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Cortical Metabotropic Glutamate Receptors Contribute to Habituation of a Simple Odor-Evoked Behavior

机译:皮质代谢型谷氨酸受体有助于简单的气味诱发行为的习性。

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摘要

Defining the circuits that are involved in production and cessation of specific behaviors is an ultimate goal of neuroscience. Short-term behavioral habituation is the response decrement observed in many behaviors that occurs during repeated presentation of non-reinforced stimuli. Within a number of invertebrate models of short-term behavioral habituation, depression of a defined synapse has been implicated as the mechanism. However, the synaptic mechanisms of short-term behavioral habituation have not been identified within mammals. We have shown previously that a presynaptic metabotropic glutamate receptor (mGluR)-dependent depression of synapses formed by olfactory bulb afferents to the piriform (olfactory) cortex significantly contributes to adaptation of cortical odor responses. Here we show that blockade of mGluRs within the olfactory cortex of awake, behaving rats diminishes habituation of a simple odor-induced behavior, strongly implicating a central mechanism for sensory gating in olfaction.
机译:定义涉及特定行为产生和停止的电路是神经科学的最终目标。短期行为习惯化是在反复出现非增强刺激过程中发生的许多行为中观察到的反应减少。在许多无脊椎动物的短期行为习惯模型中,明确的突触的抑制被认为是其机制。但是,尚未在哺乳动物中发现短期行为习惯的突触机制。以前我们已经表明,嗅球传入到梨状(嗅)皮层形成的突触前代谢型谷氨酸受体(mGluR)依赖性突触的抑制显着有助于适应皮层气味反应。在这里,我们表明,清醒的嗅觉皮质内的mGluRs的阻滞行为使大鼠减少了简单的气味诱导行为的习惯,强烈暗示了嗅觉中的感觉门控的主要机制。

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