超声波
生物医学工程
可穿戴计算机
体内
离体
治疗性超声
医学
超声波传感器
材料科学
可穿戴技术
机制(生物学)
自愈水凝胶
仿生材料
超声成像
超声成像
计算机科学
作者
Qi Yuan,Wanglinhan Zhang,Jiangang Xu,Pengfei Li,Qingqing Wang,Jie Huang,Guojie Luo,Zhongqing Su
出处
期刊:ACS Sensors
[American Chemical Society]
日期:2026-08-29
标识
DOI:10.1021/acssensors.6c02306
摘要
While miniaturized wearable ultrasound technologies excel at physiological monitoring, detecting small-molecule biochemicals remains challenging due to their inherent "acoustic invisibility". To address this, we establish a mechano-acoustic transduction mechanism that translates biochemical stimuli into quantifiable acoustic signatures. Central to this approach is a "Core-Shell Cell" (CSC) architecture, comprising a bubble-infused hydrogel core encapsulated by a stimuli-responsive hydrogel shell. Upon exposure to target analytes, the responsive shell swells and exerts compressive stress on the core, inducing measurable shifts in the transmitted ultrasound spectrum. Implementing this strategy, we develop a modular, wrist-worn ultrasound device featuring a minimally invasive microneedle interface. Using in vitro and ex vivo models, we demonstrate the expandability of the device through continuous monitoring of pH and glucose, capturing critical pathological variations for diabetic ketoacidosis and hyperglycemia alerts. Validated by systematic characterizations, this work endows wearable ultrasound with "biochemical vision", establishing an adaptable strategy for multi-analyte profiling.
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