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采用标准具检测的高频光声阵列

High frequency optoacoustic arrays using etalon detection.

作者信息

Hamilton J D, Buma T, Spisar M, O'Donnell M

机构信息

General Electric Company, Milwaukee, WI 53201-0414, USA.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2000;47(1):160-9. doi: 10.1109/58.818758.

Abstract

Two-dimensional phased arrays for high frequency (>30 MHz) ultrasonic imaging are difficult to construct using conventional piezoelectric technology. A promising alternative involves optical detection of ultrasound, where the array element size is defined by the focal spot of a laser beam. Element size and spacing on the order of a few microns are easily achieved, suitable for imaging at frequencies exceeding 100 MHz. We have previously shown images made from a receive-only, two-dimensional optoacoustic array operating at 10 to 50 MHz. The main drawback of optical detection has been poor sensitivity when compared with piezoelectric detection. In this paper, we explore a different form of optical detection demonstrating improved sensitivity and offering a potentially simple method for constructing two-dimensional arrays. Results from a simple experiment using an etalon sensor confirm that the sensitivity of etalon detection is comparable with piezoelectric detection. This paper concludes with a proposal for a high frequency optoacoustic array system using an etalon.

摘要

使用传统压电技术构建用于高频(>30MHz)超声成像的二维相控阵很困难。一种有前景的替代方法涉及超声的光学检测,其中阵列元件的尺寸由激光束的焦点确定。轻松实现了几微米量级的元件尺寸和间距,适用于超过100MHz频率的成像。我们之前已展示了由工作在10至50MHz的仅用于接收的二维光声阵列生成的图像。与压电检测相比,光学检测的主要缺点是灵敏度较差。在本文中,我们探索了一种不同形式的光学检测,其显示出更高的灵敏度,并提供了一种构建二维阵列的潜在简单方法。使用标准具传感器进行的简单实验结果证实,标准具检测的灵敏度与压电检测相当。本文最后提出了一种使用标准具的高频光声阵列系统方案。

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