Hatton G I
Department of Neuroscience, 135, University of California, Riverside, California 92521, USA.
Cell Biol Int. 1998 Nov;22(11-12):765-80. doi: 10.1006/cbir.1998.0386.
Electrotonic coupling among neurons in the vertebrate, and more specifically the mammalian, brain has now been demonstrated to exist in all major brain subdivisions and in the spinal cord. For many of these brain areas, recent studies have investigated the possibilities of modulation of that coupling by synaptically released transmitters and/or neuromodulators. Reviewed here is the evidence for coupling, the synaptically related factors that play roles in up- or downregulation of this type of intercellular interaction and, to the extent that they have been investigated, the intracellular mechanisms operative in changing the extent of coupled networks in the brain. The functional significance of coupling and its modulation is discussed for some of these areas.
现已证明,脊椎动物尤其是哺乳动物大脑中的神经元之间存在电紧张耦合,且这种耦合存在于所有主要脑区和脊髓中。对于其中许多脑区,近期研究探讨了突触释放的递质和/或神经调质对这种耦合进行调节的可能性。本文回顾了耦合的证据、在这种细胞间相互作用的上调或下调中发挥作用的与突触相关的因素,以及在已进行研究的范围内,大脑中改变耦合网络范围的细胞内机制。还讨论了其中一些脑区耦合及其调节的功能意义。