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Optical coherence tomography for visualization of plant tissues

机译:光学相干层析成像技术,用于植物组织的可视化

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摘要

First experimental results on optical coherence tomography (OCT) imaging of internal structure of plant tissues and in situ OCT monitoring of plant tissue regeneration at different water supply are reported. The OCT images are a map of backscattering coefficient 200 x 200 pixels, 1.5 mm along plant surface and up to 2 mm in depth (by analogy with ultrasound B-scan). Experiments for evaluating OCT capabilities were performed on Tradescantia blossfeldiana Mild. Using OCT device, in vivo images of plant tissues were acquired with a spatial resolution of 15 μm. These OCT images correlate with standard microscopy data from the same tissue regions. Since incident light power at a wavelength of 1.3 μm is as low as 0.5 mW, two-dimensional OCT images can be obtained directly on an intact plant not damaging it. Acquisition time for a 2D image is 1-3 s. OCT enables effective monitoring of fast reactions in plants at different water supply.
机译:报道了有关植物组织内部结构的光学相干断层扫描(OCT)成像以及在不同供水条件下对植物组织再生进行原位OCT监测的第一批实验结果。 OCT图像是200 x 200像素的后向散射系数图,沿植物表面1.5毫米,深度最大2毫米(类似于超声B扫描)。在Tradescantia blossfeldiana Mild上进行了评估OCT能力的实验。使用OCT设备,以15μm的空间分辨率获取植物组织的体内图像。这些OCT图像与来自相同组织区域的标准显微镜数据相关。由于波长为1.3μm的入射光功率低至0.5 mW,因此可以直接在完整的植物上获得二维OCT图像,而不会损坏它。 2D图像的采集时间为1-3 s。 OCT可以有效监控不同供水情况下植物中的快速反应。

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