Tanifuji M, Yamanaka A, Sunaba R, Terakawa S, Toyama K
National Institute for Physiological Sciences, Okazaki, Japan.
Brain Res. 1996 Oct 28;738(1):83-95. doi: 10.1016/0006-8993(96)00767-6.
To characterize optical responses (ORs) evoked by white matter (WM) stimulation in slices of rat visual cortex (VC) stained with voltage sensitive dyes, time course of ORs in each layer was investigated by recording ORs with a linearly aligned photodiode array, and the spatial patterns of the ORs at specified time after stimulation were investigated by a CCD camera in combination with stroboscopic illumination. The ORs recorded by the photodiode array were an increase in absorption at 700 nm and a decrease in the wavelength below 650 nm, suggesting that the ORs were dye related. The ORs were compared with field potentials (FPs) to clarify that neural events were represented by the ORs, and in support of this view, we found that the first order spatial differentials of ORs and that of FPs were in good agreement. We further compared ORs with intracellular responses, and found that the ORs mainly represent postsynaptic potentials (PSPs) of VC neurons except for the deeper part of layer VI, where a component representing action potentials in fibers stimulated directly was observed. The time-lapse imaging of ORs showed that excitation first propagated vertically up to layer I and subsequently in the horizontal direction along layers II-III and V-VI as in previous investigations. Spatio-temporal patterns of ORs under blockade of synaptic transmission were also investigated to reveal activity of fibers evoked by WM stimulation which produced such patterns of propagation.
为了表征用电压敏感染料染色的大鼠视觉皮层(VC)切片中白质(WM)刺激诱发的光学反应(ORs),通过使用线性排列的光电二极管阵列记录ORs来研究各层中ORs的时间进程,并通过CCD相机结合频闪照明来研究刺激后特定时间的ORs空间模式。光电二极管阵列记录的ORs表现为700nm处吸收增加以及650nm以下波长处吸收减少,这表明ORs与染料有关。将ORs与场电位(FPs)进行比较以阐明神经事件由ORs所代表,并且支持这一观点的是,我们发现ORs和FPs的一阶空间微分高度一致。我们进一步将ORs与细胞内反应进行比较,发现除了VI层深部观察到代表直接刺激纤维动作电位的成分外,ORs主要代表VC神经元的突触后电位(PSPs)。ORs的延时成像显示,如先前研究所表明的那样,兴奋首先垂直向上传播到I层,随后沿II - III层和V - VI层在水平方向传播。还研究了突触传递阻断下ORs的时空模式,以揭示WM刺激诱发的产生这种传播模式的纤维活动。