Real-time swept-beam compact photoacoustic/ultrasound imaging system (Conference Presentation)

Geng-Shi Jeng, S. Yoon, I. Pelivanov, Meng-Lin Li, Liang Gao, David S. Li, M. O’Donnell
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引用次数: 1

Abstract

Photoacoustic (PA) imaging has had limited clinical applicability for many reasons but one primary barrier to clinical translation is the bulky, expensive, and low repetition-rate laser typically used, resulting in low frame-rate images and a system with a large physical footprint. We have previously demonstrated a fast-scan approach delivering the frame rates required for real-time integrated PA/ultrasound (PAUS) imaging. In this paper, we present a new real-time PAUS system based on a swept-scanning source approach using a compact, recently-developed laser, providing pulse-to-pulse wavelength tuning at kHz rates and a scanning fiber-optic delivery system integrated with a high-frequency (15 MHz) US linear array. An array of fibers spanning the array are arranged on two lateral sides of the transducer and scanned sequentially based on optimized pulse sequences. By coherent compounding of multiple sub-images associated with each fiber light source, PA imaging with sufficient SNR at a frame rate of 50 Hz is achieved. Real-time in vivo multi-spectral imaging of nano-drug delivery to mice is demonstrated. With the same scanner footprint, our compact PAUS system can provide not only conventional high-quality scanned US imaging with all associated modes, but interleaved, multispectral PA imaging at video rates appropriate for real-time clinical applications.
实时扫描光束紧凑型光声/超声成像系统(会议报告)
由于许多原因,光声(PA)成像的临床应用受到限制,但临床翻译的一个主要障碍是通常使用的体积庞大,昂贵且重复率低的激光,导致低帧率图像和系统具有较大的物理足迹。我们之前已经演示了一种快速扫描方法,提供实时集成PA/超声(PAUS)成像所需的帧率。在本文中,我们提出了一种新的基于扫描源方法的实时PAUS系统,该系统使用了一种紧凑的、最近开发的激光器,提供以kHz速率进行脉冲到脉冲波长调谐,以及一种集成了高频(15 MHz) US线性阵列的扫描光纤传输系统。在换能器的两侧布置跨越该阵列的光纤阵列,并根据优化的脉冲序列进行顺序扫描。通过与每个光纤光源相关联的多个子图像的相干复合,实现了帧率为50 Hz的具有足够信噪比的PA成像。展示了纳米药物给药小鼠的实时体内多光谱成像。使用相同的扫描仪占地面积,我们的紧凑型PAUS系统不仅可以提供所有相关模式的传统高质量扫描超声成像,还可以提供适合实时临床应用的视频速率的交错多光谱超声成像。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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