首页> 美国卫生研究院文献>The Journal of Physiology >Optical imaging of spatiotemporal patterns of glutamatergic excitation and GABAergic inhibition in the guinea-pig auditory cortex in vivo.
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Optical imaging of spatiotemporal patterns of glutamatergic excitation and GABAergic inhibition in the guinea-pig auditory cortex in vivo.

机译:豚鼠听觉皮层体内谷氨酸能激发和GABA能抑制的时空模式的光学成像。

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摘要

1. Glutamatergic excitation and gamma-aminobutyric acid (GABA)-ergic inhibition in layers II and III of the auditory cortex of anaesthetized guinea-pigs were recorded optically using a voltage-sensitive dye RH795 and a 12 x 12 photodiode array. 2. After contralateral ear stimulation with pure tones, transient excitatory responses followed by inhibitory responses were observed in fields A (primary) and DC of the auditory cortex. The area of the excitatory responses was sandwiched or surrounded by the areas of the inhibitory responses. 3. Optically recorded excitatory responses to pure tones had two components: a component sensitive to 6-cyano-7-nitroquinoxaline-2,3-dione (CNQX), a non-N-methyl-D-aspartate (non-NMDA) receptor antagonist, and a component sensitive to 2-amino-5-phosphono-valerate (APV), an NMDA receptor antagonist. Application of CNQX (5 microM) to the auditory cortex suppressed an early, but not a late, phase of the excitation; application of APV (100 microM) had the opposite effect. Concomitant application of CNQX and bicuculline methiodide (BMI, 4 microM), a GABAA receptor antagonist, increased the amplitude of the late phase 4-fold. This enhanced response was suppressed by APV. 4. These results indicate that (i) auditory cortical excitatory responses are mediated by both non-NMDA and NMDA receptors, (ii) inhibition is mediated by GABAA receptors, (ii) the excitatory bands are sandwiched or surrounded by GABAA receptor-mediated inhibitory areas and (iv) GABAA receptors effectively inhibit the NMDA, but not the non-NMDA, receptor-mediated excitation.
机译:1.使用压敏染料RH795和12 x 12光电二极管阵列,光学记录麻醉的豚鼠听觉皮层II和III层中的谷氨酸激动和γ-氨基丁酸(GABA)抑制。 2.用纯音对侧耳朵刺激后,在听觉皮层的A(主要)和DC区域观察到短暂的兴奋性反应,然后产生抑制性反应。兴奋性反应的区域被抑制性反应的区域夹在中间或包围着。 3.光学记录的对纯音的兴奋反应具有两个成分:对6-氰基-7-硝基喹喔啉-2,3-二酮(CNQX)敏感的成分,非N-甲基-D-天冬氨酸(non-NMDA)受体拮抗剂,以及对NMDA受体拮抗剂2-氨基-5-膦酸戊酸酯(APV)敏感的成分。将CNQX(5 microM)应用于听觉皮层可以抑制早期但不是晚期的兴奋。 APV(100 microM)的应用效果相反。 CNQX和GABAA受体拮抗剂双小分子甲硫氨酸(BMI,4 microM)的同时应用使晚期相的振幅增加了4倍。这种增强的反应被APV抑制了。 4.这些结果表明(i)听觉皮层兴奋性反应是由非NMDA和NMDA受体介导的;(ii)抑制作用是由GABAA受体介导的;(ii)兴奋带被GABAA受体介导的抑制作用夹在中间或包围(iv)GABAA受体可有效抑制NMDA受体,但不能抑制非NMDA受体介导的兴奋。

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