Assad C, Rasnow B, Stoddard P K, Bower J M
Department of Electrical Engineering, Caltech, Pasadena, CA 91125, USA.
J Comp Physiol A. 1998 Oct;183(4):419-32. doi: 10.1007/s003590050268.
We present detailed measurements of the electric organ discharge of the weakly electric fish, Eigenmannia sp. These maps illuminate, with high resolution in both space and time, the electric organ discharge potential and electric field patterns in the water about the fish and on the skin surface itself. The results demonstrate that the electric organ discharge of Eigenmannia approximates a simple oscillating dipole, which confirms previous descriptions and assumptions, but is in contrast to the electric organ discharges of several other gymnotiform species. Over each cycle of Eigenmannia's electric organ discharge, the electric field amplitude measured at any point near the fish oscillates from positive to negative, but the field vector remains nearly constant in direction. This electric organ discharge pattern is correlated with known anatomical and physiological features of the fish's electric organ, and confirms that the activation of electrocytes comprising the organ is well synchronized. As a result, the relatively simple electric organ discharge leads to a fairly uniform pattern of electrosensory stimuli along the body surface, which may facilitate central processing of electrosensory images. Electric organ discharge maps and animations resulting from this series of studies are available via the Internet (http:@www.bbb.caltech.edu/ElectricFish, or www.fiu.edu/ approximately stoddard/electricfish.html).
我们展示了弱电鱼Eigenmannia sp.电器官放电的详细测量结果。这些图谱在空间和时间上都具有高分辨率,阐明了鱼周围水中以及鱼体表本身的电器官放电电位和电场模式。结果表明,Eigenmannia的电器官放电近似于一个简单的振荡偶极子,这证实了先前的描述和假设,但与其他几种裸背电鳗目物种的电器官放电情况相反。在Eigenmannia电器官放电的每个周期中,在鱼附近任何一点测量到的电场幅度从正到负振荡,但场矢量方向几乎保持不变。这种电器官放电模式与鱼电器官已知的解剖学和生理学特征相关,并证实构成该器官的电细胞的激活是高度同步的。因此,相对简单的电器官放电导致沿体表的电感觉刺激模式相当均匀,这可能有助于电感觉图像的中枢处理。通过互联网(http:@www.bbb.caltech.edu/ElectricFish,或www.fiu.edu/ approximately stoddard/electricfish.html)可以获取这一系列研究所得出的电器官放电图谱和动画。