首页> 外文OA文献 >MORPHOLOGICAL and ELECTROPHYSIOLOGICAL PROPERTIES of PYRAMIDAL-LIKE NEURONS in the STRATUM ORIENS of CORNU AMMONIS 1 and CORNU AMMONIS 2 AREA of PROECHIMYS
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MORPHOLOGICAL and ELECTROPHYSIOLOGICAL PROPERTIES of PYRAMIDAL-LIKE NEURONS in the STRATUM ORIENS of CORNU AMMONIS 1 and CORNU AMMONIS 2 AREA of PROECHIMYS

机译:腐烂病原虫的CORNUM AMMONIS 1区和CORNU AMMONIS 2区的纹状体中像锥体一样的神经元的形态和电生理特性

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摘要

Proechimys (Rodentia: Echimyidae) is a neotropical rodent of the Amazon region that has been successfully colonized in the laboratory and used for experimental medicine. Preliminary studies indicated that Proechimys (casiragua) rodents express an atypical resistance to developing a chronic epileptic condition in common models of temporal lobe epilepsy. Moreover, previous investigation of our laboratory described a remarkably different Proechimy's cytoarchitecture organization of the hippocampal CA2 subfield. in the present study, we investigated the intrinsic neuronal properties and morphological characteristics of the Proechimys's hippocampal pyramidal neurons of the CA1 and CA2 areas. A comparative approach was performed using neurons recorded in Wistar rats. A striking finding in Proechimys rodents was the presence of large pyramidal-like neurons throughout the stratum oriens from CA2 to CA1 area. in order to confirm such distinctive feature of the Proechimys's hippocampus, we performed Nissl staining and immunohistochemistry for neurofilament protein SM311. CA2 pyramidal neurons in the stratum pyramidale of Proechimys exhibited a significantly higher input resistance and lower time constant when compared to corresponding cell groups in the same area of the Wistar rat's. This newly identified population of pyramidal-shaped neurons in stratum oriens of Proechimys exhibited distinct electrophysiological and morphological properties. This included larger capacitance, lower input resistance, larger rheobase, long latency to first action potential and slower firing frequency. in addition, the apical dendrites of these neurons were oriented in parallel to apical dendrites of regular pyramidal neurons in stratum pyramidale. Moreover, these neurons were immunoreactive to SM311 as the majority of the neurons of the pyramidal layer. the functional role of these hippocampal neurons of the rodent Proechimys deserves further investigation. (C) 2011 IBRO. Published by Elsevier B.V. All rights reserved.
机译:Proechimys(啮齿类:Echimyidae)是亚马逊地区的新热带啮齿动物,已在实验室成功定殖并用于实验医学。初步研究表明,在颞叶癫痫的常见模型中,Proechimys(casiragua)啮齿动物表现出对发展慢性癫痫病的非典型抗性。此外,我们实验室的先前调查描述了海马CA2子域的Proechimy's细胞结构组织明显不同。在本研究中,我们调查了CA1和CA2地区原虫的海马锥体神经元的内在神经元特性和形态特征。使用Wistar大鼠中记录的神经元进行了比较。在Proechimys啮齿动物中的一个惊人发现是在从CA2到CA1区域的整个地层中都出现了大的金字塔状神经元。为了证实原虫海马的这种独特特征,我们对神经丝蛋白SM311进行了尼氏染色和免疫组化。与Wistar大鼠相同区域的相应细胞组相比,原虫锥体层中的CA2锥体神经元表现出明显更高的输入阻力和更低的时间常数。这种新近识别的原虫层中的锥体状神经元种群表现出独特的电生理和形态学特性。这包括更大的电容,更低的输入电阻,更大的流变碱,对第一动作电位的长等待时间和更慢的发射频率。此外,这些神经元的顶端树突与角锥体层中规则锥体神经元的顶端树突平行。此外,这些神经元对SM311具有免疫反应性,是锥体层中大多数神经元。啮齿动物原虫的这些海马神经元的功能作用值得进一步研究。 (C)2011年IBRO。由Elsevier B.V.发布。保留所有权利。

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