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Ultra-fast photoacoustic flow cytometry with a 0.5 MHz pulse repetition rate nanosecond laser

机译:0.5 MHz脉冲重复频率纳秒激光的超快速光声流式细胞仪

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摘要

In vivo photoacoustic (PA) flow cytometry (PAFC) has great potential for detecting disease-associated biomarkers in blood and lymph flow, as well as real-time control of the efficacy of photothermal (PT) and other therapies through the counting of circulating abnormal objects. We report on a high speed PAFC with a Yb-doped fiber laser having a 0.5-MHz pulse repetition rate at a wavelength of 1064 nm, pulse width of 10 ns, and energy up to 100 µJ. This is the first biomedical application of PA and PT techniques operating at the highest pulse repetition rate of nanosecond lasers that provide 100-fold enhancement in detection speed of carbon nanotube clusters, as well as real-time monitoring of the flow velocity of individual targets through the width of PA signals. The laser pulse rate limits for PT and PA techniques depending on the sizes of laser beam and targets and flow velocity are discussed. We propose time-overlapping mode and generation of periodic nano- and microbubbles as PA-signal and PT-therapy amplifiers, including discrimination of small absorbing targets among large ones. Taking into account the relatively low level of background signals from most biotissues at 1064 nm, our data suggest that a nanosecond Yb-doped fiber laser operating at high pulse repetition rate could be a promising optical source for time-resolved PA and PT cytometry, imaging, microscopy, and therapy, including detection of nanoparticles and cells flowing at velocities up to 2.5 m/s.
机译:体内光声(PA)流式细胞仪(PAFC)在检测血液和淋巴液中与疾病相关的生物标志物以及通过计数循环异常来实时控制光热(PT)和其他疗法的功效方面具有巨大潜力对象。我们报告了一种掺有Yb的光纤激光器的高速PAFC,该激光器在波长1064 nm,脉冲宽度10 ns和能量高达100 µJ时具有0.5MHz的脉冲重复频率。这是PA和PT技术的首次生物医学应用,其以纳秒级激光的最高脉冲重复频率运行,可将碳纳米管簇的检测速度提高100倍,并实时监控单个目标通过的速度。 PA信号的宽度。讨论了PT和PA技术的激光脉冲速率限制,具体取决于激光束和目标的大小以及流速。我们提出时间重叠模式并产生周期性的纳米气泡和微气泡作为PA信号和PT治疗放大器,包括在大吸收目标之间区分小吸收目标。考虑到来自大多数生物组织在1064 nm处相对较低的背景信号水平,我们的数据表明,以高脉冲重复频率工作的纳秒掺Yb光纤激光器可能是时间分辨PA和PT细胞计数,成像的有前途的光源,显微镜和治疗,包括检测纳米粒子和以高达2.5 m / s的速度流动的细胞。

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