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在软体动物多氏帆海蛞蝓中可被地磁场强度磁刺激抑制的可识别神经元。

Identifiable neurons inhibited by Earth-strength magnetic stimuli in the mollusc Tritonia diomedea.

作者信息

Wang John H, Cain Shaun D, Lohmann Kenneth J

机构信息

Department of Biology, University of North Carolina, Chapel Hill, NC 27599-3280, USA.

出版信息

J Exp Biol. 2004 Feb;207(Pt 6):1043-9. doi: 10.1242/jeb.00864.

Abstract

Diverse animals use the Earth's magnetic field as an orientation cue, but little is known about the sensory, processing and motor elements of the neural circuitry underlying magnetic orientation behavior. The marine mollusc Tritonia diomedea has both a magnetic compass sense and a simple nervous system accessible to electrophysiological analysis. Previous studies have revealed that four identifiable neurons, known as LPd5, RPd5, LPd6 and RPd6, respond with enhanced electrical activity to changes in Earth-strength magnetic fields. Here we report that two additional neurons, LPd7 and RPd7, are inhibited by magnetic stimuli. Cobalt fills of the Pd7 neurons indicated that two prominent neurites emerge from the soma and project to the periphery through the ipsilateral cerebral nerves CeN6 and CeN3; in some cases, a third neurite was visible in CeN2. The nerves extend to the anterior region of the animal where they innervate the lateral body walls, oral veil and mouth region. Action potentials in the Pd7 neurons propagate from the central ganglia toward the periphery. Thus, the Pd7 cells have characteristics of efferent neurons. The precise function of these cells during magnetic orientation behavior, however, remains to be determined.

摘要

多种动物利用地球磁场作为定向线索,但对于磁定向行为背后神经回路的感觉、处理和运动元件,我们却知之甚少。海洋软体动物多氏三歧海兔既有磁罗盘感,又有便于进行电生理分析的简单神经系统。此前的研究表明,四种可识别的神经元,即左后侧5(LPd5)、右后侧5(RPd5)、左后侧6(LPd6)和右后侧6(RPd6),会随着地球强度磁场的变化而增强电活动。在此我们报告,另外两个神经元,即左后侧7(LPd7)和右后侧7(RPd7),会受到磁刺激的抑制。对Pd7神经元进行钴填充显示,两个突出的神经突从胞体发出,并通过同侧脑神经CeN6和CeN3向外周投射;在某些情况下,在CeN2中可见第三条神经突。这些神经延伸至动物的前部区域,在那里它们支配身体侧壁、口膜和口部区域。Pd7神经元中的动作电位从中枢神经节向周边传播。因此,Pd7细胞具有传出神经元的特征。然而,这些细胞在磁定向行为中的精确功能仍有待确定。

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