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光声断层成像中超宽带超声脉冲的检测

Detection of ultrawide-band ultrasound pulses in optoacoustic tomography.

作者信息

Andreev Valeriy G, Karabutov Alexander A, Oraevsky Alexander A

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2003 Oct;50(10):1383-90. doi: 10.1109/tuffc.2003.1244756.

Abstract

Laser optoacoustic imaging system (LOIS) uses time-resolved detection of laser-induced pressure profiles in tissue in order to reconstruct images of the tissue based on distribution of acoustic sources. Laser illumination with short pulses generates distribution of acoustic sources that accurately replicates the distribution of absorbed optical energy. The complex spatial profile of heterogeneous distribution of acoustic sources can be represented in the frequency domain by a wide spectrum of ultrasound ranging from tens of kilohertz to tens of megahertz. Therefore, LOIS requires a unique acoustic detector operating simultaneously within a wide range of ultrasonic frequencies. Physical principles of an array of ultrawide-band ultrasonic transducers used in LOIS designed for imaging tumors in the depth of tissue are described. The performance characteristics of the transducer array were modeled and compared with experiments performed in gel phantoms resembling optical and acoustic properties of human tissue with small tumors. The amplitude and the spectrum of laser-induced ultrasound pulses were measured in order to determine the transducer sensitivity and the level of thermal noises within the entire ultrasonic band of detection. Spatial resolution of optoacoustic images obtained with an array of piezoelectric transducers and its transient directivity pattern within the field of view are described. The detector design considerations essential for obtaining high-quality optoacoustic images are presented.

摘要

激光光声成像系统(LOIS)利用对组织中激光诱导压力分布的时间分辨检测,以便根据声源分布重建组织图像。短脉冲激光照射会产生声源分布,该分布能精确复制吸收光能量的分布。声源非均匀分布的复杂空间轮廓在频域中可由从几十千赫兹到几十兆赫兹的宽频谱超声表示。因此,LOIS需要一个能在宽范围超声频率内同时工作的独特声学探测器。描述了用于在组织深处成像肿瘤的LOIS中所使用的超宽带超声换能器阵列的物理原理。对换能器阵列的性能特征进行了建模,并与在类似于具有小肿瘤的人体组织光学和声学特性的凝胶体模中进行的实验进行了比较。测量了激光诱导超声脉冲的幅度和频谱,以确定换能器灵敏度以及整个检测超声频段内的热噪声水平。描述了用压电换能器阵列获得的光声图像的空间分辨率及其在视野内的瞬态方向性图。提出了获得高质量光声图像所必需的探测器设计考虑因素。

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