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The Influence of Sniffing on Airflow and Odorant Deposition in the Canine Nasal Cavity

机译:嗅探对犬鼻腔气流和气味沉积的影响

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Nasal airflow plays a critical role in olfaction by transporting odorant from the environment to the olfactory epithelium, where chemical detection occurs. Most studies of olfaction neglect the unsteadiness of sniffing and assume that nasal airflow and odorant transport are "quasi-steady," wherein reality most mammals "sniff."Here, we perform computational fluid dynamics simulations of airflow and odorant deposition in an anatomically accurate model of the coyote (Canis latrans) nasal cavity during quiet breathing, a notional quasi-steady sniff, and unsteady sniffing to: quantify the influence of unsteady sniffing, assess the validity of the quasi-steady assumption, and investigate the functional advantages of sniffing compared to breathing. Our results reveal that flow unsteadiness during sniffing does not appreciably influence qualitative (gross airflow and odorant deposition patterns) or quantitative (time-averaged olfactory flow rate and odorant uptake) measures of olfactory function. A quasi-steady approximation is, therefore, justified for simulating time-averaged olfactory function in the canine nose. Simulations of sniffing versus quiet breathing demonstrate that sniffing delivers about 2.5 times more air to the olfactory recess and results in 2.5-3 times more uptake of highly-and moderately-soluble odorants in the sensory region per unit time, suggesting one reason why dogs actively sniff. Simulations also reveal significantly different deposition patterns in the olfactory region during inspiration for different odorants, and that during expiration there is little retronasal odorant deposition in the sensory region. These results significantly improve our understanding of canine olfaction, and have several practical implications regarding computer simulation of olfactory function.
机译:通过将气味从环境中运送到嗅觉上皮,鼻孔气流在嗅觉中发挥着关键作用,其中发生化学检测。大多数对嗅觉的研究忽略了嗅探的不稳定,并假设鼻气流和气味转运是“准稳态”,其中现实大多数哺乳动物“嗅探”。在这里,我们在解剖学准确的模型中执行气流和气味沉积的计算流体动力学模拟在Coyote(Canis Latrans)鼻腔在安静的呼吸过程中,一个彩色准稳态嗅探,并且不稳定的嗅探:量化不稳定嗅探的影响,评估准稳定假设的有效性,并研究了嗅探的功能优势呼吸。我们的结果表明,嗅探过程中的流动不明显影响嗅觉功能的定性(气流和气流和气味沉积图案)或定量(时间平均嗅觉流速和气味摄取)测量。因此,用于模拟犬鼻子中的时间平均嗅觉功能的准稳态近似。嗅探与安静呼吸的模拟表明,嗅探的液体凹陷的空气中的增加约2.5倍,并产生了每单位时间的感官区域中高度和中度可溶的气味剂的2.5-3倍,这表明狗积极的一个原因嗅闻。在不同气味剂的灵感期间,仿真还揭示了嗅觉区域中的显着不同的沉积图案,并且在呼气期间,感官区域中几乎没有减少的回吐气味沉积。这些结果显着提高了对犬嗅觉的理解,并对嗅觉功能的计算机模拟具有几种实际意义。

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