首页> 美国卫生研究院文献>The Journal of Neuroscience >Clinically Anxious Individuals Show Disrupted Feedback between Inferior Frontal Gyrus and Prefrontal-Limbic Control Circuit
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Clinically Anxious Individuals Show Disrupted Feedback between Inferior Frontal Gyrus and Prefrontal-Limbic Control Circuit

机译:临床焦虑个体显示下额回和前额-边缘控制回路之间的反馈中断

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摘要

Clinical anxiety is associated with generalization of conditioned fear, in which innocuous stimuli elicit alarm. Using Pavlovian fear conditioning (electric shock), we quantify generalization as the degree to which subjects' neurobiological responses track perceptual similarity gradients to a conditioned stimulus. Previous studies show that the ventromedial prefrontal cortex (vmPFC) inversely and ventral tegmental area directly track the gradient of perceptual similarity to the conditioned stimulus in healthy individuals, whereas clinically anxious individuals fail to discriminate. Here, we extend this work by identifying specific functional roles within the prefrontal-limbic circuit. We analyzed fMRI time-series acquired from 57 human subjects during a fear generalization task using entropic measures of circuit-wide regulation and feedback (power spectrum scale invariance/autocorrelation), in combination with structural (diffusion MRI-probabilistic tractography) and functional (stochastic dynamic causal modeling) measures of prefrontal-limbic connectivity within the circuit. Group comparison and correlations with anxiety severity across 57 subjects revealed dysregulatory dynamic signatures within the inferior frontal gyrus (IFG), which our prior work has linked to impaired feedback within the circuit. Bayesian model selection then identified a fully connected prefrontal-limbic model comprising the IFG, vmPFC, and amygdala. Dysregulatory IFG dynamics were associated with weaker reciprocal excitatory connectivity between the IFG and the vmPFC. The vmPFC exhibited inhibitory influence on the amygdala. Our current results, combined with our previous work across a threat-perception spectrum of 137 subjects and a meta-analysis of 366 fMRI studies, dissociate distinct roles for three prefrontal-limbic regions, wherein the IFG provides evaluation of stimulus meaning, which then informs the vmPFC in inhibiting the amygdala.>SIGNIFICANCE STATEMENT Affective neuroscience has generally treated prefrontal regions (orbitofrontal cortex, dorsolateral prefrontal cortex, inferior frontal gyrus, ventromedial prefrontal cortex) equivalently as inhibitory components of the prefrontal-limbic system. Yet research across the anxiety spectrum suggests that the inferior frontal gyrus may have a more complex role in emotion regulation, as this region shows abnormal function in disorders of both hyperarousal and hypoarousal. Using entropic measures of circuit-wide regulation and feedback, in combination with measures of structural and functional connectivity, we dissociate distinct roles for three prefrontal-limbic regions, wherein the inferior frontal gyrus provides evaluation of stimulus meaning, which then informs the ventromedial prefrontal cortex in inhibiting the amygdala. This reconfiguration coheres with studies of conceptual disambiguation also implicating the inferior frontal gyrus.
机译:临床焦虑症与条件恐惧症的普遍性有关,其中无害的刺激会引起警觉。使用巴甫洛夫式恐惧条件(电击),我们将概括性量化为受试者的神经生物学反应追踪条件刺激的感知相似度梯度的程度。先前的研究表明,健康个体的腹侧前额叶皮层(vmPFC)和腹侧被盖区的面积直接反过来与条件刺激的知觉相似性梯度有关,而临床上焦虑的个体则无法区分。在这里,我们通过确定前额-边缘回路中的特定功能角色来扩展这项工作。我们使用整个电路的调节和反馈的熵度量(功率谱尺度不变性/自相关),结构性(扩散MRI概率概率成像)和功能性(随机)熵分析方法,分析了恐惧概括任务期间从57位人类受试者获得的fMRI时间序列动态因果模型)度量电路中前额-边缘的连通性。在57位受试者中进行的小组比较和焦虑严重程度的相关性揭示了下额回(IFG)内动态失调,这是我们先前的工作与回路内反馈减弱相关的。然后,贝叶斯模型选择确定了包括IFG,vmPFC和杏仁核的完全连接的前额叶边缘模型。 IFG动态失调与IFG和vmPFC之间较弱的相互兴奋性连接有关。 vmPFC对杏仁核表现出抑制作用。我们目前的结果,加上我们先前在137位受试者的威胁感知光谱中进行的工作以及对366个fMRI研究的荟萃分析,分离了三个前额叶-边缘区的不同作用,其中IFG提供了刺激意义的评估,从而为>意义声明情感神经科学通常将前额叶区域(眶额叶皮层,背外侧前额叶皮层,额额下回,腹膜前额叶皮层)等同地视为额叶-前缘系统的抑制成分。然而,对焦虑谱的研究表明,额下回可能在情绪调节中起着更为复杂的作用,因为该区域在高声和低声的疾病中均表现出异常的功能。使用熵的电路范围的调节和反馈措施,结合结构和功能连接性的措施,我们分离了三个前额叶-边缘区域的不同角色,其中下额叶回提供了刺激意义的评估,然后告知腹侧前额叶皮层在抑制杏仁核。这种重构与概念上的歧义研究相一致,也暗示了额下回。

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