Perrett S P, Dudek S M, Eagleman D, Montague P R, Friedlander M J
Department of Neurobiology, University of Alabama at Birmingham, Birmingham, Alabama 35294, USA.
J Neurosci. 2001 Apr 1;21(7):2308-19. doi: 10.1523/JNEUROSCI.21-07-02308.2001.
One Hertz stimulation of afferents for 15 min with constant interstimulus intervals (regular stimulation) can induce long-term depression (LTD) of synaptic strength in the neocortex. However, it is unknown whether natural patterns of low-frequency afferent spike activity induce LTD. Although neurons in the neocortex can fire at overall rates as low as 1 Hz, the intervals between spikes are irregular. This irregular spike activity (and thus, presumably, irregular activation of the synapses of that neuron onto postsynaptic targets) can be approximated by stimulation with Poisson-distributed interstimulus intervals (Poisson stimulation). Therefore, if low-frequency presynaptic spike activity in the intact neocortex is sufficient to induce a generalized LTD of synaptic transmission, then Poisson stimulation, which mimics this spike activity, should induce LTD in slices. We tested this hypothesis by comparing changes in the strength of synapses onto layer 2/3 pyramidal cells induced by regular and Poisson stimulation in slices from adult visual cortex. We find that regular stimulation induces LTD of excitatory synaptic transmission as assessed by field potentials and intracellular postsynaptic potentials (PSPs) with inhibition absent. However, Poisson stimulation does not induce a net LTD of excitatory synaptic transmission. When the PSP contained an inhibitory component, neither Poisson nor regular stimulation induced LTD. We propose that the short bursts of synaptic activity that occur during a Poisson train have potentiating effects that offset the induction of LTD that is favored with regular stimulation. Thus, natural (i.e., irregular) low-frequency activity in the adult neocortex in vivo should not consistently induce LTD.
以恒定的刺激间隔对传入神经进行15分钟的1赫兹刺激(常规刺激)可诱导新皮层突触强度的长时程抑制(LTD)。然而,尚不清楚低频传入神经冲动活动的自然模式是否会诱导LTD。尽管新皮层中的神经元总体发放频率可低至1赫兹,但峰电位之间的间隔是不规则的。这种不规则的峰电位活动(因此,推测该神经元在突触后靶点上的突触激活也是不规则的)可以通过泊松分布的刺激间隔刺激(泊松刺激)来近似模拟。因此,如果完整新皮层中的低频突触前峰电位活动足以诱导突触传递的全身性LTD,那么模拟这种峰电位活动的泊松刺激应该能在脑片中诱导LTD。我们通过比较成年视觉皮层脑片中常规刺激和泊松刺激诱导的2/3层锥体细胞突触强度变化来检验这一假设。我们发现,在无抑制的情况下,通过场电位和细胞内突触后电位(PSP)评估,常规刺激可诱导兴奋性突触传递的LTD。然而,泊松刺激不会诱导兴奋性突触传递的净LTD。当PSP包含抑制成分时,泊松刺激和常规刺激均不会诱导LTD。我们提出,在泊松序列期间发生的突触活动短阵发放具有增强作用,可抵消常规刺激所倾向诱导的LTD。因此,成年新皮层体内的自然(即不规则)低频活动不应持续诱导LTD。