DESIGN OF A WEARABLE ULTRASOUND PATCH WITH SOFT AND CONFORMAL MATCHING LAYER

Ethan J. Krings, Sequoia L. Truong, Kiersten A. Reeser, Benjamin D. Hage, G. Bashford, Eric J. Markvicka
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Abstract

Ultrasound is a safe, noninvasive diagnostic technique used to measure internal structures such as blood vessels and the velocity of blood flow in the human body. The ability to continuously measure blood flow in major cerebral arteries would enable the early detection of medical problems such as stroke. However, current ultrasound technology consists of rigid, hand-held probes that are arduous to use, sensitive to movement, and are primarily designed for intermittent, instead of continuous use. Here, we describe the design of a wearable ultrasound patch for continuously measuring blood flow velocity through the middle cerebral artery (MCA) that can be assessed from the temple region of the head. The wearable ultrasound patch is composed of an array of piezoelectric elements that are wired together using flexible electrical conductors and encapsulated in an elastic substrate. To improve ultrasound energy transfer, a soft and conformal composite matching layer is introduced. The matching layer consists of gallium-based liquid metal (LM) microdroplets dispersed in a silicone elastomer. The acoustic impedance of the matching layer can be tuned by varying the volume loading of LM. The wearable ultrasound patch will provide new opportunities to continuously measure blood flow velocity and ultimately enable early detection of medical problems such as stroke.
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一种具有软适形匹配层的可穿戴超声贴片的设计
超声波是一种安全、无创的诊断技术,用于测量人体内部结构,如血管和血流速度。连续测量大脑主要动脉血流的能力将使中风等医疗问题的早期检测成为可能。然而,目前的超声技术由刚性的手持探头组成,这些探头使用起来费力,对运动很敏感,并且主要是为间歇性使用而不是连续使用而设计的。在这里,我们描述了一种可穿戴超声贴片的设计,用于连续测量大脑中动脉(MCA)的血流速度,可以从头部的太阳穴区域进行评估。可穿戴的超声波贴片由一组压电元件组成,这些压电元件使用柔性电导体连接在一起,并封装在弹性衬底中。为了提高超声能量传递,引入了一层柔软的保形复合匹配层。匹配层由分散在硅弹性体中的镓基液态金属(LM)微滴组成。通过改变LM的体积负荷,可以调节匹配层的声阻抗。这种可穿戴式超声波贴片将为持续测量血流速度提供新的机会,并最终实现中风等医疗问题的早期检测。
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