covid -19感染期间和之后的持续性嗅觉学习缺陷

Rajdeep Bhowmik , Meenakshi Pardasani , Sarang Mahajan , Rahul Magar , Samir V. Joshi , Ganesh Ashish Nair , Anindya S. Bhattacharjee , Nixon M. Abraham
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引用次数: 3

摘要

量化嗅觉障碍可以促进2019冠状病毒病(新冠肺炎)的早期检测。尽管这是一个有争议的话题,但许多报告为严重急性呼吸系统综合征冠状病毒2型的神经性提供了证据。然而,迄今为止,尚缺乏一种灵敏、特异、准确的非侵入性方法来量化持续性神经损伤。为了量化有症状的新冠肺炎患者在感染期间和感染后的嗅觉检测能力和神经认知障碍,我们使用了定制的嗅觉动作计(OAM),提供准确的行为读数。使用10种单分子学气味来量化嗅觉检测能力,并使用两对气味进行嗅觉匹配测试。在印度报告冠状病毒奥密克戎变异株之前,我们跟踪了健康受试者、有症状的患者和康复受试者的队列,以探究嗅觉学习缺陷。我们的方法确定了新冠肺炎感染期间有症状患者的严重和持续嗅觉功能障碍。与健康受试者相比,有症状的患者和康复受试者在感染期间和感染后4-18个月表现出显著的嗅觉学习缺陷。通过比较嗅觉适应度,我们发现有症状的患者和无症状携带者的气味检测能力和嗅觉功能得分不同。我们的研究结果表明,新冠肺炎患者可能存在长期神经认知缺陷,因此有必要在感染后进行长期跟踪。在有症状患者和无症状携带者中观察到的不同嗅觉适应度需要探索潜在不同感染途径的机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Persistent olfactory learning deficits during and post-COVID-19 infection

Persistent olfactory learning deficits during and post-COVID-19 infection

Quantifying olfactory impairments can facilitate early detection of Coronavirus disease 2019 (COVID-19). Despite being a debated topic, many reports provide evidence for the neurotropism of SARS-CoV-2. However, a sensitive, specific, and accurate non-invasive method for quantifying persistent neurological impairments is missing to date. To quantify olfactory detectabilities and neurocognitive impairments in symptomatic COVID-19 patients during and post-infection periods, we used a custom-built olfactory-action meter (OAM) providing accurate behavioral readouts. Ten monomolecular odors were used for quantifying olfactory detectabilities and two pairs of odors were employed for olfactory matching tests. We followed cohorts of healthy subjects, symptomatic patients, and recovered subjects for probing olfactory learning deficits, before the Coronavirus Omicron variant was reported in India. Our method identifies severe and persistent olfactory dysfunctions in symptomatic patients during COVID-19 infection. Symptomatic patients and recovered subjects showed significant olfactory learning deficits during and post-infection periods, 4–18 months, in comparison to healthy subjects. On comparing olfactory fitness, we found differential odor detectabilities and olfactory function scores in symptomatic patients and asymptomatic carriers. Our results indicate probable long-term neurocognitive deficits in COVID-19 patients imploring the necessity of long-term tracking during post-infection period. Differential olfactory fitness observed in symptomatic patients and asymptomatic carriers demand probing mechanisms of potentially distinct infection routes.

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