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Intensity fluctuation analysis of cell scattering/imaging with clinical application

机译:细胞散射/成像与临床应用的强度波动分析

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Cell scattering produces a speckle pattern, while imaging produces a contrast pattern. This family of fluctuation signals can be studied by analysis techniques such as correlation and fractal dimension. Human breast cell (normal and cancerous) samples were investigated using laser speckle and imaging microscopy. Image data from tetraploid human cell motion and quorum sensing biofrlm growth were studied as well/and we found that the signal fluctuations could be interpreted as gene expression fluctuations occurring during inter-cell communication. We have mapped nucleotide sequences as images and studied the fluctuation We showed that the fractal dimension and correlation can be used for the description of bio-information from the DNA (nanometer) scale to the tissue (millimeter) level. Fluctuations of the HAR1 nucleotide sequence and IRP-6 single-mutation cases in the van der Woude syndrome were discussed. Sub-cell structures such as the 40S ribosome, GroEL, and lysozyme, were shown to carry texture fractal dimension information in their images consistent with their biological states. Clinical applications to X-ray mammography and Parkinson disease MRI data were discussed.
机译:细胞散射产生散斑图案,而成像产生对比度图案。该系列的波动信号可以通过分析技术,例如相关性和分形尺寸。使用激光散斑和成像显微镜研究人乳腺细胞(正常和癌症)样品。研究了来自四倍性人细胞运动和仲裁感测BiofRLM生长的图像数据/并且我们发现信号波动可以被解释为在细胞间通信期间发生的基因表达波动。我们将核苷酸序列映射为图像,并研究了波动,我们表明分形维度和相关性可以用于从DNA(纳米)尺度的生物信息的描述(毫米)水平。讨论了肛门Woude综合征在范德Woude综合征中的Har1核苷酸序列和IRP-6单突变病例的波动。诸如40s核糖体,腹股沟和溶菌酶的亚细胞结构被示出,其在与其生物状态一致的图像中携带纹理分形维度信息。讨论了X射线乳腺X线摄影和帕金森病MRI数据的临床应用。

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