Department of Biology, University of Virginia, Charlottesville, VA, USA.
Department of Evolutionary Studies of Biosystems, SOKENDAI (The Graduate University for Advanced Studies), Hayama, Japan.
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2022 May;208(3):405-420. doi: 10.1007/s00359-022-01546-1. Epub 2022 Mar 1.
The timing system of weakly electric fishes is vital for many behavioral processes, but the system has been relatively unexplored in Apteronotus albifrons. This paper describes the receptive fields of phase-locked neurons in the midbrain of A. albifrons, in combination with neuroanatomy and electron microscopy (EM) to delineate a phase-locked area in this fish, the magnocellular mesencephalic nucleus (MMN). The MMN was isolated electrophysiologically through the detection of phase-locked field potentials of high amplitude. Single-cell recordings were made with a sharp electrode while a phase-locked modulated stimulus was provided to the fish. Receptive field centers of phase-locked neurons in MMN were consistent with tuberous electroreceptor density maps from previous studies, but no receptive field centers were found in the posterior 50% of the body. Intracellular and extracellular labeling of MMN revealed three cell populations: giant cells with large somata (19-24 µm) and their axonal arborizations which span across the entire extent of MMN, axon terminals from spherical cells of the electrosensory lateral line lobe (ELL), and small cell somata (3-7 µm) along with their projections which extend outside the nucleus. EM revealed multiple gap junction and chemical synapses within MMN. Our results indicate that MMN is a dedicated temporal processing center in A. albifrons.
电鳗的定时系统对许多行为过程至关重要,但在 Apteronotus albifrons 中,该系统相对没有得到充分研究。本文描述了 A. albifrons 中脑相位锁定神经元的感受野,结合神经解剖学和电子显微镜 (EM) 来描绘这条鱼的相位锁定区域,即大细胞中脑核 (MMN)。通过检测高振幅的相位锁定场电位,MMN 可以在电生理学上被分离出来。在为鱼提供相位锁定调制刺激的同时,使用尖锐电极进行单细胞记录。MMN 中相位锁定神经元的感受野中心与之前研究中的结节电感受器密度图一致,但在身体的后 50%没有发现感受野中心。MMN 的细胞内和细胞外标记揭示了三个细胞群:具有大胞体(19-24 µm)的巨大细胞及其轴突分支跨越 MMN 的整个范围、来自电感觉侧线叶 (ELL) 的球形细胞的轴突末梢以及小细胞胞体(3-7 µm)及其投射延伸到核外。EM 揭示了 MMN 内的多个缝隙连接和化学突触。我们的结果表明,MMN 是 A. albifrons 中专门的时间处理中心。