Kelly Marc, Babineau David, Longtin André, Lewis John E
Department of Physics, University of Ottawa, Ottawa, ON KIN 6N5, Canada.
Biol Cybern. 2008 Jun;98(6):479-90. doi: 10.1007/s00422-008-0218-0. Epub 2008 May 20.
Weakly electric fish acquire information about their surroundings by detecting and interpreting the spatial and temporal patterns of electric potential across their skin, caused by perturbations in a self-generated, oscillating electric field. Computational and experimental studies have focused on understanding the electric images due to simple, passive objects. The present study considers electric images of a conspecific fish. It is known that the electric fields of two fish interact to produce beats with spatially varying profiles of amplitude and phase. Such patterns have been shown to be critical for electrosensory-mediated behaviours, such as the jamming avoidance response, but they have yet to be well described. We have created a biophysically realistic model of a wave-type weakly electric fish by using a genetic algorithm to calibrate the parameters to the electric field of a real fish. We use the model to study a pair of fish and compute the electric images of one fish onto the other at three representative phases within a beat cycle. Analysis of the images reveals rostral/caudal and ipsilateral/contralateral patterns of amplitude and phase that have implications for localization of conspecifics (both position and orientation) and communication between conspecifics. We then show how the common stimulation paradigm used to mimic a conspecific during in vivo electrophysiological experiments, based on a transverse arrangement of two electrodes, can be improved in order to more accurately reflect the important qualitative features of naturalistic inputs, as revealed by our model.
弱电鱼通过检测和解读其皮肤上由自身产生的振荡电场扰动所引起的电势的空间和时间模式来获取周围环境的信息。计算和实验研究主要集中在理解由简单被动物体产生的电图像。本研究考虑同种鱼的电图像。已知两条鱼的电场相互作用会产生具有空间变化的振幅和相位分布的拍频。这种模式已被证明对电感应介导的行为(如避干扰反应)至关重要,但尚未得到充分描述。我们通过使用遗传算法将参数校准到真实鱼的电场,创建了一个波型弱电鱼的生物物理现实模型。我们使用该模型研究一对鱼,并在拍频周期内的三个代表性相位计算一条鱼在另一条鱼上的电图像。对图像的分析揭示了振幅和相位的吻端/尾端以及同侧/对侧模式,这些模式对同种鱼的定位(位置和方向)以及同种鱼之间的通信具有重要意义。然后,我们展示了如何改进在体内电生理实验中用于模拟同种鱼的常见刺激范式,该范式基于两个电极的横向排列,以便更准确地反映我们模型所揭示的自然输入的重要定性特征。