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Cerebral Activation to Intranasal Chemosensory Trigeminal Stimulation

机译:脑内激活鼻内化学感应三叉神经刺激。

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Although numerous functional magnetic resonance imaging (FMRI) studies have been performed on the processing of olfactory information, the intranasal trigeminal system so far has not received much attention. In the present study, we sought to delineate the neural correlates of trigeminal stimulation using carbon dioxide (CO2) presented to the left or right nostril. Fifteen right-handed men underwent FMRI using single runs of 3 conditions (CO2 in the right and the left nostrils and an olfactory stimulant—phenyl ethyl alcohol—in the right nostril). As expected, olfactory activations were located in the orbitofrontal cortex (OFC), amygdala, and rostral insula. For trigeminal stimulation, activations were found in “trigeminal” and “olfactory” regions including the pre- and postcentral gyrus, the cerebellum, the ventrolateral thalamus, the insula, the contralateral piriform cortex, and the OFC. Left compared with right side stimulations resulted in stronger cerebellar and brain stem activations; right versus left stimulation resulted in stronger activations of the superior temporal sulcus and OFC. These results suggest a trigeminal processing system that taps into similar cortical regions and yet is separate from that of the olfactory system. The overlapping pattern of cortical activation for trigeminal and olfactory stimuli is assumed to be due to the intimate connections in the processing of information from the 2 major intranasal chemosensory systems.
机译:尽管已经对嗅觉信息的处理进行了许多功能磁共振成像(FMRI)研究,但迄今为止,鼻内三叉神经系统并未受到太多关注。在本研究中,我们试图用呈现给左鼻孔或右鼻孔的二氧化碳(CO 2 )描绘三叉神经刺激的神经相关性。 15名惯用右手的男子接受了3种条件的单次FMRI检查(右侧和左侧鼻孔中的CO 2 和右侧鼻孔中的嗅觉刺激剂苯乙醇)。如预期的那样,嗅觉激活位于眶额叶皮层(OFC),杏仁核和延髓部。对于三叉神经刺激,在“三叉神经”和“嗅觉”区域(包括中央前和中央后回,小脑,腹侧丘脑,岛突,对侧梨状皮层和OFC)中发现了激活。与左侧刺激相比,左侧刺激导致更强的小脑和脑干激活。右与左刺激导致上颞沟和OFC的激活更强。这些结果表明,三叉神经加工系统可进入相似的皮质区域,但与嗅觉系统分开。假定三叉神经和嗅觉刺激的皮层激活重叠模式是由于在处理来自两个主要鼻内化学感觉系统的信息时存在紧密联系。

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