材料科学
传感器
自愈水凝胶
超声波传感器
超声波
声学
声阻抗
衰减
声流
反射(计算机编程)
软质材料
渲染(计算机图形)
声衰减
计算机科学
生物医学工程
阻抗匹配
聚焦超声
电阻抗
超声成像
超声成像
纳米技术
作者
Maide Miray Albay,Alp Timuçin Toymuş,Emel Yılgör,ISKENDER YILGÖR,Levent Beker
出处
期刊:Small methods
[Wiley]
日期:2026-03-22
卷期号:10 (8): e02325-e02325
标识
DOI:10.1002/smtd.202502325
摘要
The performance of ultrasound technologies, including biomedical imaging, therapeutics, and industrial inspection, is fundamentally dependent on the efficient transmission of acoustic energy between the transducer and the target medium. This is conventionally achieved through the use of acoustic couplants. Traditional gel couplants are limited by dehydration and lack of mechanical support, rendering them incompatible with evolving ultrasound interfaces. Dry and semi-dry couplants have been explored; however, their poor tunability and higher attenuation relative to water-based gels restrict their utilization. In recent years, hydrogels have emerged as a promising class of materials to address such requirements. Due to their high water content, they provide an acoustic impedance closely matching soft tissue to minimize reflection losses; furthermore, their physical and mechanical properties are highly tailorable. This review critically analyzes the evolution of couplants, focusing on advanced material design strategies of hydrogels to overcome the inherent limitations of traditional couplants and meet the emerging demands of next-generation transducers.
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