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首页> 外文期刊>International Journal of Thermophysics >Combined Photoacoustic Ultrasound and Beam Deflection Signal Monitoring of Gold Nanoparticle Agglomerate Concentrations in Tissue Phantoms Using a Pulsed Nd:YAG Laser
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Combined Photoacoustic Ultrasound and Beam Deflection Signal Monitoring of Gold Nanoparticle Agglomerate Concentrations in Tissue Phantoms Using a Pulsed Nd:YAG Laser

机译:使用脉冲Nd:YAG激光组合光声超声和束偏转信号监测组织幻影中的金纳米粒子聚集体浓度

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The purpose of this paper is to show and discuss the effects of the gold nanoparticle (Au-NPs) concentration inside a tissue phantom using a combined system of photoacoustics (PA) and optical beam deflection and their applications particularly to photoacoustic imaging. It was found that the PA signal from aggregated Au nanoparticles is significantly enhanced. The stock concentration of 100 nm Au-NPs was particles/mL from which three samples with 30 %, 70 %, and 90 % concentration were prepared using polyvinyl chloride-plastisol. Each sample was then irradiated across a line scan using a 10 ns pulsed Q-switched Nd:YAG laser at a 1 Hz repetition rate and so that no physical ablation was observed. The corresponding photoacoustic pressure was found to approximately cover a range between 10 kPa and 51 kPa. This corresponds to approximately 130 pJ to 315 pJ of acoustic energy radiated by Au-NPs into the tissue. The maximal efficacy of the transformation of optical energy into thermal energy was . Time-resolved photoacoustic deflection was also used to monitor the laser-interaction process. The results clearly indicated that (i) the photoacoustic signal amplitude varies in a given sample as a result of the non-uniform concentration distribution of embedded Au-NPs; (ii) an increase of the concentration increased the signal amplitude linearly; and (iii) at higher nanoparticle concentrations, the probe deflection was found to increase due to a steeper thermoelastic gradient as a result of a higher absorption by particle agglomerates and particle size-dependent dispersions.
机译:本文的目的是显示和讨论使用光声(PA)和光束偏转的组合系统在组织体模中金纳米粒子(Au-NPs)浓度的影响及其在光声成像中的应用。发现聚集的Au纳米颗粒的PA信号显着增强。 100 nm Au-NPs的储备浓度为颗粒/ mL,使用聚氯乙烯-塑料溶胶制备了三个浓度分别为30%,70%和90%的样品。然后,使用10 ns脉冲调Q开关Nd:YAG激光器以1 Hz重复频率对每个样品进行线扫描照射,因此未观察到物理消融。发现相应的光声压力大致覆盖在10kPa和51kPa之间的范围。这对应于Au-NP辐射到组织中的大约130 pJ至315 pJ的声能。将光能转换为热能的最大功效为。时间分辨的光声偏转也用于监测激光相互作用过程。结果清楚地表明:(i)由于嵌入的Au-NP浓度分布不均匀,给定样品中的光声信号幅度发生了变化; (ii)浓度的增加使信号幅度线性增加; (iii)在较高的纳米颗粒浓度下,由于更陡峭的热弹性梯度而导致的探针偏转增加,这是由于颗粒团聚体和与粒度有关的分散体具有更高的吸收率所致。

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