Opt Lett. 2024 Mar 15;49(6):1524-1527. doi: 10.1364/OL.514238.
Longitudinal detection of hemodynamic changes based on wearable devices is imperative for monitoring human healthcare. Photoacoustic effect is extremely sensitive to variations in hemoglobin. Therefore, wearable photoacoustic devices are apt to monitor human healthcare via the observation of hemodynamics. However, the bulky system and difficulties in miniaturizing and optimizing the imaging interface restrict the development of wearable photoacoustic devices for human use. In this study, we developed a wearable photoacoustic watch with a fully integrated system in a backpack that has a size of 450 mm × 300 mm × 200 mm and an affordable weight of 7 kg for an adult to wear. The watch has a size of 43 mm × 30 mm × 24 mm, weighs 40 g, and features a lateral resolution of 8.7 µm, a field of view (FOV) of 3 mm in diameter, and a motorized adjustable focus for optimizing the imaging plane for different individuals. We recruited volunteers to wear the watch and the backpack and performed in vivo imaging of the vasculatures inside human wrists under the conditions of walking and human cuff occlusion to observe hemodynamic variations during different physiological states. The results suggest that the focus shifting capability of the watch makes it suitable for different individuals, and the compact and stable design of the entire system allows free movements of humans.
基于可穿戴设备的血流动力学的纵向检测对于监测人体健康至关重要。光声效应对血红蛋白的变化极其敏感。因此,可穿戴光声设备适合通过观察血液动力学来监测人体健康。然而,庞大的系统以及在小型化和优化成像接口方面的困难限制了可穿戴光声设备在人体中的应用。在本研究中,我们开发了一种带有全集成系统的可穿戴光声手表,该系统可装在一个背包中,其尺寸为 450 mm×300 mm×200 mm,成人佩戴的重量仅为 7 kg。手表的尺寸为 43 mm×30 mm×24 mm,重量为 40 g,具有 8.7 µm 的横向分辨率、直径为 3 mm 的视场以及可调节焦点的电机,可针对不同个体优化成像平面。我们招募志愿者佩戴手表和背包,在行走和人体袖口压迫的情况下对人体手腕内部的血管进行体内成像,以观察不同生理状态下的血液动力学变化。结果表明,手表的焦点移动功能使其适用于不同个体,整个系统的紧凑和稳定设计允许人体自由运动。