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Quantitative phase-contrast microscopy by angular spectrum digital holography

机译:角谱数字全息术定量相位对比度显微镜

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Techniques of digital holography are improved in order to obtain high-resolution, high-fidelity images of quantitative phase-contrast microscopy. In particular, the angular spectrum method of calculating the holographic optical field is seen to have several advantages over the more commonly used Fresnel transformation or Huygens convolution method. Spurious noise and interference components can be tightly controlled through the analysis and filtering of the angular spectrum. The reconstruction distance does not have a lower limit and the off-axis angle between the object and reference can be lower than the Fresnel requirement and still be able to cleanly separate out the zero-order background. Holographic phase images are largely immune from the coherent noise common in amplitude images. Together with the use of a miniature pulsed laser, the resulting images have 0.5 μm diffraction-limited lateral resolution and the phase profile is accurate to about 30 nm of optical path length. SKOV-3 (ovarian cancer cells) and HUVEC (human umbilical vein endothelial cells) are imaged that display intra-cellular and intra-nuclear organelles with clarity and quantitative accuracy. The technique clearly exceeds currently available methods in phase-contrast optical microscopy in the level of resolution and detail, and provides a new modality for imaging morphology of cellular and intracellular structures that is not currently available.
机译:为了获得定量相位对比显微镜的高分辨率,高保真图像,改善了数字全息技术的技术。特别地,计算全息光学场的角谱法得到了更常用的菲涅耳转换或Huygens卷积方法的若干优点。可以通过分析和滤波来紧密控制杂散的噪声和干扰组件。重建距离没有下限,并且对象和参考之间的轴轴角可以低于菲涅耳要求,并且仍然能够清洁地分离零阶背景。全息相位图像大大免于幅度图像中常见的相干噪声。与使用微型脉冲激光器一起,所得到的图像具有0.5μm的衍射限制横向分辨率,相曲线精确到约30nm的光路长度。 SKOV-3(卵巢癌细胞)和HUVEC(人脐静脉内皮细胞)成像,以清晰和定量精度显示细胞内和内核细胞器。该技术在分辨率和细节的水平下,该技术明显超过了相位造影光学显微镜中的可用方法,并提供了目前不可用的细胞和细胞内结构的成像形态的新模式。

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