The Pitfalls and Perspectives of Assessing Olfactory Function via Optical Brain Imaging.

IF 0.7 Q4 OTORHINOLARYNGOLOGY Turkish Archives of Otorhinolaryngology Pub Date : 2023-03-01 DOI:10.4274/tao.2023.2023-1-6
Güliz Akın Öztürk, Gizem Ermiş, Emre Eskicioğlu, Çağdaş Güdücü
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Abstract

Olfaction is critical for maintaining daily life activities. It is crucial to measure olfactory performance for the diagnosis and treatment of certain neurodegenerative diseases. Moreover, impairments and a lack of quality in the olfactory system may indicate the early diagnosis of some diseases such as Parkinson's. In this context, there are several imaging methods available for evaluating olfactory function. In addition to the conventional methods used in measuring the brain's responsiveness to olfactory stimuli, this article presents a systematic review of the current applicability of optical brain imaging (i.e., functional near-infrared spectroscopy) in the evaluation of olfactory function. A database literature search was conducted in PubMed, Scopus, the Web of Science, and ScienceDirect. This review excluded animal studies, clinical studies, pathology- or neurodegenerative disease-related studies, newborn-related studies, cross-modal- and dual-task-related studies, and non-original research studies. Thus, seven studies were examined to discuss the pitfalls and perspectives of the use of optical brain imaging under olfactory stimulation. As for this conclusion, they can be used to evaluate olfactory performance in healthy individuals through the interpretation of hemodynamic changes. Further studies are needed to standardize the applicability of these optical imaging techniques.

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脑光学成像评估嗅觉功能的缺陷与展望。
嗅觉对于维持日常生活活动至关重要。测量嗅觉性能对于某些神经退行性疾病的诊断和治疗至关重要。此外,嗅觉系统的损伤和质量的缺乏可能预示着一些疾病的早期诊断,比如帕金森氏症。在这种情况下,有几种成像方法可用于评估嗅觉功能。除了测量大脑对嗅觉刺激的反应性的传统方法外,本文还系统地回顾了目前光学脑成像(即功能近红外光谱)在嗅觉功能评估中的适用性。在PubMed、Scopus、Web of Science和ScienceDirect中进行了数据库文献检索。本综述排除了动物研究、临床研究、病理或神经退行性疾病相关研究、新生儿相关研究、跨模式和双任务相关研究以及非原创性研究。因此,我们对七项研究进行了检查,以讨论嗅觉刺激下使用光学脑成像的缺陷和前景。根据这一结论,它们可以通过解释血液动力学变化来评估健康个体的嗅觉表现。为了规范这些光学成像技术的适用性,需要进一步的研究。
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