Heck D H, Thach W T, Keating J G
Department of Anatomy and Neurobiology, University of Tennessee Health Science Center, Memphis, TN 38103, USA.
Proc Natl Acad Sci U S A. 2007 May 1;104(18):7658-63. doi: 10.1073/pnas.0609966104. Epub 2007 Apr 23.
In trained reaching rats, we recorded simple spikes of pairs of Purkinje cells that, with respect to each other, were either aligned on a beam of shared parallel fibers or instead were located off beam. Rates of simple spike firing in both on-beam and off-beam Purkinje cell pairs commonly showed great variety in depth of modulation during reaching behavior. But with respect to timing, on-beam Purkinje cell pairs had simple spikes that were tightly time-locked to each other (either delayed or simultaneous) and to movement, despite the variability in rate. By contrast, off-beam Purkinje cell pairs had simple spikes that were not time-locked to each other, neither delayed nor simultaneous. We discuss the implications of these observations for the cerebellar role in timing and coordinating movement.
在经过训练的抓挠大鼠中,我们记录了成对浦肯野细胞的简单锋电位,这些成对的浦肯野细胞相对于彼此,要么排列在一束共享的平行纤维上,要么位于束外。在抓挠行为期间,束上和束外浦肯野细胞对的简单锋电位发放率通常在调制深度上表现出很大的差异。但在时间方面,尽管发放率存在变化,束上浦肯野细胞对的简单锋电位彼此之间以及与运动紧密时间锁定(延迟或同步)。相比之下,束外浦肯野细胞对的简单锋电位彼此之间没有时间锁定,既不延迟也不同步。我们讨论了这些观察结果对小脑在时间和协调运动中作用的影响。