Emotional Brain Institute, Nathan S. Kline Institute for Psychiatric Research, Orangeburg, New York 10962, USA.
J Neurosci. 2010 Feb 24;30(8):3013-21. doi: 10.1523/JNEUROSCI.6003-09.2010.
Historical and psychophysical literature has demonstrated a perceptual interplay between olfactory and auditory stimuli-the neural mechanisms of which are not understood. Here, we report novel findings revealing that the early olfactory code is subjected to auditory cross-modal influences. In vivo extracellular recordings from the olfactory tubercle, a trilaminar structure within the basal forebrain, of anesthetized mice revealed that olfactory tubercle single units selectively respond to odors-with 65% of units showing significant odor-evoked activity. Remarkably, 19% of olfactory tubercle single units also showed robust responses to an auditory tone. Furthermore, 29% of single units tested displayed supraadditive or suppressive responses to the simultaneous presentation of odor and tone, suggesting cross-modal modulation. In contrast, olfactory bulb units did not show significant responses to tone presentation nor modulation of odor-evoked activity by tone-suggesting a lack of olfactory-auditory convergence upstream from the olfactory tubercle. Thus, the tubercle presents itself as a source for direct multimodal convergence within an early stage of odor processing and may serve as a seat for psychophysical interactions between smells and sounds.
历史和心理物理学文献表明,嗅觉和听觉刺激之间存在感知相互作用-但其神经机制尚不清楚。在这里,我们报告了新的发现,揭示了早期嗅觉编码受到听觉跨模态影响。在麻醉小鼠的基底前脑三层结构嗅结节中的活体细胞外记录显示,嗅结节的单个单位选择性地对气味做出反应-有 65%的单位表现出明显的气味诱发活动。值得注意的是,19%的嗅结节单个单位也对听觉音调表现出强烈的反应。此外,29%的测试单个单位显示出对气味和音调同时呈现的超加性或抑制性反应,表明跨模态调制。相比之下,嗅球单元对音调呈现没有表现出显著的反应,也没有表现出音调对气味诱发活动的调制-表明在嗅结节上游缺乏嗅觉-听觉会聚。因此,结节本身就是早期嗅觉处理过程中直接多模态会聚的源,并且可能作为气味和声音之间的心理物理相互作用的座位。