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大鼠嗅觉皮层中诱发的晚期成分的电流发生器及特性

Current generators and properties of late components evoked in rat olfactory cortex.

作者信息

Ferreyra-Moyano H, Cinelli A R, Molina J C, Barragán E

机构信息

Instituto de Investigación Médica, Cordoba, Argentina.

出版信息

Brain Res Bull. 1988 Apr;20(4):433-46. doi: 10.1016/0361-9230(88)90133-5.

Abstract

Following main olfactory bulb (MOB) stimulation at frequencies of 0.1-0.3 Hz, in addition to early field potentials, a frequency-sensitive, surface negative late N2 wave (latency range: 63-96 msec) followed occasionally by a late N3 transient, was evoked in the piriform cortex and endopiriform nucleus of the rat. The N2 wave inverted polarity at the Ib-II cortical layer interface (P2 wave) and was associated with late unit discharges 200 to 1200 microns deep to the turnover point. Response probability, peak latency, recovery curve and frequency-sensitivity of the P2 wave were not significantly different in animals under urethane or pentobarbital. Current-source-density (CSD) analysis revealed that the N2 wave generators were localized to the Ib-II layer interface. Since inhibitory activity does not contribute substantially to the second derivative curve, CSD analysis strengthens the assumption that late components (LCs) are excitatory events (compound EPSPs) presumably generated on the proximal apical dendritic segments of pyramidal cells by association axons. The early "b" wave in a test response was facilitated, rather than occluded, when a LC was present in the conditioning response, or when the priming volley was delivered to the mediodorsal thalamic nucleus. Clustering of unit and field activity in two distinct periods of the evoked response separated by a prolonged interval of cell silence suggests that cortical coding of olfactory cues might be more efficiently achieved by temporal modulation of the neuronal response rather than by spatial distribution of firing patterns.

摘要

在以0.1 - 0.3赫兹的频率刺激大鼠的主嗅球(MOB)后,除了早期场电位外,在大鼠的梨状皮质和内梨状核中诱发了一种频率敏感的、表面负性的晚期N2波(潜伏期范围:63 - 96毫秒),偶尔还会出现晚期N3瞬变。N2波在Ib - II皮质层界面处极性反转(P2波),并与距转折点200至1200微米深处的晚期单位放电相关。在使用乌拉坦或戊巴比妥的动物中,P2波的反应概率、峰值潜伏期、恢复曲线和频率敏感性没有显著差异。电流源密度(CSD)分析表明,N2波的发生器位于Ib - II层界面。由于抑制性活动对二阶导数曲线的贡献不大,CSD分析强化了这样一种假设,即晚期成分(LCs)是兴奋性事件(复合兴奋性突触后电位),可能是由联合轴突在锥体细胞的近端顶端树突段产生的。当条件反应中存在LC,或者当引发性冲动传递到丘脑背内侧核时,测试反应中的早期“b”波得到促进,而不是被阻断。在诱发反应的两个不同时期,单位活动和场活动成簇,中间有一段长时间的细胞沉默间隔,这表明嗅觉线索的皮质编码可能通过神经元反应的时间调制比通过放电模式的空间分布更有效地实现。

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