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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Identifying serotonergic mechanisms underlying the corticolimbic response to threat in humans
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Identifying serotonergic mechanisms underlying the corticolimbic response to threat in humans

机译:识别皮质脂蛋白对人类威胁做出反应的血清素能机制

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摘要

A corticolimbic circuit including the amygdala and medial prefrontal cortex (mPFC) plays an important role in regulating sensitivity to threat, which is heightened in mood and anxiety disorders. Serotonin is a potent neuromodulator of this circuit; however, specific serotonergic mechanisms mediating these effects are not fully understood. Recent studies have evaluated molecular mechanisms mediating the effects of serotonin signalling on corticolimbic circuit function using a multi-modal neuroimaging strategy incorporating positron emission tomography and blood oxygen level-dependent functional magnetic resonance imaging. This multi-modal neuroimaging strategy can be integrated with additional techniques including imaging genetics and pharmacological challenge paradigms to more clearly understand how serotonin signalling modulates neural pathways underlying sensitivity to threat. Integrating these methodological approaches offers novel opportunities to identify mechanisms through which serotonin signalling contributes to differences in brain function and behaviour, which in turn can illuminate factors that confer risk for illness and inform the development of more effective treatment strategies.
机译:包括杏仁核和内侧前额叶皮层(mPFC)在内的皮质边缘回路在调节对威胁的敏感性方面起着重要作用,这种威胁在情绪和焦虑症中会加剧。血清素是该回路的有效神经调节剂。然而,尚未完全了解介导这些作用的特定血清素能机制。最近的研究已经评估了一种分子机制,该机制使用结合正电子发射断层扫描和血氧水平依赖的功能性磁共振成像的多模式神经影像策略,介导了5-羟色胺信号传导对糖皮质回路功能的影响。这种多模式神经成像策略可以与其他技术集成在一起,包括成像遗传学和药理学挑战范式,以更清楚地了解5-羟色胺信号传导如何调节潜在威胁的神经通路。整合这些方法学方法提供了新的机会,可以确定5-羟色胺信号转导有助于大脑功能和行为差异的机制,从而反过来可以阐明赋予患病风险的因素,并为开发更有效的治疗策略提供依据。

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