Goenechea Lander, von der Emde Gerhard
Department of Psychology, University of Washington, Seattle, WA 98195, USA.
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2004 Nov;190(11):907-22. doi: 10.1007/s00359-004-0548-x. Epub 2004 Sep 2.
Mormyrid fish use active electrolocation to detect and analyze objects. The electrosensory lateral line lobe in the brain receives input from electroreceptors and an efference copy of the command to discharge the electric organ. In curarized fish, we recorded extracellularly from neurons of the electrosensory lateral line lobe while stimulating in the periphery with either a local point stimulus or with a more natural whole-body stimulus. Two classes of neurons were found: (1) three types of E-cells, which were excited by a point stimulus; and (2) two types of I-cells, which were inhibited by point stimulus and responded with excitation to the electric organ corollary discharge. While all neurons responded to a point stimulus, only one out of two types of I-units and two of the three types of E-units changed their firing behavior to a whole-body stimulus or when an object was present. In most units, the responses to whole-body stimuli and to point stimuli differed substantially. Many electrosensory lateral line lobe units showed neural plasticity after prolonged sensory stimulation. However, plastic effects during whole body stimulation were often unlike those occurring during point stimuli, suggesting that under natural conditions electrosensory lateral line lobe network effects play an important role in shaping neural plasticity.
象鼻鱼利用主动电定位来探测和分析物体。大脑中的电感觉侧线叶接收来自电感受器的输入以及驱动发电器官放电的指令的传出副本。在使用箭毒处理的鱼中,我们在用电感受器局部点刺激或更自然的全身刺激对外周进行刺激时,从电感觉侧线叶的神经元进行细胞外记录。发现了两类神经元:(1) 三种类型的E细胞,它们受到点刺激的兴奋;(2) 两种类型的I细胞,它们受到点刺激的抑制,并对发电器官的伴随放电产生兴奋反应。虽然所有神经元都对点刺激有反应,但两种类型的I单元中的一种以及三种类型的E单元中的两种,在受到全身刺激或有物体存在时会改变其放电行为。在大多数单元中,对全身刺激和点刺激的反应有很大差异。许多电感觉侧线叶单元在长时间的感觉刺激后表现出神经可塑性。然而,全身刺激期间的可塑性效应往往与点刺激期间的不同,这表明在自然条件下,电感觉侧线叶网络效应在塑造神经可塑性方面起着重要作用。