首页> 外文期刊>Behavioural Brain Research: An International Journal >AMPA receptor mediated behavioral plasticity in the isolated rat spinal cord.
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AMPA receptor mediated behavioral plasticity in the isolated rat spinal cord.

机译:AMPA受体介导的离体大鼠脊髓行为可塑性。

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Previous research has demonstrated that the spinal cord is capable of a simple form of instrumental learning. Spinally transected rats that receive shock to a hind leg in an extended position quickly learn to maintain the leg in a flexed position, reducing net shock exposure whenever that leg is flexed. Subjects that receive shock independent of leg position (uncontrollable shock) do not exhibit an increase in flexion duration and later fail to learn when tested with controllable shock (learning deficit). The present study examined the role of the ionotropic glutamate receptor α-amino-3-hydroxy-5-methyl-4-isoxazole propionic acid (AMPA) in spinal learning. Intrathecal application of the AMPA receptor antagonist CNQX disrupted performance of a spinal instrumental learning in a dose dependent fashion (Experiment 1). CNQX also disrupted the maintenance of the instrumental response (Experiment 2) and blocked the induction of the learning deficit (Experiment 3). Intrathecal application of the agonist AMPA had a non-monotonic effect, producing a slight facilitation of performance at a low dose and disrupting learning at a high concentration (Experiment 4). Within the dose range tested, intrathecal application of AMPA did not have a long-term effect (Experiment 5). The results suggest that AMPA-mediated transmission plays an essential role in both instrumental learning and the induction of the learning deficit.
机译:先前的研究表明,脊髓能够进行简单的仪器学习。在伸展位置受到后腿电击的脊椎横断大鼠很快学会将腿保持在屈曲位置,每当腿弯曲时就减少了净电击暴露。受到与腿部姿势无关的冲击(不受控制的冲击)的受试者不会表现出屈曲持续时间的增加,并且随后在受到可控制的冲击(学习不足)的测试时无法学习。本研究检查了离子型谷氨酸受体α-氨基-3-羟基-5-甲基-4-异恶唑丙酸(AMPA)在脊柱学习中的作用。鞘内施用AMPA受体拮抗剂CNQX以剂量依赖的方式破坏了脊髓仪器学习的性能(实验1)。 CNQX还破坏了仪器反应的维持(实验2)并阻止了学习缺陷的诱导(实验3)。鞘内施用激动剂AMPA具有非单调作用,在低剂量时会轻微促进性能,在高浓度时会破坏学习(实验4)。在测试的剂量范围内,鞘内施用AMPA并没有长期效果(实验5)。结果表明,AMPA介导的传播在工具性学习和学习缺陷的诱导中起着至关重要的作用。

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