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Temperature dependent plasticity of habituation in the crayfish

机译:小龙虾习性的温度依赖性可塑性

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摘要

To determine the effects of thermal preconditioning on a simple form of learning and memory, habituation, we preconditioned crayfish with extreme temperatures and subsequently analysed their effects on mechanosensory input that evokes a response in the lateral giant interneurons, within the normal temperature range of the animal. We found that repetitive stimulation with a 1 s interstimulus interval led to habituation of the response the lateral giant in control animals at 22°C. Neither heat nor cold preconditioning had any effect on the probability of evoking a response in the lateral giant nor on the rate at which habituation occurred. With a 1 min interstimulus interval, however, the rate of habituation of the lateral giant in the heat-preconditioned group was less than either the control or cold-preconditioned animals. The effect of heat or cold pre-exposure was specific to the input to the lateral giant at control temperatures. For example, at 22°C prior heat and cold preconditioning had no effect on spontaneous reductor motor neurone activity. They did, however, provide thermoprotection at extreme temperatures, with the probability of spontaneous activity higher in the cold-preconditioned group at low temperatures but higher in the heat-preconditioned group at higher temperatures.
机译:为了确定热预处理对学习和记忆,习惯化的简单形式的影响,我们在极端温度下对小龙虾进行了预处理,然后分析了它们对机械感官输入的影响,该输入会在动物的正常温度范围内引起外侧巨大中神经元的反应。 。我们发现,以1 s的间隔刺激重复刺激会导致在22°C的控制动物中,外侧巨人的反应习惯。热预处理和冷预处理都不会对在外侧巨人中引起反应的可能性或习惯化发生的速率产生任何影响。但是,在1分钟的刺激间隔内,热预处理组中外侧巨人的适应率低于对照组或冷预处理动物。在控制温度下,热或冷预暴露的效果特定于横向巨人的输入。例如,在22°C时,预先进行的热和冷预处理对自发的还原运动神经元活动没有影响。但是,它们确实在极端温度下提供了热保护作用,低温下冷预处理组中自发活性的可能性更高,而高温下热预处理组中自发活性的可能性更高。

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