胶粘剂
距腓前韧带
生物医学工程
材料科学
应变计
韧带
拉伤
磁共振成像
粘附
医学
复合材料
外科
放射科
解剖
图层(电子)
三角肌韧带
作者
Wenjun Wang,Guanbo Min,Xufeng Jiao,Wang Tingyu,Cheng‐Yu Li,Kun Xu,Xuanli Dong,Jiaxuan Wu,Feng Qu,Weiguo Wang,Yusheng Li,Cheng Huang,Wei Tang,Bo Meng
出处
期刊:ACS Sensors
[American Chemical Society]
日期:2025-03-05
卷期号:10 (9): 6415-6425
被引量:5
标识
DOI:10.1021/acssensors.4c03472
摘要
Anterior talofibular ligament (ATFL) sprain is one of the most prevalent sports-related injuries, so proper evaluation of ligament sprains is critical for treatment options. However, existing tests suffer from a lack of standardized quantitative evaluation criteria, interindividual variability, incompatible materials, or risks of infection. Although advanced medical diagnostic methods already have been using noninvasive, portable, and wearable diagnostic electronics, these devices have insufficient adhesion to accurately respond to internal body injuries. Therefore, we propose a high-adhesive hydrogel-based strain sensor made from gelatin, cellulose nanofiber (CNF), and cross-linked poly(acrylic acid) grafted with N -hydrosuccinimide ester. The adhesive strain sensor, with excellent conformability and stretchability, firmly adheres to the skin, making it suitable for accurately evaluating the severity of anterior talofibular ligament sprain. Its strong adhesive (up to 192 kPa) can adapt to the surface characterization of ankles. The high-adhesive hydrogel-based strain sensor has a high tensile strength (680%) and achieves a high gauge factor (GF) of 8.29. Simultaneously, it also presents a 40 μm ultralow detection limit. Additionally, after a deep learning model was integrated to improve sensing accuracy, the system achieved a diagnostic accuracy of 95%, significantly surpassing the magnetic resonance imaging (MRI) gold standard of 81.1%.
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