Pernberg J, Jirmann K U, Eysel U T
Abteilung für Neurophysiologie, Fakultät für Medizin, Ruhr-Universität Bochum, Germany.
Eur J Neurosci. 1998 Dec;10(12):3596-606. doi: 10.1046/j.1460-9568.1998.00364.x.
Receptive fields (RFs) in the visual cortex are characterized by spatiotemporal profiles that have been described in detail for area 17 simple cells. In this study, we analyse spatial and temporal RF properties of simple and complex cells in layer II/III of area 18 of the anaesthetized adult cat, using the reverse correlation method with brief 50 ms presentations of flashing bright and dark bars. Stimuli were presented with preferred orientation as previously determined by moving bars. Simple cell RFs were characterized by spatially and temporally separable ON and OFF subfields, while in complex cells ON and OFF subfields were superimposed. To discriminate possible contributions of GABAergic inhibition to RF structure and response dynamics in area 18, we have used three-barrelled micropipettes for single cell recordings and microiontophoresis, and have documented ON and OFF responses before, during and after application of bicuculline methiodide for blockade of GABAA receptors. During blockade of GABAergic inhibition, the stimulus-induced and resting discharge frequency increased, and in about 50% of the cells both ON and OFF subfields changed significantly in space and/or time in a reversible manner. In space, blockade of inhibition widened RF subfields, whereas in time, it shortened the duration of the excitatory cell response in simple and complex cells. ON and OFF subfields separated in space and time (simple cells), or time (complex cells) became less isolated or even superimposed. The results indicate substantial local inhibitory processing contributing to spatiotemporal RF properties in layers II/III of area 18 of the cat.
视觉皮层中的感受野(RFs)具有时空特征,这些特征已在17区简单细胞中得到详细描述。在本研究中,我们使用反向相关方法,通过短暂呈现50毫秒闪烁的亮条和暗条,分析了麻醉成年猫18区II/III层简单细胞和复杂细胞的空间和时间RF特性。刺激以先前通过移动条确定的首选方向呈现。简单细胞的RF以空间和时间上可分离的ON和OFF子场为特征,而在复杂细胞中,ON和OFF子场相互叠加。为了区分GABA能抑制对18区RF结构和反应动力学的可能贡献,我们使用三管微电极进行单细胞记录和微离子电泳,并记录了在应用甲磺酸荷包牡丹碱阻断GABAA受体之前、期间和之后的ON和OFF反应。在GABA能抑制被阻断期间,刺激诱导的和静息放电频率增加,并且在大约50%的细胞中,ON和OFF子场在空间和/或时间上以可逆的方式发生了显著变化。在空间上,抑制的阻断拓宽了RF子场,而在时间上,它缩短了简单细胞和复杂细胞中兴奋性细胞反应的持续时间。在空间和时间上分离的ON和OFF子场(简单细胞)或时间(复杂细胞)变得不那么孤立,甚至相互叠加。结果表明,大量的局部抑制性处理对猫18区II/III层的时空RF特性有贡献。