首页> 美国卫生研究院文献>The Journal of Neuroscience >Descending control of electroreception. I. Properties of nucleus praeeminentialis neurons projecting indirectly to the electrosensory lateral line lobe
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Descending control of electroreception. I. Properties of nucleus praeeminentialis neurons projecting indirectly to the electrosensory lateral line lobe

机译:降低对电接收的控制。 I.小核原核神经元间接投射到电感觉侧线叶的特性

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摘要

The first-order CNS processing region within the electrosensory system, the electrosensory lateral line lobe, receives massive descending inputs from the nucleus praeeminentialis as well as the primary afferent projection. The n. praeeminentialis receives its input from the electrosensory lateral line lobe as well as from higher centers; hence this nucleus occupies an important position in a feedback loop within the electrosensory system. This report describes the physiological properties of a category of n. praeeminentialis neurons characterized by very high spontaneous firing frequency, but relatively poor sensitivity to electrolocation targets as compared to neurons in the electrosensory lateral line lobe. These neurons are specialized to encode long-term changes in electric organ discharge amplitude with high resolution. Intracellular recording and Lucifer yellow staining of these neurons show that they are the previously described multipolar neurons of the n. praeeminentialis, and they project bilaterally to the posterior eminentia granularis. Posterior eminentia granularis efferents project to the electrosensory lateral line lobe forming its dorsal molecular layer. Hence, these multipolar cells influence the electrosensory lateral line lobe circuitry indirectly. The information that the multipolar cells encode regarding the electric organ discharge amplitude may be needed for a gain control mechanism operative within the electrosensory lateral line lobe. Previous studies have shown that the indirect projection from the n. praeeminentialis to the electrosensory lateral line lobe must be intact for this gain control mechanism to operate.
机译:电传感系统内的一阶CNS处理区域,即电传感侧线波瓣,从核和主传入投影接收大量的下降输入。然后。 praeminentialis从电感应侧线叶以及更高的中心接收其输入;因此,该核在电传感系统内的反馈回路中占据重要位置。该报告描述了n类的生理特性。原发性神经元的特征是非常高的自发放电频率,但与电感应侧叶中的神经元相比,对电定位目标的敏感性相对较差。这些神经元专门用于以高分辨率编码器官放电幅度的长期变化。这些神经元的细胞内记录和路西法黄染色表明它们是n的先前描述的多极神经元。 praeeminentialis,它们向两侧突出到后部的eminentia granis。后突状隆突突出到形成其背侧分子层的电感觉侧线叶。因此,这些多极细胞间接地影响电感应侧线波瓣电路。多极细胞编码的有关器官放电幅度的信息可能是在电感应侧线波瓣内运行的增益控制机制所需的。以前的研究表明,从n间接投影。为了使该增益控制机制正常运行,必须对电感测侧线波瓣保持完整。

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