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Optimized light delivery probe using ball lenses for co-registered photoacoustic and ultrasound endo-cavity subsurface imaging

机译:使用球形透镜优化的光传输探针用于共配准的光声和超声腔内地下成像

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摘要

An optimized hand-held photoacoustic and ultrasound probe suitable for endo-cavity tumor subsurface imaging was designed and evaluated. Compared to previous designs, the prototype probe, consisting of four 1 mm multi-mode optical fibers attached with 1.5 mm diameter ball-shaped fiber tips sandwiched between a transvaginal ultrasound transducer and a custom-made sheath, demonstrated a higher light output and better beam homogeneity on tissue subsurface. The output power and fluence profile were simulated for different design parameters. A camera recorded fluence profiles through calibrated intralipid solution at various imaging depths. The light delivery efficiency was experimentally compared with and without the ball lenses, based on ex-vivo imaging of human colorectal cancer and in-vivo imaging of a palmar vein proximal to the human wrist. The simulations and experiments demonstrated that ball-shaped fiber tip design can achieve homogeneous fluence distribution on tissue subsurface with acceptable light output efficiency, suggesting its clinical potential for in-vivo endo-cavity imaging.
机译:设计并评估了适合腔内肿瘤表面成像的优化的手持式光声和超声探头。与以前的设计相比,该原型探头由四根1 mm多模光纤和直径1.5 attachedmm球形光纤头组成,夹在经阴道超声换能器和定制护套之间,显示出更高的光输出和更好的光束组织表面下的均质性。针对不同的设计参数模拟了输出功率和注量曲线。摄像机通过校准后的脂质内溶液在各种成像深度下记录注量分布。根据人体结直肠癌的离体成像和人腕附近的掌静脉的体内成像,对有球镜和无球镜的光传输效率进行了实验比较。仿真和实验表明,球形光纤尖端设计可以在组织亚表面上实现均匀的能量密度分布,并具有可接受的光输出效率,表明其在体内腔内成像方面的临床潜力。

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