Faculty of Medicine, Memorial University of Newfoundland and Labrador, 98 Pearltown Rd, St. John's, NL, A1G 1P3, Canada.
J Otolaryngol Head Neck Surg. 2023 Feb 7;52(1):7. doi: 10.1186/s40463-023-00621-0.
The first-line and most common treatment for obstructive sleep apnea is nasal continuous positive airway pressure, which serves as a pneumatic splint to stabilize the upper airway and is effective when used with appropriate adherence. Continuous positive airway pressure compliance rates remain significantly low despite machine improvements and compliance intervention. Other treatment options include oral appliances, myofunctional therapy, and surgery. The aim of this project is to elucidate the role of artificial intelligence within improving the treatment of obstructive sleep apnea.
Related publications between 1999 and 2022 were reviewed from PubMed and Embase databases utilizing search terms "artificial intelligence," "machine learning," "obstructive sleep apnea," and "treatment." Both authors independently screened the results by title/abstract then by full text review. 126 non-duplicate articles were screened, 38 articles were included after title and abstract screen and 30 articles were included after full text review. The inclusion criteria are outline in the PICO framework and involved studies focused on artificial intelligence application in guiding and evaluating obstructive sleep apnea treatment. Non-English articles were excluded.
The role of artificial intelligence in the treatment of OSA was categorized into the following sections: Predicting treatment outcomes of various treatment options, Improving/Evaluating treatment, and Personalizing treatment with improving understanding of underlying mechanisms of OSA.
Artificial intelligence has the capacity to improve the treatment of OSA through predicting outcomes of treatment options, evaluating the treatment the patient is currently utilizing and increasing understanding of the mechanisms that contribute to OSA disease process and physiology. Implementing AI in guiding treatment decisions allows patients to connect with treatment methods that would be most effective on an individual basis.
阻塞性睡眠呼吸暂停的一线治疗方法和最常见的治疗方法是持续气道正压通气,它作为一种气动夹板稳定上气道,在适当的依从性下使用是有效的。尽管机器改进和依从性干预,持续气道正压通气的依从率仍然显著较低。其他治疗选择包括口腔器械、肌肉功能治疗和手术。本项目的目的是阐明人工智能在改善阻塞性睡眠呼吸暂停治疗中的作用。
从 PubMed 和 Embase 数据库中检索了 1999 年至 2022 年期间的相关出版物,使用了“人工智能”、“机器学习”、“阻塞性睡眠呼吸暂停”和“治疗”等搜索词。两位作者分别通过标题/摘要和全文审查筛选结果。筛选了 126 篇非重复文章,标题和摘要筛选后有 38 篇文章被纳入,全文审查后有 30 篇文章被纳入。纳入标准在 PICO 框架中概述,涉及专注于人工智能在指导和评估阻塞性睡眠呼吸暂停治疗中应用的研究。排除非英语文章。
人工智能在 OSA 治疗中的作用分为以下几类:预测各种治疗选择的治疗结果、改进/评估治疗以及通过提高对 OSA 发病机制和生理学的理解来个性化治疗。
人工智能有能力通过预测治疗选择的结果、评估患者目前正在使用的治疗方法以及增加对导致 OSA 疾病过程和生理学的机制的理解,来改善 OSA 的治疗。在指导治疗决策中实施 AI 可以使患者与基于个体的最有效的治疗方法联系起来。