Caputi A A, Budelli R
Departamento de Neurociencias Integrativas y Computacionales, Instituto de Investigaciones Biológicas Clemente Estable, Unidad Asociada de la Facultad de Ciencias, Universidad de la República, Av. Italia 3318, 11600, Montevideo, Uruguay.
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2006 Jun;192(6):587-600. doi: 10.1007/s00359-006-0100-2. Epub 2006 Feb 25.
Different species have developed different solutions to the problem of constructing a representation of the environment from sensory images projected onto sensory surfaces. Comprehension of how these images are formed is an essential first step in understanding the representation of external reality by a given sensory system. Modeling of the electrical sensory images of objects began with the discovery of electroreception and continues to provide general insights into the mechanisms of imaging. Progress in electric image research has made it possible to establish the physical basis of electric imaging, as well as methods to accurately predict the electric images of objects alone and as a part of a natural electric scene. In this review, we show the following. (1) The internal low resistance of the fish's body shapes the image in two different ways: by funneling the current generated by the electric organ to the sensory surface, it increases the fields rostrally, thus enhancing the perturbation produced by nearby objects; and by increasing the projected image. (2) The electric fish's self-generated currents are modified by capacitive objects in a distinctive manner. These modulations can be detected by different receptor types, yielding the possibility of "electric color." (3) The effects of different objects in a scene interact with each other, generating an image that is different from the simple addition of the images of individual objects, thus causing strong contextual effects.
不同物种针对从投射到感觉表面的感觉图像构建环境表征这一问题,已形成了不同的解决方案。理解这些图像是如何形成的,是通过特定感觉系统理解外部现实表征的至关重要的第一步。对物体电感觉图像的建模始于电感受的发现,并持续为成像机制提供一般性见解。电图像研究的进展使得确立电成像的物理基础以及准确预测单独物体和作为自然电场景一部分的物体的电图像的方法成为可能。在本综述中,我们展示了以下内容。(1)鱼身体的内部低电阻以两种不同方式塑造图像:通过将电器官产生的电流导向感觉表面,它在头部方向增加场强,从而增强附近物体产生的扰动;以及通过增加投射图像。(2)电鱼自身产生的电流会被电容性物体以独特方式改变。这些调制可被不同类型的感受器检测到,产生了“电颜色”的可能性。(3)场景中不同物体的效应相互作用,生成的图像不同于单个物体图像的简单相加,从而产生强烈的背景效应。