Trujillo-Cenoz O, Echague J A, Bertolotto C, Lorenzo D
Division of Comparative Neuroanatomy, Instituto de Investigaciones Biologicas Clemente Estable, Montevideo, Uruguay.
J Ultrastruct Mol Struct Res. 1986 Oct-Dec;97(1-3):130-43. doi: 10.1016/s0889-1605(86)80013-1.
The spinal electromotor neurons (EMNs) of Gymnotus carapo from a distinct column dorsal to the central canal. When massively retrograde-labeled with horseradish peroxidase, these neurons show a well-developed dendritic arborization. Dendrites run along the longitudinal axis of the cord and also project toward the dorsal gray and dorsolateral funiculi. Input to the EMNs is mediated by scarce synaptic contacts which show the fine structural characteristics of the so-called "morphologically mixed" junctions. Serial section reconstructions of the junctional areas revealed the occurrence of "gap junctions," dense membranes facing cumuli of microvesicles, and relatively large zones of undifferentiated membranes. Comparative electrophysiological and morphological data suggest that EMN activity may be mediated by electrical transmission. Since neither dendro-dendritic nor dendro-somatic junctions have been observed, other circuitry alternatives are proposed to account for the expected synchronized firing of the EMNs.
裸背电鳗的脊髓运动神经元(EMNs)位于中央管背侧的一个独特柱内。当用辣根过氧化物酶进行大量逆行标记时,这些神经元表现出发育良好的树突分支。树突沿着脊髓的纵轴延伸,也向背侧灰质和背外侧索投射。EMNs的输入由稀少的突触联系介导,这些突触联系显示出所谓“形态学混合”连接的精细结构特征。连接区域的连续切片重建显示存在“缝隙连接”、面对微泡堆积的致密膜以及相对较大的未分化膜区域。比较电生理和形态学数据表明,EMN活动可能由电传递介导。由于未观察到树突 - 树突或树突 - 胞体连接,因此提出了其他电路替代方案来解释EMNs预期的同步放电。