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象鼻鱼电感觉叶中象鼻鱼感觉器区域的感觉处理和伴随放电效应。II. 细胞类型和伴随放电可塑性。

Sensory processing and corollary discharge effects in mormyromast regions of mormyrid electrosensory lobe. II. Cell types and corollary discharge plasticity.

作者信息

Bell C C, Grant K

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):859-75. doi: 10.1152/jn.1992.68.3.859.

Abstract
  1. This is the second of a series of papers on the electrosensory lobe and closely associated structures in electric fish of the family Mormyridae. The focus of the study is on the regions of the electrosensory lobe where primary afferent fibers from mormyromast electroreceptors terminate. 2. This second paper examines the responses of single cells in the mormyromast regions of the electrosensory lobe to electrosensory stimuli and to corollary discharge signals associated with the motor command that drives the electric organ to discharge. All recordings were extracellular. 3. Two major types of cells were identified: I cells, which were inhibited by electrosensory stimuli in the center of their receptive fields; and E cells, which were excited by such stimuli. 4. I cells and E cells shared a number of common features. Both types could have small receptive fields limited to only a few electroreceptors (3-5), and both types were markedly affected by the corollary discharge of the electric organ discharge (EOD) motor command. Cells of both types also showed clear plasticity in their responses to the corollary discharge or to the corollary discharge plus a stimulus. 5. I cells could be subdivided into three subtypes, I1, I2, and I3, on the basis of corollary discharge responses in the absence of sensory stimuli. I1 and I2 cells showed consistent corollary discharge bursts with little or no additional activity beyond the duration of the burst. The corollary discharge bursts of I1 cells were more stereotyped and of shorter latency than those of I2 cells. I3 cells had more spontaneous activity than I1 or I2 cells and minimal cells had more spontaneous activity than I1 or I2 cells and minimal corollary discharge responses in the absence of sensory stimuli. Field potentials indicated that all three subtypes of I cells were recorded in or near the ganglion layer of the electrosensory lobe. 6. Corollary discharge responses were plastic and depended on recent pairing of a sensory stimulus with the EOD motor command. Such plasticity was clearer in I2 and I3 cells than in I1 cells. Inhibitory sensory stimuli were paired with the EOD motor command for periods of a few seconds to several minutes. Such pairing resulted in a marked enhancement of the corollary discharge response in I2 cells, as shown by examining the effect of the motor command after turning off the stimulus. In I3 cells, such pairing resulted in a clear corollary burst to the command at the time of the previously paired inhibition.(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系列论文的第二篇。该研究的重点是电感觉叶中来自裸臀电感受器的初级传入纤维终止的区域。2. 第二篇论文研究了电感觉叶裸臀区单个细胞对电感觉刺激以及与驱动发电器官放电的运动指令相关的伴随放电信号的反应。所有记录均为细胞外记录。3. 确定了两种主要类型的细胞:I型细胞,在其感受野中心受到电感觉刺激时被抑制;E型细胞,受到此类刺激时被兴奋。4. I型细胞和E型细胞有许多共同特征。两种类型的细胞都可能有小的感受野,仅局限于少数几个电感受器(3 - 5个),并且两种类型的细胞都受到发电器官放电(EOD)运动指令伴随放电的显著影响。两种类型的细胞对伴随放电或伴随放电加刺激的反应也表现出明显的可塑性。5. 根据在无感觉刺激时的伴随放电反应,I型细胞可细分为三个亚型,即I1、I2和I3。I1和I2细胞在爆发持续时间之外几乎没有或没有额外活动,表现出一致的伴随放电爆发。I1细胞的伴随放电爆发比I2细胞更具刻板性且潜伏期更短。I3细胞比I1或I2细胞有更多的自发活动,并且在无感觉刺激时最小伴随放电反应。场电位表明,I型细胞的所有三个亚型均在电感觉叶神经节层或其附近记录到。6. 伴随放电反应具有可塑性,并且取决于感觉刺激与EOD运动指令最近的配对。这种可塑性在I2和I3细胞中比在I1细胞中更明显。抑制性感觉刺激与EOD运动指令配对数秒至数分钟。通过在关闭刺激后检查运动指令的效果表明,这种配对导致I2细胞中伴随放电反应显著增强。在I3细胞中,这种配对导致在先前配对抑制时对指令出现明显的伴随爆发。(摘要截断于400字)

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