Suppr超能文献

裸臀鱼的电感受器器官及其传入纤维。II. 轴突内记录显示中枢处理的初始阶段。

Mormyromast electroreceptor organs and their afferent fibers in mormyrid fish. II. Intra-axonal recordings show initial stages of central processing.

作者信息

Bell C C

机构信息

Robert S. Dow Neurological Sciences Institute, Good Samaritan Hospital and Medical Center, Portland, Oregon 97210.

出版信息

J Neurophysiol. 1990 Feb;63(2):303-18. doi: 10.1152/jn.1990.63.2.303.

Abstract
  1. Physiologically and morphologically identified primary afferent fibers from mormyromast electroreceptor organs were recorded intracellularly. The fiber recordings were made from the nerve root of the posterior lateral line nerve, where the fibers enter the brain, and from the electrosensory lateral line lobe (ELL), near the central terminals of the fibers. 2. The intracellular recordings reveal a variety of potentials, synaptic and nonsynaptic, in addition to the large orthodromic action potentials from the periphery. The goal of the present study was to describe and interpret these various potentials in mormyromast afferent fibers as a first step in understanding the processing of electrosensory information in ELL. 3. Three types of synaptic potentials were recorded inside mormyromast afferent fibers: 1) electric organ corollary discharge (EOCD) excitatory postsynaptic potentials (EPSPs), driven by the motor command that elicits the electric organ discharge (EOD); 2) EPSPs evoked by electrosensory stimulation of electroreceptors in the skin near the electroreceptor from which the recorded fiber originates or by direct stimulation of an electrosensory nerve; and 3) inhibitory postsynaptic potentials (IPSPs) evoked by electrosensory stimulation of more distant electroreceptors. These synaptic potentials can be attributed to synaptic input to postsynaptic cells in ELL that is observed inside the afferent fibers because of electrical synapses between the fibers and the postsynaptic cells. 4. The peripherally evoked EPSPs could frequently be shown to be unitary. The unitary EPSPs were identical to the orthodromic spikes in originating from a single electroreceptor, in threshold, and in latency shift with increasing stimulus intensity. These similarities suggest that the unitary EPSPs are electrotonic EPSPs caused by impulses in other mormyromast afferent fibers that terminate on some of the same postsynaptic cells as the recorded fiber. The peripherally evoked IPSPs had a longer latency than the EPSPs or orthodromic spikes, requiring the presence of an inhibitory interneuron. 5. The peripherally evoked EPSPs, both unitary and nonunitary, show absolute refractory periods of 3-8 ms, followed by relative refractory periods of approximately 8 ms, when tested with two identical stimuli to a nerve. These refractory periods are interpreted as because of refractoriness in the fine preterminal branches of the axonal arbor. 6. A depolarizing afterpotential is commonly associated with the orthodromic spike and probably results from the successful propagation of the spike into the entire terminal arbor. The depolarizing afterpotential has a refractory period that is similar to that of the peripherally evoked EPSPs and that is also interpreted as refractoriness in the fine preterminal branches.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 对来自 Mormyromast 电感受器器官的生理和形态学上已鉴定的初级传入纤维进行了细胞内记录。纤维记录是在外侧后线神经的神经根处进行的,纤维在此进入大脑,同时也在电感觉侧线叶(ELL)进行记录,此处靠近纤维的中枢终末。2. 细胞内记录除了显示来自外周的大的顺向动作电位外,还揭示了各种电位,包括突触电位和非突触电位。本研究的目的是描述并解释 Mormyromast 传入纤维中的这些不同电位,作为理解 ELL 中电感觉信息处理的第一步。3. 在 Mormyromast 传入纤维内记录到了三种类型的突触电位:1)电器官伴随放电(EOCD)兴奋性突触后电位(EPSP),由引发电器官放电(EOD)的运动指令驱动;2)由记录纤维所起源的电感受器附近皮肤中的电感受器的电感觉刺激或直接刺激电感觉神经所诱发的 EPSP;3)由更远处电感受器的电感觉刺激所诱发的抑制性突触后电位(IPSP)。这些突触电位可归因于 ELL 中突触后细胞的突触输入,由于纤维与突触后细胞之间的电突触,在传入纤维内可观察到这种输入。4. 外周诱发的 EPSP 常常可被证明是单一的。单一的 EPSP 在起源于单个电感受器、阈值以及随刺激强度增加的潜伏期变化方面与顺向尖峰相同。这些相似性表明,单一的 EPSP 是由终止于与记录纤维相同的一些突触后细胞上的其他 Mormyromast 传入纤维中的冲动所引起的电紧张性 EPSP。外周诱发的 IPSP 的潜伏期比 EPSP 或顺向尖峰更长,这需要存在抑制性中间神经元。5. 当用两个相同的刺激作用于神经时,外周诱发的 EPSP,无论是单一的还是非单一的,都显示出 3 - 8 毫秒的绝对不应期,随后是约 8 毫秒的相对不应期。这些不应期被解释为是由于轴突分支的细终末前分支中的不应性所致。6. 去极化后电位通常与顺向尖峰相关联,可能是由于尖峰成功传播到整个终末分支所致。去极化后电位的不应期与外周诱发的 EPSP 的不应期相似,也被解释为细终末前分支中的不应性。(摘要截取自 400 字)

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验