IEEE Trans Ultrason Ferroelectr Freq Control. 2024 Jul;71(7):730-744. doi: 10.1109/TUFFC.2023.3342150. Epub 2024 Jul 9.
Wearable ultrasound has the potential to become a disruptive technology enabling new applications not only in traditional clinical settings, but also in settings where ultrasound is not currently used. Understanding the basic engineering principles and limitations of wearable ultrasound is critical for clinicians, scientists, and engineers to advance potential applications and translate the technology from bench to bedside. Wearable ultrasound devices, especially monitoring devices, have the potential to apply acoustic energy to the body for far longer durations than conventional diagnostic ultrasound systems. Thus, bioeffects associated with prolonged acoustic exposure as well as skin health need to be carefully considered for wearable ultrasound devices. This article reviews emerging clinical applications, safety considerations, and future engineering and clinical research directions for wearable ultrasound technology.
可穿戴式超声技术具有变革性的潜力,不仅能够在传统临床环境中,还能够在目前尚未应用超声的环境中实现新的应用。了解可穿戴式超声的基本工程原理和局限性对于临床医生、科学家和工程师推进潜在应用并将技术从实验室转化到临床至关重要。可穿戴式超声设备,特别是监测设备,有潜力将声能应用于人体的时间远远长于传统诊断超声系统。因此,需要仔细考虑与长时间声暴露相关的生物效应以及可穿戴式超声设备的皮肤健康问题。本文综述了可穿戴式超声技术的新兴临床应用、安全性考虑以及未来的工程和临床研究方向。