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鸟类听觉丘脑卵圆核神经元的放电模式与整流特性

Mode of firing and rectifying properties of nucleus ovoidalis neurons in the avian auditory thalamus.

作者信息

Ströhmann B, Schwarz D W, Puil E

机构信息

Department of Pharmacology and Therapeutics, Faculty of Medicine, University of British Columbia, Vancouver, Canada.

出版信息

J Neurophysiol. 1994 Apr;71(4):1351-60. doi: 10.1152/jn.1994.71.4.1351.

Abstract
  1. We studied neurons of the nucleus ovoidalis, the principal auditory thalamic relay nucleus of the chicken, with tight-seal whole-cell recording techniques in in vitro slice preparations. Nucleus ovoidalis, marked by anterograde labeling of afferents from the inferior colliculus, consists of a clearly delineated group of densely packed, multipolar cells of approximately uniform diameter. We measured a wide range of non covarying resting potentials (-60 +/- 9 mV, mean +/- SD) and input resistances (277 +/- 168 M omega). All neurons discharged overshooting fast spikes. The observed electrophysiological properties may have a decisive role in the transfer of sensory signals. 2. We grouped neurons on the basis of their firing patterns, in response to intracellular injections of depolarizing current pulses from various membrane potentials. The majority of neurons (86%) displayed weakly adapting, tonic firing. A smaller group of neurons (14%) exhibited qualitative changes in firing modes. They fired repetitively when the stimulus pulse was superimposed on relatively depolarized levels, usually including the resting potential. DC-hyperpolarization led to burst responses consisting of fast action potentials on top of slow potentials. 3. In all neurons, application of 300 nM tetrodotoxin blocked the action potentials and reduced a depolarization-activated inward rectification, observed during 1-s current pulses in a range of membrane potentials depolarized from rest. This rectification is interpreted as a partial result of a persistent Na+ current. 4. During the applications of tetrodotoxin in neurons with burst firing capability, two other slow potentials were visible in isolation. Depolarizing current pulses evoked slow, transient depolarizations at the onset whereas rebound slow potentials occurred on termination of hyperpolarizing current pulses. The slow potentials were blocked by application of 0.5 mM Ni2+ and are likely a result of a low threshold Ca2+ current, such as a T-current. 5. A distinctive property of all ovoidalis neurons was a hyperpolarization-activated inward rectification. Application of Cs+ (3 mM) but not Ba2+ (3 mM), tetraethylammonium (10 mM), or 4-aminopyridine (4 mM) reversibly blocked the current that produced this rectification. The activation time constants for the current varied between approximately 50 and 400 ms and were voltage dependent in some neurons. Thus the hyperpolarization-activated current (IH), responsible for thalamic sleep mechanisms in mammals, also is present in a submammalian thalamus. 6. We suggest that the voltage and time dependencies of the persistent Na+ current and IH participate in generation of the sub- and suprathreshold temporal activity patterns in the neurons.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 我们采用紧密封接全细胞记录技术,在体外脑片标本中研究了鸡的主要听觉丘脑中继核——卵圆核的神经元。卵圆核以上丘传入纤维的顺行标记为标志,由一群界限清晰、紧密排列、直径大致均匀的多极细胞组成。我们测量了范围广泛的非共变静息电位(-60±9 mV,平均值±标准差)和输入电阻(277±168 MΩ)。所有神经元均发放超射快速动作电位。观察到的电生理特性可能在感觉信号的传递中起决定性作用。2. 我们根据神经元对从不同膜电位注入去极化电流脉冲的放电模式进行分类。大多数神经元(86%)表现出弱适应、紧张性放电。一小部分神经元(14%)在放电模式上表现出质性变化。当刺激脉冲叠加在相对去极化水平(通常包括静息电位)时,它们会重复放电。直流超极化会导致由慢电位之上的快速动作电位组成的爆发性反应。3. 在所有神经元中,施加300 nM河豚毒素可阻断动作电位,并减少在从静息电位去极化的一系列膜电位下1秒电流脉冲期间观察到的去极化激活内向整流。这种整流被解释为持续性钠电流的部分结果。4. 在对具有爆发性放电能力的神经元施加河豚毒素期间,另外两种慢电位可单独观察到。去极化电流脉冲在开始时诱发缓慢、短暂的去极化,而在超极化电流脉冲终止时出现反弹慢电位。这些慢电位可被施加0.5 mM Ni2+阻断,可能是低阈值钙电流(如T电流)的结果。5. 所有卵圆核神经元的一个独特特性是超极化激活内向整流。施加3 mM Cs+可可逆地阻断产生这种整流的电流,但3 mM Ba2+、10 mM四乙铵或4 mM 4-氨基吡啶则不能。该电流的激活时间常数在约50至400 ms之间变化,并且在一些神经元中是电压依赖性的。因此,负责哺乳动物丘脑睡眠机制的超极化激活电流(IH)在一种非哺乳动物丘脑中也存在。6. 我们认为持续性钠电流和IH的电压及时间依赖性参与了神经元阈下和阈上时间活动模式的产生。(摘要截短至400字)

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