Department of Physiology, Juntendo University School of Medicine, Tokyo, Japan.
PLoS One. 2010 May 5;5(5):e10483. doi: 10.1371/journal.pone.0010483.
The neuronal mechanisms for ordering sensory signals in time still need to be clarified despite a long history of research. To address this issue, we recently developed a behavioral task of temporal order judgment in mice. In the present study, we examined the expression of c-Fos, a marker of neural activation, in mice just after they carried out the temporal order judgment task. The expression of c-Fos was examined in C57BL/6N mice (male, n = 5) that were trained to judge the order of two air-puff stimuli delivered bilaterally to the right and left whiskers with stimulation intervals of 50-750 ms. The mice were rewarded with a food pellet when they responded by orienting their head toward the first stimulus (n = 2) or toward the second stimulus (n = 3) after a visual "go" signal. c-Fos-stained cell densities of these mice (test group) were compared with those of two control groups in coronal brain sections prepared at bregma -2, -1, 0, +1, and +2 mm by applying statistical parametric mapping to the c-Fos immuno-stained sections. The expression of c-Fos was significantly higher in the test group than in the other groups in the bilateral barrel fields of the primary somatosensory cortex, the left secondary somatosensory cortex, the dorsal part of the right secondary auditory cortex. Laminar analyses in the primary somatosensory cortex revealed that c-Fos expression in the test group was most evident in layers II and III, where callosal fibers project. The results suggest that temporal order judgment involves processing bilateral somatosensory signals through the supragranular layers of the primary sensory cortex and in the multimodal sensory areas, including marginal zone between the primary somatosensory cortex and the secondary sensory cortex.
尽管已有很长的研究历史,但对于时间上有序感觉信号的神经机制仍需进一步阐明。为解决这一问题,我们最近在小鼠中开发了一种时间顺序判断的行为任务。在本研究中,我们检测了 c-Fos 的表达,这是一种神经激活的标志物,在小鼠完成时间顺序判断任务后立即进行检测。c-Fos 的表达在 C57BL/6N 小鼠(雄性,n=5)中进行检测,这些小鼠接受训练以判断双侧施加于右、左胡须的两个空气脉冲刺激的顺序,刺激间隔为 50-750ms。当小鼠在视觉“go”信号后通过转向第一个刺激(n=2)或第二个刺激(n=3)来做出反应时,它们会得到一个食物颗粒的奖励。在冠状脑切片中,应用统计参数映射对 c-Fos 免疫染色切片进行分析,比较了这些小鼠(实验组)与两个对照组的细胞密度。制备的脑切片在 bregma-2、-1、0、+1 和+2mm 处,通过对 c-Fos 免疫染色切片进行统计参数映射,比较了这些小鼠(实验组)与两个对照组的细胞密度。实验组 c-Fos 的表达在双侧初级体感皮层的桶状皮层、左侧次级体感皮层、右侧次级听觉皮层的背侧部分显著高于其他组。初级体感皮层的分层分析表明,实验组 c-Fos 的表达在投射到联合纤维的 II 层和 III 层最为明显。结果表明,时间顺序判断涉及通过初级感觉皮层的颗粒上层和包括初级体感皮层和次级体感皮层之间的边缘区在内的多模态感觉区域处理双侧体感信号。