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Photoacoustic tomography for imaging the prostate: a transurethral illumination probe design and application

机译:用于前列腺成像的光声层析成像:经尿道照明探头的设计和应用

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摘要

In vivo imaging of prostate cancer with photoacoustic tomography is currently limited by the lack of sufficient local fluence for deep tissue penetration and the risk of over-irradiation near the laser-tissue contact surface. We propose the design of a transurethral illumination probe that addresses those limitations. A high energy of 50 mJ/pulse is coupled into a 1000-µm-core diameter multimode fiber. A 2 cm diffusing end is fabricated, which delivers light in radial illumination. The radial illumination is then reflected and reshaped by a parabolic cylindrical mirror to obtain nearly parallel side illumination with a doubled fluence. The fiber assembly is housed in a 25 Fr cystoscope sheath to provide protection of the fiber and maintain a minimal laser-tissue contact distance of 5 mm. A large laser-tissue contact surface area of 4 cm2 is obtained and the fluence on the tissue surface is kept below the maximum permissible exposure. By imaging a prostate mimicking phantom, a penetration depth of 3.5 cm at 10 mJ/cm2 fluence and 700 nm wavelength is demonstrated. The results indicate that photoacoustic tomography with the proposed transurethral probe has the potential to image the entire prostate while satisfying the fluence maximum permissible exposure and delivering a high power to the tissue.
机译:当前,由于缺乏足够的局部注量以进行深层组织穿透以及在激光-组织接触表面附近过度照射的风险,利用光声层析成像对前列腺癌的体内成像受到了限制。我们提出了解决这些局限性的经尿道照明探头的设计。 50 mJ /脉冲的高能量耦合到纤芯直径为1000 µm的多模光纤中。制作了一个2厘米的扩散端,可在径向照明下提供光。然后,通过抛物柱面镜反射并重新调整径向照明,以使通量增加一倍,获得几乎平行的侧面照明。光纤组件装在25 Fr膀胱镜鞘中,以保护光纤并保持最小的5 mm激光与组织接触距离。获得了4 cm 2 的大的激光-组织接触表面积,并且组织表面的通量保持在最大允许暴露以下。通过对模拟前列腺的体模进行成像,显示了在10 mJ / cm 2 通量和700 nm波长下的穿透深度为3.5 cm。结果表明,所提出的经尿道探头的光声层析成像技术有可能对整个前列腺成像,同时满足注量最大允许暴露量并向组织输送高能量。

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