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Photoacoustic imaging using narrow beam scanning

机译:使用窄光束扫描的光声成像

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In deep tissue photoacoustic (PA) imaging, a large beam size with large pulse energy is typically used as a broad band acoustic signal excitation source. However, widely used solid state Q-switched laser systems are limited by their repetition rate for real-time applications. An emerging fiber laser with nanosecond level pulse width, hundreds of kilohertz repetition rate, and up to 1mJ pulse energy is a potential candidate for a new PA signal excitation source. However, the inherent drawbacks of narrow beam size and low pulse energy of a fiber laser make it hard to be directly applied to deep tissue imaging. To overcome this issue, a narrow beam scanning scheme is proposed in this study. However, the lower light penetration capability may still limit the depth at which this technique can be applied. The objective of this study is to compare the general quality of reconstructed images in terms of signal to noise ratio (SNR) for multiple narrow beam scanning PA excitation and conventional one shot, high pulse energy and large beam size excitation at depths appropriate for peripheral vascular applications.
机译:在深部组织光声(PA)成像中,通常将具有大脉冲能量的大束大小用作宽带声信号激励源。但是,广泛使用的固态调Q激光系统受到实时应用重复频率的限制。新型的光纤激光器具有纳秒级的脉冲宽度,数百千赫的重复频率和高达1mJ的脉冲能量,是新的PA信号激励源的潜在候选者。然而,光纤激光器的窄光束尺寸和低脉冲能量的固有缺点使其难以直接应用于深部组织成像。为了克服这个问题,本研究提出了一种窄光束扫描方案。但是,较低的光穿透能力仍可能限制可应用此技术的深度。这项研究的目的是在多次窄束扫描PA激发和常规单发,高脉冲能量和适合周围血管深度的大束径激发方面,比较信噪比(SNR)方面的重建图像的一般质量。应用程序。

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