Turrigiano Gina G
Department of Biology, Brandeis University, Waltham, MA 02493, USA
Philos Trans R Soc Lond B Biol Sci. 2017 Mar 5;372(1715). doi: 10.1098/rstb.2016.0258.
It has become widely accepted that homeostatic and Hebbian plasticity mechanisms work hand in glove to refine neural circuit function. Nonetheless, our understanding of how these fundamentally distinct forms of plasticity compliment (and under some circumstances interfere with) each other remains rudimentary. Here, I describe some of the recent progress of the field, as well as some of the deep puzzles that remain. These include unravelling the spatial and temporal scales of different homeostatic and Hebbian mechanisms, determining which aspects of network function are under homeostatic control, and understanding when and how homeostatic and Hebbian mechanisms must be segregated within neural circuits to prevent interference.This article is part of the themed issue 'Integrating Hebbian and homeostatic plasticity'.
稳态可塑性机制和赫布可塑性机制协同作用以优化神经回路功能,这一观点已被广泛接受。尽管如此,我们对于这些本质上不同的可塑性形式如何相互补充(以及在某些情况下相互干扰)的理解仍然很基础。在这里,我描述了该领域最近的一些进展以及仍然存在的一些深层次难题。这些难题包括解开不同稳态和赫布机制的空间和时间尺度,确定网络功能的哪些方面受稳态控制,以及理解何时以及如何在神经回路中分离稳态和赫布机制以防止干扰。本文是主题为“整合赫布可塑性和稳态可塑性”的特刊的一部分。