医学
人工智能
机器学习
慢性阻塞性肺病
可解释性
恶化
梅德林
判别式
可穿戴计算机
系统回顾
重症监护医学
预处理器
医疗保健
疾病
肺病
临床试验
卷积神经网络
深度学习
人工智能应用
可穿戴技术
物理医学与康复
模式
机器人学
健康档案
物理疗法
急症护理
风险评估
临床实习
作者
Christelos Kapatais,Theofanie Karaoulani,Anastasia Papanikolaou,Evangelia Koukaki,Agamemnon Bakakos,Christina Anagnostopoulou,Andriana Ι. Papaioannou,Petros Bakakos,Νikoletta Ρovina
出处
期刊:ERJ Open Research
[European Respiratory Society]
日期:2026-01-22
卷期号:12 (3): 01420-2025
标识
DOI:10.1183/23120541.01420-2025
摘要
Background: COPD remains a leading cause of global morbidity and mortality, with acute exacerbations driving disease progression and healthcare utilisation. Artificial intelligence (AI) offers new opportunities to predict exacerbation risk by integrating multimodal data such as electronic health records (EHRs), spirometry and wearable sensor inputs. Methods: This systematic review, conducted in accordance with PRISMA 2020 guidelines and registered in PROSPERO (CRD420251165476), evaluated AI-based models developed for COPD exacerbation prediction using combined data modalities. Results: Comprehensive searches of PubMed, Embase and Google Scholar identified 859 records, of which five studies published between 2021 and 2025 met inclusion criteria. Study designs ranged from prospective monitoring cohorts to EHR-based and hybrid datasets. Models applied diverse approaches including random forests, gradient boosting, convolutional neural networks and ensemble learning frameworks. Reported discriminative performance was moderate to high, with area under the curve values between 0.73 and 0.92 and accuracies up to 0.92. Most of these performance metrics were derived from internal validation, with limited external testing, which restricts assumptions about generalisability. Sensitivity reached 0.94 in wearable-driven models, while only one study reported formal calibration assessment. Conclusions: Despite encouraging performance, methodological heterogeneity, limited external validation and incomplete reporting of preprocessing and explainability methods restrict clinical translation. Current evidence supports the potential of multimodal AI to enhance early detection of COPD exacerbations, but future research must prioritise transparent reporting, external validation and integration into real-world care pathways.
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