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The use of optically activated nanoparticles to enhance controlled lesion formation from high intensity focused ultrasound exposures

机译:使用光学活化的纳米颗粒增强高强度聚焦超声暴露引起的病变形成

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Light-absorbing nanoparticles can be used to improve the signal-to-noise ratio of the thermoelastic emissions from tissue that are used in photoacoustic tomography (PAT) and microscopy (PAM). Nanoparticles can be functionalized to selectively target cancer cells and destroy them through the formation of vapour bubbles. It has been shown that heating of the nanoparticles with a laser whilst they are simultaneously under tension from a high intensity focused ultrasound (HIFU) field results in a significant reduction in the optical fluence and acoustic pressure thresholds required for bubble formation. The localised heating from HIFU exposures in tissue is believed to be increased through the presence of bubbles, or specifically inertial cavitation, in the focal region. Thus an ability to nucleate vapour bubbles from nanoparticles using laser light combined with a HIFU field presents a unique opportunity for imaging and therapeutic applications.
机译:吸收光的纳米颗粒可用于改善光声层析成像(PAT)和显微镜(PAM)中使用的组织的热弹性发射的信噪比。可以对纳米粒子进行功能化,以选择性地靶向癌细胞并通过形成气泡来破坏它们。已经显示,当纳米颗粒同时处于高强度聚焦超声(HIFU)场的张力下时,用激光对其进行加热会导致气泡形成所需的光学通量和声压阈值显着降低。据信,由于在焦点区域中存在气泡或特别是惯性空化,组织中HIFU暴露引起的局部加热增加了。因此,使用结合HIFU场的激光使纳米颗粒中的汽泡成核的能力为成像和治疗应用提供了独特的机会。

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