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离轴全息探测的傅里叶变换声光成象。

Fourier transform acousto-optic imaging with off-axis holographic detection.

出版信息

Appl Opt. 2021 Aug 20;60(24):7107-7112. doi: 10.1364/AO.427181.

Abstract

Acousto-optic (AO) imaging is an in-depth optical imaging technique of highly scattering media. One challenging end-application for this technique is to perform imaging of living biological tissues. Indeed, because it relies on coherent illumination, AO imaging is sensitive to speckle decorrelation occurring on the millisecond time scale. Camera-based detections are well suited for in vivo imaging provided their integration time is lower than those decorrelation time scales. We present Fourier transform acousto-optic imaging combined with off-axis holography, which relies on plane waves and long-duration pulses. We demonstrate, for the first time to the best of our knowledge, a two-dimensional imaging system fully compatible with in vivo imaging prerequisites. The method is validated experimentally by performing in-depth imaging inside a multiple scattering sample.

摘要

声光(AO)成像是一种深度光学成像技术,适用于高度散射介质。该技术的一个极具挑战性的应用领域是对活体生物组织进行成像。实际上,由于该技术依赖相干照明,因此它对毫秒时间尺度上的散斑去相关非常敏感。基于相机的检测非常适合用于活体成像,只要它们的积分时间低于这些去相关时间尺度。我们提出了结合离轴全息术的傅里叶变换声光成像,该方法依赖于平面波和长持续时间脉冲。我们首次展示了一种完全符合活体成像前提的二维成像系统。该方法通过在多次散射样本内部进行深度成像得到了实验验证。

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