Department of Chemistry, National University of Singapore, 117543, Singapore.
Joint School of National University of Singapore and Tianjin University, International Campus of Tianjin University, Binhai New City, Fuzhou 350207, China.
ACS Nano. 2023 Oct 24;17(20):19491-19501. doi: 10.1021/acsnano.3c04284. Epub 2023 Oct 8.
Recent advances in materials and semiconductor technologies have led to extensive research on optical integration in wearable, implantable, and swallowable health devices. These optical systems utilize the properties of light─intensity, wavelength, polarization, and phase─to monitor and potentially intervene in various biological events. The potential of these devices is greatly enhanced through the use of multifunctional optical materials, adaptable integration processes, advanced optical sensing principles, and optimized artificial intelligence algorithms. This synergy creates many possibilities for clinical applications. This Perspective discusses key opportunities, challenges, and future directions, particularly with respect to sensing modalities, multifunctionality, and the integration of miniaturized optoelectronic devices. We present fundamental insights and illustrative examples of such devices in wearable, implantable, and swallowable forms. The constant pursuit of innovation and the dedicated approach to critical challenges are poised to influence diverse fields.
近年来,材料和半导体技术的进步促使人们对可穿戴、植入式和可吞咽的医疗设备中的光学集成进行了广泛研究。这些光学系统利用光的强度、波长、偏振和相位等特性来监测和潜在地干预各种生物事件。通过使用多功能光学材料、可适应的集成工艺、先进的光学传感原理和优化的人工智能算法,这些设备的潜力得到了极大的增强。这种协同作用为临床应用创造了许多可能性。本文讨论了关键的机遇、挑战和未来方向,特别是在传感模式、多功能性和小型化光电设备的集成方面。我们介绍了这些可穿戴、植入式和可吞咽设备的基本见解和说明性示例。对创新的不断追求和对关键挑战的专注方法有望影响多个领域。