Gagolewicz Peter J, Dringenberg Hans C
Centre for Neuroscience Studies, Queen's University, Kingston, Ontario K7L 3N6, Canada.
Neurosci Lett. 2009 Oct 2;463(2):130-4. doi: 10.1016/j.neulet.2009.07.052. Epub 2009 Jul 23.
Cholinergic projections originating in the basal forebrain (BF) play important roles in the heterosynaptic facilitation of synaptic strength in various sensory cortices, including the primary visual cortex (V1). Here, using urethane-anesthetized rats, we find that pairing burst stimulation of the BF with single pulse stimulation of the lateral geniculate nucleus (LGN) does not consistently increase field postsynaptic potentials (fPSPs) in V1 elicited by ipsilateral LGN stimulation. However, longer latency fPSPs recorded in V1 in response to stimulation of the contralateral LGN, reflecting crossed, polysynaptic inputs, show significant potentiation when paired with preceding BF stimulation. This synaptic enhancement requires relatively short time intervals between paired BF burst and LGN pulse stimulation (40 ms) and is abolished by systemic or local V1 muscarinic receptor blockade (scopolamine), while systemic nicotinic receptor blockade (mecamylamine) is ineffective. Together, these data provide evidence for a differential capacity for cholinergic/muscarinic-dependent plasticity induction among different signals in V1, with inputs reaching V1 from the contralateral LGN exhibiting potentiation in the face of stable strength in ipsilateral LGN-V1 projections. This preferential readiness for potentiation in crossed fiber systems could serve to amplify binocular responses in V1 elicited by synchronized excitation of ipsi- and contralateral LGN neurons.
起源于基底前脑(BF)的胆碱能投射在包括初级视觉皮层(V1)在内的各种感觉皮层的突触强度异突触易化中发挥重要作用。在这里,我们使用乌拉坦麻醉的大鼠发现,将BF的爆发刺激与外侧膝状体核(LGN)的单脉冲刺激配对,并不能持续增加同侧LGN刺激在V1中诱发的场突触后电位(fPSP)。然而,在V1中记录到的对侧LGN刺激所引发的潜伏期较长的fPSP,反映了交叉的多突触输入,当与之前的BF刺激配对时,显示出显著的增强。这种突触增强需要在配对的BF爆发和LGN脉冲刺激之间有相对较短的时间间隔(40毫秒),并且通过全身或局部V1毒蕈碱受体阻断(东莨菪碱)而被消除,而全身烟碱受体阻断(美加明)则无效。总之,这些数据为V1中不同信号之间胆碱能/毒蕈碱依赖性可塑性诱导的差异能力提供了证据,来自对侧LGN的输入在同侧LGN-V1投射强度稳定的情况下表现出增强。这种交叉纤维系统中增强的优先准备状态可能有助于放大由同侧和对侧LGN神经元同步兴奋在V1中引发的双眼反应。