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Laser OptoAcoustic Tomography: Towards New Technology for Biomedical Diagnostics

机译:激光光声断层扫描:走向新技术的生物医学诊断

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摘要

This paper provides a short review of physical principles, technology, biomedical applications and perspectives of the optoacoustic imaging. Ideas that made this rapidly developing field possible include the following: (1) laser pulses may be effectively used to produce acoustic pressure in biological tissues localized to the areas of increased optical absorption, (2) the resulting acoustic (ultrasonic) waves propagate in tissues with minimal distortions and attenuation, (3) 2D and 3D maps (images) of the absorbed optical energy can be reconstructed with high resolution from the detected optoacoustic signals. Modern optoacoustic imaging systems include scanning focused transducers and 2D/3D transducer arrays. The widely accepted 2D arrays are employed either for real-time 2D optoacoustic imaging or for 3D imaging via translational or rotational scanning. A commercial prototype of a 3D OAT system is being developed by TomoWave Labs where major biomedical applications include visualization of specific targeting using exogenous optoacoustic contrast agents and imaging of blood distribution and oxygentaion status can be investigated.
机译:本文简要回顾了物理原理,技术,生物医学应用以及光声成像的观点。使这一迅速发展的领域成为可能的想法包括:(1)可以有效地利用激光脉冲在位于光吸收增加区域的生物组织中产生声压;(2)所产生的声波(超声波)在组织中传播以最小的失真和衰减,可以从检测到的光声信号中以高分辨率重建吸收的光能的(3)2D和3D映射(图像)。现代的光声成像系统包括扫描聚焦换能器和2D / 3D换能器阵列。广泛接受的2D阵列可用于实时2D光声成像或通过平移或旋转扫描进行3D成像。 TomoWave Labs正在开发3D OAT系统的商业原型,其主要的生物医学应用包括使用外源性光声造影剂对特定目标进行可视化,并可以研究血液分布和氧离子状态的图像。

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