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Odor Canopy: A Method for Comfortable Odorant Delivery in MRI
Chemical Senses ( IF 2.8 ) Pub Date : 2021-01-03 , DOI: 10.1093/chemse/bjaa085
Lior Gorodisky 1, 2 , Ethan Livne 1, 2 , Tali Weiss 1 , Aharon Weissbrod 1, 2 , Reut Weissgross 1, 2 , Eva Mishor 1, 2 , Edna Furman-Haran 1 , Noam Sobel 1, 2
Affiliation  

Functional magnetic resonance imaging (fMRI) has become the leading method for measuring the human brain response to sensory stimuli. However, olfaction fMRI lags behind vision and audition fMRI for 2 primary reasons: First, the olfactory brain areas are particularly susceptible to imaging artifacts, and second, the olfactory stimulus is particularly difficult to control in the fMRI environment. A component of the latter is related to the odorant delivery human–machine interface, namely the point where odorants exit the dispensing apparatus to reach at the nose. Previous approaches relied on either nasal cannulas or nasal masks, each associated with particular drawbacks and discomforts. Here, we provide detailed descriptions and instructions for transforming the MRI head-coil into an olfactory microenvironment, or odor canopy, where odorants can be switched on and off in less than 150 ms without cannula or mask. In a proof-of-concept experiment, we demonstrate that odor canopy provides for clearly dissociable odorant presence and absence, with no nonolfactory cues. Moreover, we find that odor canopy is rated more comfortable than nasal mask, and we demonstrate that using odor canopy in the fMRI generates a typical olfactory brain response. We conclude in recommending this approach for minimized discomfort in fMRI of olfaction.

中文翻译:

气味罩:一种在 MRI 中舒适地传递气味的方法

功能磁共振成像 (fMRI) 已成为测量人脑对感觉刺激反应的主要方法。然而,嗅觉 fMRI 落后于视觉和听觉 fMRI 有两个主要原因:首先,嗅觉大脑区域特别容易受到成像伪影的影响,其次,嗅觉刺激在 fMRI 环境中特别难以控制。后者的一个组成部分与气味剂输送人机界面有关,即气味剂离开分配装置到达鼻子的点。以前的方法依赖于鼻插管或鼻罩,每种方法都有特定的缺点和不适。在这里,我们提供了将 MRI 头部线圈转化为嗅觉微环境的详细描述和说明,或气味罩,气味剂可以在 150 毫秒内打开和关闭,无需插管或面罩。在概念验证实验中,我们证明气味冠层提供了明显可分离的气味存在和不存在,没有非嗅觉线索。此外,我们发现气味罩比鼻罩更舒适,我们证明在 fMRI 中使用气味罩会产生典型的嗅觉大脑反应。我们总结推荐这种方法,以最大限度地减少嗅觉 fMRI 的不适。
更新日期:2021-01-03
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