Department of Mechanical Convergence Engineering, Hanyang University, Seoul 04763, Korea.
Sensors (Basel). 2019 Feb 26;19(5):995. doi: 10.3390/s19050995.
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.
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。