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Sono-photoacoustic imaging of gold nanoemulsions: Part I. Exposure thresholds

机译:金纳米乳剂的声光声成像:第一部分。

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Integrating high contrast bubbles from ultrasound imaging with plasmonic absorbers from photoacoustic imaging is investigated. Nanoemulsion beads coated with gold nanopsheres (NEB-GNS) are excited with simultaneous light (transient heat at the GNS's) and ultrasound (rarefactional pressure) resulting in a phase transition achievable under different scenarios, enhancing laser-induced acoustic signals and enabling specific detection of nanoprobes at lower concentration. An automated platform allowed dual parameter scans of both pressure and laser fluence while recording broadband acoustic signals. Two types of NEB-GNS and individual GNS were investigated and showed the great potential of this technique to enhance photoacoustic/acoustic signals. The NEB-GNS size distribution influences vaporization thresholds which can be reached at both permissible ultrasound and light exposures at deep penetration and at low concentrations of targets. This technique, called sono-photoacoustics, has great potential for targeted molecular imaging and therapy using compact nanoprobes with potentially high-penetrability into tissue.
机译:研究了将超声成像中的高对比度气泡与光声成像中的等离子体吸收体集成在一起。涂有金纳米微粒(NEB-GNS)的纳米乳胶珠被同时发出的光(GNS处的瞬态热)和超声(反射折射)激发,导致在不同情况下可实现相变,从而增强了激光诱导的声信号并能够对较低浓度的纳米探针。一个自动平台允许在记录宽带声信号的同时对压力和激光通量进行双参数扫描。对两种类型的NEB-GNS和单个GNS进行了研究,它们显示了该技术在增强光声/声信号方面的巨大潜力。 NEB-GNS尺寸分布会影响汽化阈值,在深度穿透和目标浓度低时,在允许的超声波和光线照射下均可达到。这项技术被称为声光声学技术,具有使用潜在的高穿透性进入组织的紧凑型纳米探针进行分子靶向成像和治疗的巨大潜力。

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