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首页> 外文期刊>Laser physics letters >Hybrid optoacoustic and ultrasound biomicroscopy monitors' laser-induced tissue modifications and magnetite nanoparticle impregnation
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Hybrid optoacoustic and ultrasound biomicroscopy monitors' laser-induced tissue modifications and magnetite nanoparticle impregnation

机译:混合光声和超声生物显微镜监测仪的激光诱导组织修饰和磁铁矿纳米粒子浸渍

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摘要

Tissue modification under laser radiation is emerging as one of the advanced applications of lasers in medicine, with treatments ranging from reshaping and regeneration of cartilage to normalization of the intraocular pressure. Laser-induced structural alterations can be studied using conventional microscopic techniques applied to thin specimen. Yet, development of non-invasive imaging methods for deep tissue monitoring of structural alterations under laser radiation is of great importance, especially for attaining efficient feedback during the procedures. We developed a fast scanning biomicroscopy system that can simultaneously deliver both optoacoustic and pulse-echo ultrasound contrast from intact tissues and show that both modalities allow manifesting the laser-induced changes in cartilage and sclera. Furthermore, images of the sclera samples reveal a crater developing around the center of the laser-irradiated spot as well as a certain degree of thickening within the treated zone, presumably due to pore formation. Finally, we were able to observe selective impregnation of magnetite nanoparticles into the cartilage, thus demonstrating a possible contrast enhancement approach for studying specific treatment effects. Overall, the new imaging approach holds promise for development of noninvasive feedback control systems that could guarantee efficacy and safety of laser-based medical procedures.
机译:激光辐射下的组织修饰已成为激光在医学中的高级应用之一,其治疗范围从整形和软骨再生到眼压正常化。激光诱导的结构变化可以使用应用于薄样品的常规显微技术进行研究。然而,开发用于在激光辐射下对组织改变进行深层组织监视的非侵入性成像方法非常重要,特别是对于在手术过程中获得有效反馈而言。我们开发了一种快速扫描生物显微镜系统,可以同时从完整的组织中提供光声和脉冲回波超声对比,并显示这两种方式都可以表现出激光诱导的软骨和巩膜变化。此外,巩膜样品的图像显示出在激光照射光斑的中心周围形成的火山口以及在处理区域内一定程度的增厚,这大概是由于孔的形成。最后,我们能够观察到磁铁矿纳米颗粒选择性渗入软骨中,从而证明了一种可能的对比增强方法,用于研究特定的治疗效果。总体而言,新的成像方法有望为无创反馈控制系统的开发提供保证,该系统可以保证基于激光的医疗程序的有效性和安全性。

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