Howard Hughes Medical Institute, The Rockefeller University, New York, NY, USA.
Bioessays. 2012 Jun;34(6):458-65. doi: 10.1002/bies.201100185. Epub 2012 Mar 6.
Powerful ultrastructural tools are providing new insights into neuronal circuits, revealing a wealth of anatomically-defined synaptic connections. These wiring diagrams are incomplete, however, because functional connectivity is actively shaped by neuromodulators that modify neuronal dynamics, excitability, and synaptic function. Studies of defined neural circuits in crustaceans, C. elegans, Drosophila, and the vertebrate retina have revealed the ability of modulators and sensory context to reconfigure information processing by changing the composition and activity of functional circuits. Each ultrastructural connectivity map encodes multiple circuits, some of which are active and some of which are latent at any given time.
强大的超微结构工具正在为神经元回路提供新的见解,揭示了大量解剖定义的突触连接。然而,这些布线图并不完整,因为功能连接是由神经调质主动塑造的,它们可以改变神经元的动力学、兴奋性和突触功能。对甲壳动物、秀丽隐杆线虫、果蝇和脊椎动物视网膜中特定神经回路的研究揭示了调质和感觉环境通过改变功能回路的组成和活动来重新配置信息处理的能力。每个超微结构连接图都编码了多个回路,其中一些在任何给定时间都是活跃的,而另一些则是潜在的。