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单-shot 无水低剖面光声系统:基于电容式微机械超声换能器 (CMUT) 的近场容积成像体内血管。

Single-Shot Waterless Low-Profile Photoacoustic System: Near-Field Volumetric Imaging In Vivo for Blood Vessels Based on Capacitive Micromachined Ultrasonic Transducer (CMUT).

机构信息

Department of Mechanical Convergence Engineering, Hanyang University, Seoul 04763, Korea.

出版信息

Sensors (Basel). 2019 Feb 26;19(5):995. doi: 10.3390/s19050995.

Abstract

Intensive research on photoacoustics (PA) for imaging of the living human body, including the skin, vessels, and tumors, has recently been conducted. We propose a PA measurement system based on a capacitive micromachined ultrasonic transducer (CMUT) with waterless coupling, short measurement time (<1 s), backward light irradiation, and a low-profile ultrasonic receiver unit (<1 cm). We fabricate a 64-element CMUT ring array with 6.2 mm diameter and 10.4 MHz center frequency in air, and 100% yield and uniform element response. To validate the PA tissue characterization, we employ pencil lead and red ink as solid and liquid models, respectively, and a living body to target moles and vessels. The system implements a near-field imaging system consisting of a 6 mm polydimethylsiloxane (PDMS) matching layer between the object and CMUT, which has a 3.7 MHz center frequency in PDMS. Experiments were performed in a waterless contact on the PDMS and the laser was irradiated with a 1 cm diameter. The experimental results show the feasibility of this near-field PA imaging system for position and depth detection of skin, mole, vessel cells, etc. Therefore, a system applicable to a low-profile compact biomedical device is presented.

摘要

近年来,人们对用于活体人体成像的光声(PA)技术进行了深入研究,包括皮肤、血管和肿瘤等方面。我们提出了一种基于无水耦合、短测量时间(<1 秒)、反向光照射和低剖面超声接收单元(<1 厘米)的 PA 测量系统。我们在空气中制造了一个 64 元的 CMUT 环形阵列,直径为 6.2 毫米,中心频率为 10.4 MHz,具有 100%的合格率和均匀的元件响应。为了验证 PA 组织特征,我们分别使用铅笔芯和红色墨水作为固体和液体模型,以及活体目标痣和血管。该系统实现了一个近场成像系统,由 PDMS 与 CMUT 之间的 6 毫米厚的聚二甲基硅氧烷(PDMS)匹配层组成,在 PDMS 中的中心频率为 3.7 MHz。实验在 PDMS 无水接触下进行,激光照射直径为 1 厘米。实验结果表明,这种近场 PA 成像系统可用于皮肤、痣、血管细胞等的位置和深度检测,因此,提出了一种适用于低剖面紧凑型生物医学设备的系统。

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