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Motorized Photoacoustic Tomography Probe for Label-Free Improvement in Image Quality

机译:电动光声断层扫描探头,用于图像质量的无标签改善

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One of the challenges in high-resolution in vivo lipid-based photoacoustic tomography (PAT) is improving penetration depth and signal-to-noise ratio (SNR) past subcutaneous fat absorbers. A potential solution is to create optical manipulation techniques to maximize the photon density within a region of interest. Here, we present a motorized PAT probe that is capable of tuning the depth in which light is focused, as well as substantially reducing probe-skin artifacts that can obscure image interpretation. Our PAT system consists of a Nd:YAG laser (Surelite EX, Continuum) coupled with a 40 MHz central frequency ultrasound transducer (Vevo2100, FUJIFILM Visual Sonics). This system allows us to deliver 10 Hz, 5 ns light pulses with fluence of 40 mJ/cm~2 to the tissue interest and reconstruct PAT and ultrasound images with axial resolutions of 125 μm and 40 μm, respectively. The motorized PAT holder was validated by imaging a polyethylene-50 tubing embedded polyvinyl alcohol phantom and periaortic fat on apolipoprotein-E deficient mice. We used 1210 nm light for this study, as this wavelength generates PAT signal for both lipids and polyethylene-50 tubes. Ex vivo results showed a 2 mm improvement in penetration depth and in vivo experiments showed an increase in lipid SNR of at least 62%. Our PAT probe also utilizes a 7 μm aluminum filter to prevent in vivo probe-skin reflection artifacts that have been previously resolved using image post-processing techniques. Using this optimized PAT probe, we can direct light to various depths within tissue to improve image quality and prevent reflection artifacts.
机译:高分辨率在体内脂质的光声断层扫描(PAT)中的一个挑战是改善穿透深度和发射信噪比(SNR)过去皮下脂肪吸收器。潜在的解决方案是创造光学操纵技术,以最大化感兴趣区域内的光子密度。这里,我们提供了一种电动PAT探针,其能够调整光聚焦的深度,以及基本上减少可以模糊图像解释的探针 - 皮肤伪像。我们的PAT系统由ND:YAG激光(脲,连续核)与40 MHz中央频率超声换能器(Vevo2100,Fujifilm视觉超声)相结合。该系统允许我们向组织兴趣提供10 Hz,5 ns光脉冲,并分别以125μm和40μm的轴分辨率重建PAT和超声图像。通过在载脂蛋白-E缺陷小鼠上成像聚乙烯-50管嵌入聚乙烯醇体育和围眼脂肪来验证电动PAT持有者。我们使用1210 nm光来进行这项研究,因为该波长为脂质和聚乙烯-50管产生PAT信号。前体内结果表明,渗透深度和体内实验表明,脂质SNR的增加至少为62%。我们的PAT探针还利用了7μm铝过滤器,以防止使用图像后处理技术先前解决的体内探针皮肤反射伪影。使用该优化的Pat探头,我们可以将光线指向组织内的各种深度,以提高图像质量并防止反射伪影。

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