Swadlow H A, Gusev A G
Department of Psychology, The University of Connecticut, Storrs 06269, USA.
J Neurophysiol. 2000 May;83(5):2802-13. doi: 10.1152/jn.2000.83.5.2802.
Extracellular recordings were obtained from single neurons in ventrobasal (VB) thalamus of awake rabbits while field potentials were recorded at various depths within topographically aligned and nonaligned barrel columns of somatosensory cortex (S1). Spike-triggered averages of cortical field potentials were obtained following action potentials in thalamic neurons. Action potentials in a VB neuron elicited a cortical response within layer 4 with three distinct components. 1) A biphasic, initially positive response (latency <1 ms) was interpreted to reflect activation of the VB axon terminals (the AxTP). This response was not affected by infusion of an alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA)/kainate receptor antagonist within the barrel. In contrast, later components of the response were completely eliminated and were interpreted to reflect focal synaptic potentials. 2) A negative potential [focal synaptic negativity (FSN)] occurred at a mean latency of 1.65 ms and lasted approximately 4 ms. This response had a rapid rise time ( approximately 0.7 ms) and was interpreted to reflect monosynaptic excitation. 3) The third component was a positive potential (the FSP), with a slow rise time and a half-amplitude duration of approximately 30 ms. The FSP showed a weak reversal in superficial cortical layers and was interpreted to reflect di/polysynaptic inhibition. The amplitudes of the AxTP, the FSN, and the FSP reached a peak near layer 4 and were highly attenuated in both superficial and deep cortical layers. All components were attenuated or absent when the cortical electrode was missaligned from the thalamic electrode by a single cortical barrel. Deconvolution procedures revealed that the autocorrelogram of the presynaptic VB neuron had very little influence on either the amplitude or duration of the AxTP or the FSN, and only a minor influence (mean, 11%) on the amplitude of the FSP. We conclude that individual VB thalamic impulses entering a cortical barrel engage both monosynaptic excitatory and di/polysynaptic inhibitory mechanisms. Putative inhibitory interneurons of an S1 barrel receive a highly divergent/convergent monosynaptic input from the topographically aligned VB barreloid, and this results in sharp synchrony among these interneurons. We suggest that single-fiber access to disynaptic inhibition is facilitated by this sharp synchrony, and that the FSP reflects a consequent synchronous wave of feed-forward inhibition within the S1 barrel.
在清醒兔子的腹侧基底(VB)丘脑的单个神经元上进行细胞外记录,同时在体感皮层(S1)的地形对齐和未对齐的桶状柱内的不同深度记录场电位。在丘脑神经元产生动作电位后,获得皮层场电位的触发尖峰平均值。VB神经元的动作电位在第4层引发了具有三个不同成分的皮层反应。1)一个双相的、最初为正的反应(潜伏期<1毫秒)被解释为反映VB轴突终末(AxTP)的激活。在桶状柱内注入α-氨基-3-羟基-5-甲基-4-异恶唑丙酸(AMPA)/海人藻酸受体拮抗剂不会影响这种反应。相比之下,反应的后期成分被完全消除,并被解释为反映局部突触电位。2)一个负电位[局部突触负电位(FSN)]在平均潜伏期1.65毫秒时出现,持续约4毫秒。这个反应有一个快速的上升时间(约0.7毫秒),并被解释为反映单突触兴奋。3)第三个成分是一个正电位(FSP),上升时间缓慢,半幅度持续时间约为30毫秒。FSP在皮层浅层显示出微弱的反转,并被解释为反映双/多突触抑制。AxTP、FSN和FSP的幅度在第4层附近达到峰值,在皮层浅层和深层都高度衰减。当皮层电极与丘脑电极在一个皮层桶状柱处未对齐时,所有成分都会衰减或消失。反卷积程序显示,突触前VB神经元的自相关图对AxTP或FSN的幅度或持续时间影响很小,对FSP的幅度只有轻微影响(平均为11%)。我们得出结论,进入皮层桶状柱的单个VB丘脑冲动参与了单突触兴奋和双/多突触抑制机制。S1桶状柱的假定抑制性中间神经元从地形对齐的VB类桶状小体接收高度发散/汇聚的单突触输入,这导致这些中间神经元之间的尖锐同步。我们认为,这种尖锐同步促进了对双突触抑制的单纤维通路,并且FSP反映了S1桶状柱内随之而来的前馈抑制同步波。