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裸背电鳗科弱电鱼电感觉叶的裸背电鳗丘区域中的感觉处理及伴随放电效应。I. 场电位、相关结构中的细胞活动

Sensory processing and corollary discharge effects in the mormyromast regions of the mormyrid electrosensory lobe. I. Field potentials, cellular activity in associated structures.

作者信息

Bell C C, Grant K, Serrier J

机构信息

R.S. Dow Neurological Sciences Institute, Good Samaritan Hospital and Medical Center, Portland, Oregon 97209.

出版信息

J Neurophysiol. 1992 Sep;68(3):843-58. doi: 10.1152/jn.1992.68.3.843.

Abstract
  1. This is the first of a series of papers on the electrosensory lobe and closely associated structures in electric fish of the family Mormyridae. The study describes the neuronal responses to sensory stimuli and to corollary discharge signals associated with the motor command that drives the electric organ discharge (EOD). The study is focused on the regions of the electrosensory lobe where primary afferent fibers from mormyromast electroreceptors terminate. 2. This first paper of the series describes the field potentials in the caudal lobe of the cerebellum and in the electrosensory lobe. It also describes the different types of unit activity in the caudal lobe of the cerebellum. Granule cells of the caudal lobe of the cerebellum provide the parallel fibers for most of the molecular layer of the electrosensory lobe. Determination of the input and responses of these cells is therefore an important part of the effort to understand the electrosensory lobe. 3. Corollary discharge field potentials evoked by the EOD motor command are very prominent in the caudal lobe of the cerebellum and in the electrosensory lobe. The potentials indicate that corollary discharge excitation affects first the granule cells of the caudal lobe and then, a few milliseconds later, the deeper cellular layers of the electrosensory lobe. The prominence and complexity of the field potentials indicate that corollary discharge signals have an important and varied role in the processing of electrosensory information by the mormyrid electrosensory lobe. 4. The field potentials evoked by electrosensory stimuli suggest that direct primary afferent excitation is limited to the granule and intermediate layers of the electrosensory lobe, as is indicated also by anatomic studies. 5. Proprioceptive units are the most common type of unit recorded in the granule cell region of the caudal lobe of the cerebellum (eminentia granularis posterior). These units have a regular discharge rate that changes tonically in response to slight bending of the trunk, bending of the tail, or bending of individual fins. Proprioceptive input will have a strong effect on the molecular layer of the electrosensory lobe and will thus modulate the responses of electrosensory lobe cells to electrosensory stimuli. Such proprioceptive input to the electrosensory lobe would allow the expected effects of body position changes to be accounted for in the processing of electrosensory information. 6. Units with stereotyped, short-latency corollary discharge bursts to the EOD motor command were the next most common type of unit in the eminentia granularis posterior. These corollary discharge units were not affected by sensory stimuli.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 这是关于裸臀鱼科电鱼的电感觉叶及紧密相关结构的系列论文中的第一篇。该研究描述了神经元对感觉刺激以及与驱动电器官放电(EOD)的运动指令相关的伴随放电信号的反应。研究聚焦于电感觉叶中来自电感受器的初级传入纤维终止的区域。2. 该系列的第一篇论文描述了小脑尾叶和电感觉叶中的场电位。它还描述了小脑尾叶中不同类型的单位活动。小脑尾叶的颗粒细胞为电感觉叶的大部分分子层提供平行纤维。因此,确定这些细胞的输入和反应是理解电感觉叶工作的重要部分。3. 由EOD运动指令诱发的伴随放电场电位在小脑尾叶和电感觉叶中非常显著。这些电位表明伴随放电兴奋首先影响小脑尾叶的颗粒细胞,然后在几毫秒后影响电感觉叶更深的细胞层。场电位的显著程度和复杂性表明伴随放电信号在裸臀鱼科电感觉叶处理电感觉信息过程中具有重要且多样的作用。4. 电感觉刺激诱发的场电位表明,直接的初级传入兴奋仅限于电感觉叶的颗粒层和中间层,解剖学研究也表明了这一点。5. 本体感觉单位是在小脑尾叶(后颗粒隆起)的颗粒细胞区域记录到的最常见的单位类型。这些单位具有规则的放电率,会随着躯干的轻微弯曲、尾巴的弯曲或单个鳍的弯曲而发生紧张性变化。本体感觉输入将对电感觉叶的分子层产生强烈影响,从而调节电感觉叶细胞对电感觉刺激的反应。这种对电感觉叶的本体感觉输入将使身体位置变化的预期影响在电感觉信息处理中得到考虑。6. 对EOD运动指令具有刻板、短潜伏期伴随放电爆发的单位是后颗粒隆起中第二常见的单位类型。这些伴随放电单位不受感觉刺激的影响。(摘要截选至400词)

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