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High Repetition Nanosecond Ti:Sapphire Laser for Photoacoustic Microscopy

机译:高重复纳秒:用于光声显微镜的蓝宝石激光

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High resolution optical imaging technologies, such as optical coherence tomography or multiphoton microscopy has given us an opportunity to do in vivo imaging noninvasively. However, due to the high laser scattering, these optical imaging techniques were prohibited from obtaining high resolution in the diffusive regime. Photoacoustic microscopy (PAM) can overcome this soft depth limit and maintain high resolution at the same time. In the past, PAM was limited to using an Nd:YAG laser, which requires an optical parametric oscillator (OPO) to obtain wavelengths selectively other than the second harmonic. However, OPO is unstable and cumbersome to control. We replaced the Nd:YAG laser and the OPO with a nanosecond pulsed Ti:Sapphire laser to give PAM more flexibility in the speed and the input wavelength while reducing the footprint of our system. This also increased our stability by removing OPO. Using a Ti:Sapphire laser allowed us to increase the pulse repetition rate to 100-500 kHz. Normally, micro-lasers with this pulse repetition rate will suffer from a significant decrease in pulse energy, but we were able to maintain stable pulses with a few hundreds nJ. Also, a well-known advantage of a Ti:Sapphire laser is its tunability from 650 to 1100 ran. For our PAM application, we used a range from 700 to 900 nm to obtain significant functional images. This added flexibility can help acquire functional images such as the angiogenesis process with better contrast. Here, we present a nanosecond Ti: Sapphire laser designated for PAM applications with increased contrast imaging.
机译:高分辨率光学成像技术,如光学相干断层扫描或多光子显微镜,使我们有机会非侵略地在体内成像。然而,由于高激光散射,这些光学成像技术被禁止在扩散制度中获得高分辨率。光声显微镜(PAM)可以克服这种柔和的深度限制并同时保持高分辨率。在过去,PAM仅限于使用Nd:YAG激光器,其需要光学参数振荡器(OPO)以获得除第二谐波之外的选择性的波长。但是,opo无法控制和繁琐。我们用纳秒脉冲Ti取代了ND:YAG激光器和OPO:蓝宝石激光器,在速度和输入波长的同时使PAM更具灵活性,同时减少了我们系统的占地面积。这也通过去除opo来提高我们的稳定性。使用TI:蓝宝石激光使我们将脉冲重复率增加到100-500 kHz。通常,具有这种脉冲重复率的微激光将遭受脉冲能量的显着降低,但我们能够保持稳定的脉冲,几百nJ。此外,Ti的众所周知的优势:蓝宝石激光从650到1100 RAN的可调性。对于我们的PAM应用程序,我们使用700到900 nm的范围来获得显着的功能图像。这种增加的灵活性可以帮助获得诸如血管生成过程的功能图像,具有更好的对比度。在这里,我们介绍了一个纳秒Ti:Sapphire激光器指定用于PAM应用,具有增加的对比度成像。

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