首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Human brain activation in response to olfactory stimulation by intravenous administration of odorants.
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Human brain activation in response to olfactory stimulation by intravenous administration of odorants.

机译:通过嗅味剂的静脉内给药刺激嗅觉刺激的人脑激活。

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摘要

To identify the BOLD effects related to olfaction in humans, we recorded functional magnetic resonance imaging (fMRI) scans in response intravenously instilled thiamine propyl disulfide (TPD) and thiamine tetrahydrofurfuryl disulfide monohydrochloride (TTFD). TPD and TTFD evoked a strong and weak odor sensation, respectively. Since we did not spray the odor stimuli directly, this method is expected to reduce the effect caused by direct stimulation of the trigeminal nerve. For the analysis of fMRI data, statistical parametric mapping (SPM2) was employed and the areas significantly activated during olfactory processing were located. Both strong and weak odorants induced brain activities mainly in the orbitofrontal gyrus (Brodmann's area: BA 11) in the left hemisphere. TPD (a strong odorant) induced activity in the subthalamic nucleus in the left hemisphere and the precentral gyrus (BA 6) and insula in the right hemisphere. TTFD (a weak odorant) induced activity in the superior frontal gyrus (BA 11) in the right hemisphere. In both circumstances, there was an increase in blood flow at the secondary olfactory cortex (SOC) but not the primary olfactory cortex (POC), probably due to a habituation effect in the POC. From the present results, we found brain activity in not only odor-specific regions but also regions whose levels of activity were changed by an intensity difference of odor stimuli.
机译:为了确定与人类嗅觉相关的BOLD效应,我们记录了功能磁共振成像(fMRI)扫描,以响应静脉内滴注硫胺素二硫化二氢(TPD)和硫胺素四氢糠基二硫化氢一氯化氢(TTFD)的反应。 TPD和TTFD分别引起强烈和微弱的气味感。由于我们没有直接喷洒异味刺激物,因此该方法有望减少由直接刺激三叉神经引起的效果。对于功能磁共振成像数据的分析,采用统计参数映射(SPM2)并定位在嗅觉处理过程中显着激活的区域。强和弱气味剂都主要在左半球的眶额回(Brodmann's区域:BA 11)中诱导大脑活动。 TPD(一种强味剂)在左半球的丘脑下核和右半球的中央前回(BA 6)和岛状岛中诱导活性。 TTFD(一种弱味剂)在右半球的上额额回(BA 11)中诱导了活动。在这两种情况下,次要嗅觉皮层(SOC)的血流量都增加了,而原发性嗅觉皮层(POC)的血流量却没有增加,这可能是由于POC中的习惯作用所致。从目前的结果,我们发现大脑活动不仅在气味特定区域,而且在其活动水平由于气味刺激的强度差异而改变的区域中。

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