Zhang L I, Tao H W, Holt C E, Harris W A, Poo M
Department of Biology, University of California at San Diego, La Jolla 92093-0357, USA.
Nature. 1998 Sep 3;395(6697):37-44. doi: 10.1038/25665.
In the developing frog visual system, topographic refinement of the retinotectal projection depends on electrical activity. In vivo whole-cell recording from developing Xenopus tectal neurons shows that convergent retinotectal synapses undergo activity-dependent cooperation and competition following correlated pre- and postsynaptic spiking within a narrow time window. Synaptic inputs activated repetitively within 20 ms before spiking of the tectal neuron become potentiated, whereas subthreshold inputs activated within 20 ms after spiking become depressed. Thus both the initial synaptic strength and the temporal order of activation are critical for heterosynaptic interactions among convergent synaptic inputs during activity-dependent refinement of developing neural networks.
在发育中的青蛙视觉系统中,视网膜顶盖投射的拓扑精细化依赖于电活动。对发育中的非洲爪蟾顶盖神经元进行的体内全细胞记录表明,在狭窄的时间窗口内,相关的突触前和突触后放电后,汇聚的视网膜顶盖突触会经历活动依赖的协同和竞争。在顶盖神经元放电前20毫秒内重复激活的突触输入会增强,而在放电后20毫秒内激活的阈下输入则会减弱。因此,在发育中的神经网络的活动依赖精细化过程中,初始突触强度和激活的时间顺序对于汇聚突触输入之间的异突触相互作用都至关重要。