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Fourier-domain digital holographic optical coherence imaging of living tissue

机译:活组织的傅里叶域数字全息光学相干成像

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Digital holographic optical coherence imaging is a full-frame coherence-gated imaging approach that uses a CCD camera to record and reconstruct digital holograms from living tissue. Recording digital holograms at the optical Fourier plane has advantages for diffuse targets compared with Fresnel off-axis digital holography. A digital hologram captured at the Fourier plane requires only a 2D fast Fourier transform for numerical reconstruction. We have applied this technique for the depth-resolved imaging of rat osteogenic tumor multicellular spheroids and acquired cross-section images of the anterior segment and the retinal region of a mouse eye. A penetration depth of 1.4 mm for the tumor spheroids was achieved.
机译:数字全息光学相干成像是一种全帧相干门控成像方法,它使用CCD相机来记录和重建来自活组织的数字全息图。与菲涅耳离轴数字全息图相比,在光学傅里叶平面记录数字全息图对于漫射目标具有优势。在傅立叶平面捕获的数字全息图仅需要二维快速傅立叶变换即可进行数值重建。我们已经将此技术用于大鼠成骨性肿瘤多细胞球体的深度分辨成像,并获得了小鼠眼前节和视网膜区域的横截面图像。肿瘤球体的穿透深度为1.4毫米。

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