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FMRI fingerprint of unconditioned fear-like behavior in rats exposed to trimethylthiazoline

机译:三甲基噻唑啉暴露的大鼠无条件恐惧样行为的FMRI指纹图谱

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摘要

Unconditioned fear plays an important yet poorly understood role in anxiety disorders, and only few neuroimaging studies have focused on evaluating the underlying neuronal mechanisms. In rodents the predator odor trimethylthiazoline (TMT), a synthetic component of fox feces, is commonly used to induce states of unconditioned fear. In this study, arterial spin labeling-based functional magnetic resonance imaging (fMRI) was applied to detect TMT-induced regional modulations of neuronal activity in Wistar rats. During TMT exposure the rats displayed increased freezing behavior and reduced exploration in the odor-associated area. Neuronal activity was selectively increased in the dorsal periaqueductal gray, superior colliculus and medial thalamus and reduced in the median raphe, locus coeruleus, nucleus accumbens shell, ventral tegmental area, ventral pallidum and entorhinal piriform cortex. This fMRI fingerprint involving distinct neuronal pathways was used to describe a schematic model of fear processing. Key brain areas known to underlie fear and anxiety-related autonomic and behavioral responses as well as centers of motivational processing were identified as being part of this functional circuitry of innate fear. Thus, preclinical fMRI studies based on unconditioned fear methods may provide a valuable translational approach to better characterize etiological and pathological processes underlying anxiety disorders.
机译:无条件的恐惧在焦虑症中起着重要的作用,但人们对此知之甚少,并且只有很少的神经影像学研究集中在评估潜在的神经元机制上。在啮齿动物中,捕食者气味三甲基噻唑啉(TMT)是狐狸粪便的合成成分,通常用于诱发无条件恐惧状态。在这项研究中,基于动脉自旋标记的功能磁共振成像(fMRI)用于检测Wistar大鼠中TMT诱导的神经元活动的区域调节。在TMT暴露过程中,大鼠表现出增强的冰冻行为,并减少了与气味相关区域的探查。神经元活性在背周水管周围灰色,上丘和丘脑内侧选择性增加,而在正中缝,蓝斑轨迹,伏隔核壳,腹侧被盖区,腹侧苍白球和内膜核状梨状皮层减少。该fMRI指纹图谱涉及不同的神经元通路,用于描述恐惧过程的示意图。已知在恐惧和与焦虑有关的自主神经和行为反应以及动机加工中心基础上的关键大脑区域被确定为先天恐惧功能电路的一部分。因此,基于无条件恐惧方法的临床前fMRI研究可提供有价值的转化方法,以更好地表征焦虑症的病因和病理过程。

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