Wong C J
The Neurobiology Unit, Scripps Institution of Oceanography, University of California, San Diego 92093-0201, USA.
J Comp Physiol A. 2000 Jan;186(1):81-93. doi: 10.1007/s003590050009.
The functional role of the basal forebrain and preoptic regions in modulating the normally regular electric organ discharge was determined by focal brain stimulation in the weakly electric fish, Eigenmannia. The rostral preoptic area, which is connected with the diencephalic prepacemaker nucleus, was examined physiologically by electrical stimulation in a curarized fish. Electrical stimulation of the most rostral region of the preoptic area with trains of relatively low intensity current elicits discrete bursts of electric organ discharge interruptions in contrast to other forebrain loci. These responses were observed primarily as after-responses following the termination of the stimulus train and were relatively immune to variations in the stimulus parameters. As the duration and rate of these preoptic-evoked bursts of electric organ discharge interruptions (approximately 100 ms at 2 per s) are similar to duration and rate of natural interruptions, it is proposed that these bursts might be precursors to natural interruptions. These data suggest that the preoptic area, consistent with its role in controlling reproductive behaviors in vertebrates, may be influencing the occurrence of electric organ discharge courtship signals by either direct actions on the prepacemaker nucleus or through other regions that are connected with the diencephalic pre-pacemaker nucleus.
通过对弱电鱼裸背电鳗进行局灶性脑刺激,确定了基底前脑和视前区在调节正常规律的电器官放电中的功能作用。视前区的嘴侧部分与间脑的前起搏器核相连,在箭毒化的鱼中通过电刺激对其进行了生理学检查。与其他前脑位点相比,用相对低强度电流串刺激视前区最嘴侧区域会引发离散的电器官放电中断突发。这些反应主要表现为刺激串终止后的后反应,并且相对不受刺激参数变化的影响。由于这些视前诱发的电器官放电中断突发的持续时间和频率(每秒2次时约100毫秒)与自然中断的持续时间和频率相似,因此有人提出这些突发可能是自然中断的先兆。这些数据表明,视前区与其在控制脊椎动物生殖行为中的作用一致,可能通过直接作用于前起搏器核或通过与间脑前起搏器核相连的其他区域来影响电器官放电求偶信号的出现。