Biosensor National Special Laboratory, Key Laboratory for Biomedical Engineering of Education Ministry, Department of Biomedical Engineering, Zhejiang University, Hangzhou 310027, China.
The MOE Frontier Science Center for Brain Science & Brain-machine Integration, Zhejiang University, Hangzhou 310027, China.
Analyst. 2021 Dec 20;147(1):178-186. doi: 10.1039/d1an01569a.
Odor masking is a prominent phenomenon in the biological olfactory perception system. It has been applied in industry and daily life to develop masking agents to reduce or even eliminate the adverse effects of unpleasant odors. However, it is challenging to assess the odor masking efficiency with traditional gas sensors. Here, we took advantage of the olfactory perception system of an animal to develop a system for the evaluation and quantification of odor masking based on an bioelectronic nose. The linear decomposition method was used to extract the features of the spatial response pattern of the mitral/tufted (M/T) cell population of the olfactory bulb of a rat to monomolecular odorants and their binary mixtures. Finally, the masking intensity was calculated to quantitatively measure the degree of interference of one odor to another in the biological olfactory system. Compared with the human sensory evaluation reported in a previous study, the trend of masking intensity obtained with this system positively correlated with the human olfactory system. The system could quantitatively analyze the masking efficiency of masking agents, as well as assist in the development of new masking agents or flavored food in odor or food companies.
气味掩蔽是生物嗅觉感知系统中的一个突出现象。它已被应用于工业和日常生活中,开发掩蔽剂以减少甚至消除不良气味的不利影响。然而,用传统的气体传感器评估气味掩蔽效率具有挑战性。在这里,我们利用动物的嗅觉感知系统,开发了一种基于生物电子鼻的评价和定量气味掩蔽的系统。线性分解方法用于提取大鼠嗅球中僧帽细胞/丛状细胞(M/T)群体对单分子气味剂及其二元混合物的空间响应模式的特征。最后,计算掩蔽强度以定量测量生物嗅觉系统中一种气味对另一种气味的干扰程度。与之前研究中报道的人类感官评估相比,该系统获得的掩蔽强度趋势与人类嗅觉系统呈正相关。该系统可以定量分析掩蔽剂的掩蔽效率,并有助于气味或食品公司开发新的掩蔽剂或调味食品。