Design Principles From Natural Olfaction for Electronic Noses

电子鼻 计算机科学 嗅觉系统 生化工程 嗅觉 灵敏度(控制系统) 生物系统 神经科学 纳米技术 人机交互 人工智能 生物 工程类 材料科学 电子工程
作者
Haritosh Patel,Vicente Garrido Portilla,Anna V. Shneidman,Jacopo Movilli,Jack Alvarenga,Jean‐Christophe Dupré,Michael Aizenberg,Venkatesh N. Murthy,Alexander Tropsha,Joanna Aizenberg
出处
期刊:Advanced Science [Wiley]
卷期号:12 (12): e2412669-e2412669 被引量:11
标识
DOI:10.1002/advs.202412669
摘要

Natural olfactory systems possess remarkable sensitivity and precision beyond what is currently achievable by engineered gas sensors. Unlike their artificial counterparts, noses are capable of distinguishing scents associated with mixtures of volatile molecules in complex, typically fluctuating environments and can adapt to changes. This perspective examines the multifaceted biological principles that provide olfactory systems their discriminatory prowess, and how these ideas can be ported to the design of electronic noses for substantial improvements in performance across metrics such as sensitivity and ability to speciate chemical mixtures. The topics examined herein include the fluid dynamics of odorants in natural channels; specificity and kinetics of odorant interactions with olfactory receptors and mucus linings; complex signal processing that spatiotemporally encodes physicochemical properties of odorants; active sampling techniques, like biological sniffing and nose repositioning; biological priming; and molecular chaperoning. Each of these components of natural olfactory systems are systmatically investigated, as to how they have been or can be applied to electronic noses. While not all artificial sensors can employ these strategies simultaneously, integrating a subset of bioinspired principles can address issues like sensitivity, drift, and poor selectivity, offering advancements in many sectors such as environmental monitoring, industrial safety, and disease diagnostics.
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