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弱电鱼线翎电鳗(Apteronotus leptorhynchus)电器官放电的相位和幅度图。

Phase and amplitude maps of the electric organ discharge of the weakly electric fish, Apteronotus leptorhynchus.

作者信息

Rasnow B, Assad C, Bower J M

机构信息

Division of Physics, California Institute of Technology, Pasadena 91125.

出版信息

J Comp Physiol A. 1993 May;172(4):481-91. doi: 10.1007/BF00213530.

Abstract

The electric organ discharge (EOD) potential was mapped on the skin and midplane of several Apteronotus leptorhynchus. The frequency components of the EOD on the surface of the fish have extremely stable amplitude and phase. However, the waveform varies considerably with different positions on the body surface. Peaks and zero crossings of the potential propagate along the fish's body, and there is no point where the potential is always zero. The EOD differs significantly from a sinusoid over at least one third of the body and tail. A qualitative comparison between fish showed that each individual had a unique spatiotemporal pattern of the EOD potential on its body. The potential waveforms have been assembled into high temporal and spatial resolution maps which show the dynamics of the EOD. Animation sequences and Macintosh software are available by anonymous ftp (mordor.cns.caltech.edu; cd/pub/ElectricFish). We interpret the EOD maps in terms of ramifications on electric organ control and electroreception. The electrocytes comprising the electric organ do not all fire in unison, indicating that the command pathway is not synchronized overall. The maps suggest that electroreceptors in different regions fulfill different computational roles in electroreception. Receptor mechanisms may exist to make use of the phase information or harmonic content of the EOD, so that both spatial and temporal patterns could contribute information useful for electrolocation and communication.

摘要

对几只长吻无须电鳗的皮肤和中平面进行了电器官放电(EOD)电位测绘。鱼体表EOD的频率成分具有极其稳定的幅度和相位。然而,其波形在体表的不同位置有很大变化。电位的峰值和过零点沿鱼体传播,不存在电位始终为零的点。在鱼体至少三分之一的部位和尾部,EOD与正弦波有显著差异。鱼之间的定性比较表明,每个个体体表的EOD电位都有独特的时空模式。电位波形已被组装成高时空分辨率的图谱,展示了EOD的动态变化。可通过匿名文件传输协议(mordor.cns.caltech.edu;cd/pub/ElectricFish)获取动画序列和Macintosh软件。我们从电器官控制和电感受的影响角度来解释EOD图谱。构成电器官的电细胞并非同步放电,这表明指令通路总体上是不同步的。图谱表明,不同区域的电感受器在电感受中发挥着不同的计算作用。可能存在受体机制来利用EOD的相位信息或谐波成分,这样空间和时间模式都能提供对电定位和通讯有用的信息。

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