Xiao Jianqiang, Cerminara Nadia L, Kotsurovskyy Yuriy, Aoki Hanako, Burroughs Amelia, Wise Andrew K, Luo Yuanjun, Marshall Sarah P, Sugihara Izumi, Apps Richard, Lang Eric J
Department of Neuroscience & Physiology, New York University School of Medicine, New York, New York, United States of America.
School of Physiology and Pharmacology, University of Bristol, Bristol, United Kingdom.
PLoS One. 2014 Aug 21;9(8):e105633. doi: 10.1371/journal.pone.0105633. eCollection 2014.
In contrast to the uniform anatomy of the cerebellar cortex, molecular and physiological studies indicate that significant differences exist between cortical regions, suggesting that the spiking activity of Purkinje cells (PCs) in different regions could also show distinct characteristics. To investigate this possibility we obtained extracellular recordings from PCs in different zebrin bands in crus IIa and vermis lobules VIII and IX in anesthetized rats in order to compare PC firing characteristics between zebrin positive (Z+) and negative (Z-) bands. In addition, we analyzed recordings from PCs in the A2 and C1 zones of several lobules in the posterior lobe, which largely contain Z+ and Z- PCs, respectively. In both datasets significant differences in simple spike (SS) activity were observed between cortical regions. Specifically, Z- and C1 PCs had higher SS firing rates than Z+ and A2 PCs, respectively. The irregularity of SS firing (as assessed by measures of interspike interval distribution) was greater in Z+ bands in both absolute and relative terms. The results regarding systematic variations in complex spike (CS) activity were less consistent, suggesting that while real differences can exist, they may be sensitive to other factors than the cortical location of the PC. However, differences in the interactions between SSs and CSs, including the post-CS pause in SSs and post-pause modulation of SSs, were also consistently observed between bands. Similar, though less strong trends were observed in the zonal recordings. These systematic variations in spontaneous firing characteristics of PCs between zebrin bands in vivo, raises the possibility that fundamental differences in information encoding exist between cerebellar cortical regions.
与小脑皮质统一的解剖结构不同,分子和生理学研究表明皮质区域之间存在显著差异,这表明不同区域浦肯野细胞(PC)的放电活动也可能表现出不同特征。为了探究这种可能性,我们在麻醉大鼠的小脑IIa脚和蚓部小叶VIII及IX的不同斑马纹带中对PC进行细胞外记录,以比较斑马纹阳性(Z+)和阴性(Z-)带之间PC的放电特征。此外,我们分析了后叶几个小叶的A2和C1区中PC的记录,这两个区域分别主要包含Z+和Z-的PC。在这两个数据集中,均观察到皮质区域之间简单锋电位(SS)活动存在显著差异。具体而言,Z-和C1的PC分别比Z+和A2的PC具有更高的SS放电频率。无论是绝对还是相对而言,Z+带中SS放电的不规则性(通过峰峰间期分布测量评估)都更大。关于复合锋电位(CS)活动系统变化的结果不太一致,这表明虽然可能存在实际差异,但它们可能比PC的皮质位置更易受其他因素影响。然而,在不同带之间也始终观察到SS和CS之间相互作用的差异,包括SS在CS之后出现的暂停以及暂停后对SS的调节。在区域记录中也观察到了类似但不太明显的趋势。体内斑马纹带之间PC自发放电特征的这些系统变化,增加了小脑皮质区域之间在信息编码上存在根本差异的可能性。