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In vivo patch-clamp recording from locus coeruleus neurones in the rat brainstem

机译:从大鼠脑干中的蓝斑神经元体内膜片钳记录

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摘要

Locus coeruleus (LC) neurones extend noradrenergic projections throughout the neuroaxis and are involved in homeostatic functions such as pain modulation, arousal and cardio-respiratory control. To address the cellular mechanisms underlying pain modulation we have developed a patch-clamp recording technique from LC neurones in anaesthetized rats. These recordings showed LC discharge in vivo to be driven by both spontaneous membrane potential oscillations and CNQX-sensitive EPSCs opposed by bicuculine-sensitive IPSCs. Hindlimb pinch evoked a biphasic action potential response underpinned by a slow monophasic excitatory current. This approach allows detailed characterisation of the synaptic and integrative mechanisms of LC responses to naturalistic stimulation.
机译:蓝斑轨迹(LC)神经元在整个神经轴上延伸去甲肾上腺素能投射,并参与稳态功能,例如疼痛调节,唤醒和心脏呼吸控制。为了解决疼痛调节的基础细胞机制,我们从麻醉大鼠的LC神经元中开发了膜片钳记录技术。这些记录表明,体内的LC放电是由自发性膜电位振荡和与CNCU敏感的EPSC(由双瓜类敏感的IPSC相对)驱动的。后肢捏合引起缓慢的单相兴奋性电流支持的双相动作电位反应。这种方法可以详细表征LC对自然刺激的反应的突触和整合机制。

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