analyzing the intrinsic signal optical images.
基于内在信号的光学成像技术是一种强大的方法,可在活体动物的大脑皮层中可视化神经集群的活动,尤其是视觉皮层的详细功能结构。在此,一种新的指标——二维(2D)C0复杂度被用于定量测量从猫的视觉皮层全局光学记录的方位图中神经活动的空间模式。结果表明,二维C0复杂度可用于揭示视觉皮层中方位图生成的动态过程,并描述高眼压和正常眼压下17区皮层神经反应的差异。这表明二维C0可作为分析内在信号光学图像的一种新的定量测量方法。