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高频超声:超声领域的新前沿。

High frequency ultrasound: a new frontier for ultrasound.

作者信息

Shung K, Cannata Jonathan, Qifa Zhou Member, Lee Jungwoo

机构信息

Department of Biomedical Engineering, University of Southern California, Los Angeles, CA 90089-1111, USA.

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2009;2009:1953-5. doi: 10.1109/IEMBS.2009.5333463.

Abstract

High frequency ultrasonic imaging is considered by many to be the next frontier in ultrasonic imaging because higher frequencies yield much improved spatial resolution by sacrificing the depth of penetration. It has many clinical applications including visualizing blood vessel wall, anterior segments of the eye and skin. Another application is small animal imaging. Ultrasound is especially attractive in imaging the heart of a small animal like mouse which has a size in the mm range and a heart beat rate faster than 600 BPM. A majority of current commercial high frequency scanners often termed "ultrasonic backscatter microscope or UBM" acquire images by scanning single element transducers at frequencies between 50 to 80 MHz with a frame rate lower than 40 frames/s, making them less suitable for this application. High frequency linear arrays and linear array based ultrasonic imaging systems at frequencies higher than 30 MHz are being developed. The engineering of such arrays and development of high frequency imaging systems has been proven to be highly challenging. High frequency ultrasound may find other significant biomedical applications. The development of acoustic tweezers for manipulating microparticles is such an example.

摘要

许多人认为高频超声成像将成为超声成像的下一个前沿领域,因为更高的频率虽会牺牲穿透深度,但能显著提高空间分辨率。它有许多临床应用,包括可视化血管壁、眼前节和皮肤。另一个应用是小动物成像。超声在对毫米级大小且心跳速率超过600次/分钟的小鼠等小动物的心脏成像方面特别有吸引力。当前大多数商业高频扫描仪通常被称为“超声背散射显微镜或UBM”,它们通过以50至80兆赫兹的频率扫描单元素换能器来获取图像,帧率低于40帧/秒,这使得它们不太适合此应用。高于30兆赫兹的高频线性阵列以及基于线性阵列的超声成像系统正在研发中。事实证明,此类阵列的工程设计和高频成像系统的开发极具挑战性。高频超声可能会有其他重要的生物医学应用。用于操纵微粒的声镊的开发就是这样一个例子。

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