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奥氏裸臀电鳗的主动电感觉范围。

The active electrosensory range of Gymnotus omarorum.

机构信息

Department of Integrative and Computational Neurosciences, Instituto de Investigaciones Biológicas Clemente Estable, Av. Italia 3318, Montevideo, CP 11600, Uruguay.

出版信息

J Exp Biol. 2012 Sep 15;215(Pt 18):3266-80. doi: 10.1242/jeb.070813.

Abstract

This article reports a biophysical and behavioral assessment of the active electrolocation range of Gymnotus omarorum. Physical measurements show that the stimulus field of a point on the sensory mosaic (i.e. the potential positions in which an object may cause a significant departure of the transcutaneous field from basal in the absence of an object) consists of relatively extended volumes surrounding this point. The shape of this stimulus field is dependent on the position of the point on the receptive mosaic and the size of the object. Although the limit of stimulus fields is difficult to assess (it depends on receptor threshold), departure from the basal field decays rapidly, vanishing at about 1.5 diameters for conductive spheres. This short range was predictable from earlier theoretical constructs and experimental data. Here, we addressed the contribution of three different but synergetic mechanisms by which electrosensory signals attenuate with object distance. Using novelty responses as an indicator of object detection we confirmed that the active electrosensory detection range is very short. Behavioral data also indicate that the ability to precisely locate a small object of edible size decays even more rapidly than the ability to detect it. The role of active electroreception is discussed in the context of the fish's habitat.

摘要

本文报告了对 Gymnotus omarorum 主动电定位范围的生物物理和行为评估。物理测量表明,感觉镶嵌上某一点的刺激场(即没有物体时,物体可能导致经皮场从基础显著偏离的潜在位置)由围绕该点的相对扩展体积组成。该刺激场的形状取决于接收镶嵌上点的位置和物体的大小。尽管刺激场的极限很难评估(它取决于受体阈值),但从基础场的偏离迅速衰减,对于导电球体来说,在大约 1.5 个直径处消失。从早期的理论构建和实验数据可以预测到这个短距离。在这里,我们通过三种不同但协同的机制来解决电信号随物体距离衰减的问题。使用新颖性反应作为物体检测的指标,我们证实了主动电感觉检测范围非常短。行为数据还表明,精确定位可食用小物体的能力比检测它的能力衰减得更快。在鱼类栖息地的背景下讨论了主动电感觉的作用。

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