Kopell Nancy, Kramer Mark A, Malerba Paola, Whittington Miles A
Department of Mathematics and Statistics, Boston University Boston, MA, USA.
Front Hum Neurosci. 2010 Nov 2;4:187. doi: 10.3389/fnhum.2010.00187. eCollection 2010.
This essay discusses the relationship between the physiology of rhythms and potential functional roles. We focus on how the biophysics underlying different rhythms can give rise to different abilities of a network to form and manipulate cell assemblies. We also discuss how changes in the modulatory setting of the rhythms can change the flow of information through cortical circuits, again tying physiology to computation. We suggest that diverse rhythms, or variations of a rhythm, can support different components of a cognitive act, with multiple rhythms potentially playing multiple roles.
本文讨论了节律生理学与潜在功能作用之间的关系。我们关注不同节律背后的生物物理学如何能够产生网络形成和操纵细胞集合的不同能力。我们还讨论了节律调节设置的变化如何能够改变通过皮层回路的信息流,再次将生理学与计算联系起来。我们认为,多样的节律或节律的变化能够支持认知行为的不同组成部分,多种节律可能发挥多种作用。