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蝗虫飞行期间中间神经元爆发特性的改变。

Alteration of bursting properties in interneurons during locust flight.

作者信息

Ramirez J M, Pearson K G

机构信息

Department of Physiology, University of Alberta, Edmonton, Canada.

出版信息

J Neurophysiol. 1993 Nov;70(5):2148-60. doi: 10.1152/jn.1993.70.5.2148.

Abstract
  1. The contribution of bursting properties to the generation of the flight motor pattern was examined for two identified interneurons (interneurons 566 and 567) in the flight system of the locust Locusta migratoria by means of intracellular recording and stimulation techniques. These interneurons are important elements in transmitting proprioceptive information from the hindwing tegula to wing elevator motoneurons. 2. Offset currents injected into these neurons revealed that bursts are triggered in the intact flying animal by synaptic input from tegula afferents (n = 10). These bursts lead to an amplification of proprioceptive input that is crucial for the generation of the intact flight motor pattern. In the absence of afferent input the activity of these neurons remained subthreshold for triggering a burst. This explains why these neurons exhibit only weak rhythmic oscillations in deafferented animals. 3. The property of interneuron 566 to burst was conditional, always being expressed during flight (n = 14) and occurring only occasionally in the quiescent animal. In the absence of flight, stimulation of tegula afferents never evoked bursts in interneuron 566 (n = 7) and depolarizing current pulses evoked weak bursts in only three of nine preparations. In 2 of 14 animals, bursting property of interneuron 566 was enhanced just after the termination of flight. 4. Variability in the bursting property was also found for interneuron 567. In the quiescent animal, tegula-evoked compound excitatory postsynaptic potentials were not sufficient to trigger bursts (n = 3) but depolarizing current pulses evoked always weak rhythmic bursting activity (n = 4). This bursting property was also variable and in one animal we found long-lasting plateau potentials that could be evoked by current injection after flight was elicited several times. 5. The data presented demonstrate that the capacity to burst is conditional in the interneurons 566 and 567. Bursting properties are always induced during flight and function to amplify proprioceptive pathways that are important for the generation of the intact flight motor pattern.
摘要
  1. 通过细胞内记录和刺激技术,研究了飞蝗飞行系统中两个已鉴定的中间神经元(中间神经元566和567)的爆发特性对飞行运动模式产生的贡献。这些中间神经元是将后翅翅缰的本体感受信息传递到翅上举运动神经元的重要元件。2. 向这些神经元注入补偿电流表明,在完整的飞行动物中,来自翅缰传入神经的突触输入会触发爆发(n = 10)。这些爆发会导致本体感受输入的放大,这对完整飞行运动模式的产生至关重要。在没有传入输入的情况下,这些神经元的活动仍低于触发爆发的阈值。这解释了为什么这些神经元在去传入动物中仅表现出微弱的节律性振荡。3. 中间神经元566爆发的特性是有条件的,总是在飞行期间表现出来(n = 14),在静止动物中只是偶尔出现。在没有飞行的情况下,刺激翅缰传入神经从未在中间神经元566中诱发爆发(n = 7),去极化电流脉冲仅在9个标本中的3个中诱发微弱的爆发。在14只动物中的2只中,中间神经元566的爆发特性在飞行结束后立即增强。4. 中间神经元567也存在爆发特性的变异性。在静止动物中,翅缰诱发的复合兴奋性突触后电位不足以触发爆发(n = 3),但去极化电流脉冲总是诱发微弱的节律性爆发活动(n = 4)。这种爆发特性也是可变的,在一只动物中,我们发现多次引发飞行后通过电流注入可诱发持久的平台电位。5. 所呈现的数据表明,中间神经元566和567爆发的能力是有条件的。爆发特性总是在飞行期间诱发,并起到放大对完整飞行运动模式产生重要的本体感受通路的作用。

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