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Optical phase conjugation for turbidity suppression in biological samples

机译:光相共轭抑制生物样品中的浊度

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Elastic optical scattering, the dominant light-interaction process in biological tissues, prevents tissues from being transparent. Although scattering may appear stochastic, it is in fact deterministic in nature. We show that, despite experimental imperfections, optical phase conjugation (lambda = 532 nm) can force a transmitted light field to retrace its trajectory through a biological target and recover the original light field. For a 0.69-mm-thick chicken breast tissue section, we can enhance point-source light return by a factor of similar to 5 x 10(3) and achieve a light transmission enhancement factor of 3.8 within a collection angle of 29 degrees. Additionally, we find that the reconstruction's quality, measured by the width of the reconstructed point source, is independent of tissue thickness (up to a thickness of 0.69 mm). This phenomenon may be used to enhance light transmission through tissue, enable measurement of small tissue movements, and form the basis of new tissue imaging techniques.
机译:弹性光学散射是生物组织中主要的光相互作用过程,阻止了组织透明。尽管散射可能看起来是随机的,但实际上它是确定性的。我们显示,尽管存在实验缺陷,但光学相位共轭(λ= 532 nm)可以迫使透射光场通过生物目标追踪其轨迹并恢复原始光场。对于厚度为0.69毫米的鸡胸组织切片,我们可以将点光源的光返回增强到5 x 10(3)左右,并在29度的收集角度内达到3.8的透光率。此外,我们发现,通过重建点源的宽度衡量的重建质量与组织厚度(最大厚度为0.69 mm)无关。此现象可用于增强通过组织的光传输,能够测量小的组织运动,并构成新的组织成像技术的基础。

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