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虎螈嗅球中二尖瓣/簇状细胞对顺行和逆行电刺激的反应。

Responses of mitral/tufted cells to orthodromic and antidromic electrical stimulation in the olfactory bulb of the tiger salamander.

作者信息

Hamilton K A, Kauer J S

机构信息

Department of Neurosurgery, Anatomy, New England Medical Center, Tufts Medical School, Boston, Massachusetts 02111.

出版信息

J Neurophysiol. 1988 Jun;59(6):1736-55. doi: 10.1152/jn.1988.59.6.1736.

Abstract
  1. Responses evoked by electrical stimulation of the olfactory nerve and olfactory tracts were analyzed in 46 output cells of the salamander olfactory bulb, in vivo. Labeling of several cells with horseradish peroxidase indicated that they were mitral and/or tufted neurons. The responses contained reproducible sequences of depolarizing and hyperpolarizing potentials, which changed with increases in stimulus intensity. 2. Stimulation of the nerve with intensities subthreshold for evoking spikes in the recorded cell resulted in a small depolarization followed by a period of hyperpolarization, during which spontaneous spikes were suppressed. With suprathreshold stimulus intensities, a single spike or often a burst of spikes was evoked, followed by a complex prolonged hyperpolarization. When full spikes were blocked by injecting hyperpolarizing current through the recording electrode, an excitatory postsynaptic potential (EPSP) with two major components and sometimes a fast prepotential were observed at the beginning of the response. Amplitudes of the EPSP and hyperpolarization increased with graded increases in stimulus intensity. In tests with paired stimulus volleys, spike generation was inhibited for at least 1 s and often for several seconds during the hyperpolarization. 3. Stimulation of the tracts with intensities subthreshold for evoking spikes in the recorded cell resulted in a complex prolonged hyperpolarization. With suprathreshold stimulus intensities, a single spike was evoked, followed by a similar period of hyperpolarization. When full spikes were blocked by injecting hyperpolarizing current through the recording electrode, a small antidromic spike, presumably generated in the axon or initial segment, was often observed. Amplitude of the hyperpolarization increased with graded increases in stimulus intensity. In tests with paired volleys, generation of a full antidromic spike was inhibited for a period that usually began 20-30 ms, following the spike evoked by the conditioning stimulus and lasted 100-500 ms. Full antidromic spikes were evoked prior to the period of inhibition and small antidromic spikes were evoked during the period. 4. The mean latencies of single evoked spikes or the first spikes of bursts decreased from 22 to 17 ms with increases in the intensity of nerve stimulation and from 7 to 6 ms with increases in the intensity of tract stimulation. Only decreases in orthodromic latency were significant at P less than or equal to 0.05, as determined by one-sided t tests between the means of responses subdivided according to response pattern and relative stimulus intensity.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在活体状态下,对46个蝾螈嗅球的输出细胞进行了分析,这些细胞对嗅神经和嗅束的电刺激产生反应。用辣根过氧化物酶标记多个细胞表明它们是二尖瓣和/或簇状神经元。这些反应包含可重复的去极化和超极化电位序列,它们随刺激强度的增加而变化。2. 用低于记录细胞引发动作电位阈值的强度刺激神经,会导致一个小的去极化,随后是一段超极化期,在此期间自发动作电位受到抑制。当刺激强度高于阈值时,会引发单个动作电位或常常是一串动作电位,随后是一个复杂的长时间超极化。当通过记录电极注入超极化电流阻断完整动作电位时,在反应开始时观察到一个具有两个主要成分的兴奋性突触后电位(EPSP),有时还有一个快速预电位。EPSP和超极化的幅度随刺激强度的分级增加而增大。在成对刺激脉冲串的测试中,在超极化期间动作电位的产生被抑制至少1秒,且常常抑制几秒。3. 用低于记录细胞引发动作电位阈值的强度刺激嗅束,会导致一个复杂的长时间超极化。当刺激强度高于阈值时,会引发单个动作电位,随后是一段类似的超极化期。当通过记录电极注入超极化电流阻断完整动作电位时,常常会观察到一个小的逆向动作电位,推测是在轴突或起始段产生的。超极化的幅度随刺激强度的分级增加而增大。在成对脉冲串的测试中,完整逆向动作电位的产生在条件刺激引发的动作电位之后通常开始于20 - 30毫秒的时间段内被抑制,持续100 - 500毫秒。在抑制期之前会引发完整逆向动作电位,在此期间会引发小的逆向动作电位。4. 随着神经刺激强度的增加,单个诱发动作电位或动作电位串的第一个动作电位的平均潜伏期从22毫秒降至17毫秒,随着嗅束刺激强度的增加,从7毫秒降至6毫秒。根据反应模式和相对刺激强度对反应均值进行单侧t检验确定,只有顺向潜伏期的缩短在P小于或等于0.05时具有显著性。(摘要截取自400字)

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