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Dorsal root potential produced by a TTX-insensitive micro-circuitry in the turtle spinal cord

机译:TTX不敏感的海龟脊髓微电路产生的背根电位

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摘要

The mechanisms underlying the dorsal root potential (DRP) were studied in transverse slices of turtle spinal cord. DRPs were evoked by stimulating one filament in a dorsal root and were recorded from another such filament.The DRP evoked at supramaximal stimulus intensity was reduced but not eliminated after blockade of GABAA receptors. The remaining component was eliminated by blocking NMDA and AMPA receptors.The DRP was reduced but not eliminated after blockade of AMPA receptors. The early component of the remaining DRP was dependent on GABAA receptors and the residual component on NMDA receptors.The DRP was reduced but not eliminated by TTX. GABAA, NMDA and AMPA receptors contributed to the generation of the TTX-insensitive DRP. The early component of the DRP in the presence of TTX depended on GABAA receptor activation, and the late component mainly on the activation of NMDA receptors.Our results show that part of the DRP is generated by a TTX-resistant, probably non-spiking micro-circuit with separate components mediated by GABA and glutamate.
机译:研究了背根电位(DRP)背后的机制在乌龟脊髓的横向切片中。通过刺激背根中的一根细丝诱发DRP,并从另一根细丝中记录DRP。在超最大刺激强度下诱发的DRP降低,但在GABAA受体阻滞后并未消除。通过阻断NMDA和AMPA受体消除了剩余成分。阻断AMPA受体后,DRP降低但并未消除。其余DRP的早期成分取决于GABAA受体,而其余成分取决于NMDA受体。DRP减少但未被TTX消除。 GABAA,NMDA和AMPA受体促进了对TTX不敏感的DRP的产生。在存在TTX的情况下,DRP的早期成分取决于GABAA受体的激活,而在后期的成分则主要取决于NMDA受体的激活。我们的结果表明,DRP的一部分是由耐TTX的,可能是非加标的微-由GABA和谷氨酸介导的具有独立成分的回路。

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