Zhang Yihan, Hu Yubing, Jiang Nan, Yetisen Ali K
Department of Chemical Engineering, Imperial College London, South Kensington, London, SW7 2BU, UK.
Department of Chemical Engineering, Imperial College London, South Kensington, London, SW7 2BU, UK.
Biosens Bioelectron. 2023 Jan 1;219:114825. doi: 10.1016/j.bios.2022.114825. Epub 2022 Oct 21.
The demand for high-quality healthcare and well-being services is remarkably increasing due to the ageing global population and modern lifestyles. Recently, the integration of wearables and artificial intelligence (AI) has attracted extensive academic and technological attention for its powerful high-dimensional data processing of wearable biosensing networks. This work reviews the recent developments in AI-assisted wearable biosensing devices in disease diagnostics and fatigue monitoring demonstrating the trend towards personalised medicine with highly efficient, cost-effective, and accurate point-of-care diagnosis by finding hidden patterns in biosensing data and detecting abnormalities. The reliability of adaptive learning and synthetic data and data privacy still need further investigation to realise personalised medicine in the next decade. Due to the worldwide popularity of smartphones, they have been utilised for sensor readout, wireless data transfer, data processing and storage, result display, and cloud server communication leading to the development of smartphone-based biosensing systems. The recent advances have demonstrated a promising future for the healthcare system because of the increasing data processing power, transfer efficiency and storage capacity and diversifying functionalities.
由于全球人口老龄化和现代生活方式,对高质量医疗保健和福祉服务的需求正在显著增加。最近,可穿戴设备与人工智能(AI)的整合因其对可穿戴生物传感网络强大的高维数据处理能力而吸引了广泛的学术和技术关注。这项工作回顾了人工智能辅助可穿戴生物传感设备在疾病诊断和疲劳监测方面的最新进展,通过在生物传感数据中发现隐藏模式并检测异常,展示了走向个性化医疗的趋势,实现高效、经济高效且准确的即时诊断。自适应学习和合成数据的可靠性以及数据隐私在未来十年实现个性化医疗方面仍需进一步研究。由于智能手机在全球的普及,它们已被用于传感器读数、无线数据传输、数据处理与存储、结果显示以及与云服务器通信,从而推动了基于智能手机的生物传感系统的发展。由于数据处理能力、传输效率和存储容量不断提高以及功能日益多样化,最近的进展为医疗保健系统展示了光明的前景。