Bains J S, Longacher J M, Staley K J
Departments of Neurology and Pediatrics, B182, University of Colorado Health Sciences Center, 4200 East Ninth Avenue, Denver, Colorado 80262, USA.
Nat Neurosci. 1999 Aug;2(8):720-6. doi: 10.1038/11184.
In hippocampal slices, synchronous CA3 network activity induced persistent strengthening of active positive-feedback synapses. This altered network operation by increasing probability of future synchronous network activation. Long-term depression of synaptic strength induced by partial blockade of NMDA receptors during synchronous network activity reversed changes in probability of spontaneous network activation. These results suggest that specific network activity patterns selectively alter strength of active synapses. Stable, reversible alterations in network activity can also be effected by corresponding alterations in synaptic strength. These findings confirm the Hebb memory model at the neural-network level and suggest new therapies for pathological patterns of network activity in epilepsy.
在海马切片中,同步的CA3网络活动诱导了活跃的正反馈突触的持续增强。这通过增加未来同步网络激活的概率改变了网络运作。在同步网络活动期间,NMDA受体部分阻断诱导的突触强度长期抑制逆转了自发网络激活概率的变化。这些结果表明,特定的网络活动模式选择性地改变活跃突触的强度。突触强度的相应改变也可以实现网络活动中稳定、可逆的改变。这些发现证实了神经网络水平的赫布记忆模型,并为癫痫中网络活动的病理模式提出了新的治疗方法。