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豚鼠鼻周皮质36区新皮质刺激诱发的网络活动。

Network activity evoked by neocortical stimulation in area 36 of the guinea pig perirhinal cortex.

作者信息

Biella G, Uva L, de Curtis M

机构信息

Department of Experimental Neurophysiology, Istituto Nazionale Neurologico, 20133 Milan, Italy.

出版信息

J Neurophysiol. 2001 Jul;86(1):164-72. doi: 10.1152/jn.2001.86.1.164.

Abstract

The perirhinal cortex is a key structure involved in memory consolidation and retrieval. In spite of the extensive anatomical studies that describe the intrinsic and extrinsic associative connections of the perirhinal cortex, the activity generated within such a network has been poorly investigated. We describe here the pattern of synaptic interactions that subtend the responses evoked in area 36 of the perirhinal cortex by neocortical and local stimulation. The experiments were carried out in the in vitro isolated guinea pig brain. The synaptic perirhinal circuit was reconstructed by integrating results obtained during intracellular recordings from layer II-III neurons with simultaneous current source density analysis of laminar profiles performed with 16-channel silicon probes. Both neocortical and local stimulation of area 36 determined a brief monosynaptic excitatory potential in layer II-III neurons, followed by a biphasic synaptic inhibitory potential possibly mediated by a feed-forward inhibitory circuit at sites close to the stimulation electrode and a late excitatory postsynaptic potential (EPSP) that propagated at distance within area 36 along the rhinal sulcus. During a paired-pulse stimulation test, the inhibitory postsynaptic potential (IPSP) and the late EPSP were abolished in the second conditioned response, suggesting that they are generated by poli-synaptic circuits. Current source density analysis of the field responses demonstrated that 1) the monosynaptic activity was generated in layers II-III and 2) the sink associated to the disynaptic responses was localized within the superficial layer of area 36. We conclude that the neocortical input induces a brief monosynaptic excitation in area 36 of the perirhinal cortex, that is curtailed by a prominent inhibition and generates a recurrent excitatory associative response that travels at distance within area 36 itself. The results suggest that the perirhinal cortex network has the potentials to integrate multimodal incoming neocortical information on its way to the hippocampus.

摘要

内嗅皮质是参与记忆巩固和提取的关键结构。尽管已有大量解剖学研究描述了内嗅皮质的内在和外在联合连接,但对该网络内产生的活动的研究却很少。我们在此描述了新皮质和局部刺激在内嗅皮质36区诱发反应背后的突触相互作用模式。实验在体外分离的豚鼠脑上进行。通过整合从II-III层神经元进行细胞内记录时获得的结果,以及使用16通道硅探针进行的层状轮廓的同步电流源密度分析,重建了内嗅皮质的突触回路。新皮质和局部对36区的刺激均在II-III层神经元中引发了短暂的单突触兴奋性电位,随后是双相突触抑制性电位,可能由靠近刺激电极部位的前馈抑制回路介导,以及一个晚期兴奋性突触后电位(EPSP),该电位沿着嗅沟在36区内远距离传播。在配对脉冲刺激测试中,抑制性突触后电位(IPSP)和晚期EPSP在第二个条件反应中被消除,表明它们是由多突触回路产生的。场反应的电流源密度分析表明:1)单突触活动在II-III层产生;2)与双突触反应相关的电流汇位于36区的表层。我们得出结论,新皮质输入在内嗅皮质36区诱发短暂的单突触兴奋,该兴奋受到显著抑制的限制,并产生一个在36区自身内远距离传播的反复兴奋性联合反应。结果表明,内嗅皮质网络有潜力在其通往海马体的途中整合多模式传入的新皮质信息。

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