首页> 外文会议>Biomedical Imaging (ISBI), 2012 9th IEEE International Symposium on >Co-registration of total internal reflection fluorescence and confocal microscopy images for studying vesicle trafficking in living cells
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Co-registration of total internal reflection fluorescence and confocal microscopy images for studying vesicle trafficking in living cells

机译:全内反射荧光和共聚焦显微镜图像的共配准,用于研究活细胞中的囊泡运输

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The dynamics of vesicle trafficking via the cell membrane and the tracking of their subsequent movements within the cell are of great interest in the biomedical sciences. One challenge of image analysis is following the vesicle's fate continuously from its formation at the membrane to its final destination, as it requires different microscopy techniques to image the complete journey. Total internal reflection fluorescence (TIRF) microscopy is used for imaging events at the cell membrane and laser scanning confocal microscopy (LSCM) is used for imaging the interior of the cell. We present a simple and robust method for co-registration of data sets from the two microscopy techniques. This method is validated on images generated by computer simulation of the image formation process in TIRF and in LSCM. The registration parameters are recovered with error less than 1% in presence of Gaussian noise up to SNR of 3.8dB. Registration of real microscopy data is shown and the accuracy of the retrieved parameters is compared and agrees well with values obtained manually and a difference in squares measure.
机译:经由细胞膜的囊泡运输的动力学及其在细胞内随后运动的追踪在生物医学科学中引起极大兴趣。图像分析的一项挑战是不断跟踪囊泡从膜形成到最终到达目的地的命运,因为它需要不同的显微镜技术才能对整个旅程进行成像。全内反射荧光(TIRF)显微镜用于对细胞膜处的事件进行成像,激光扫描共聚焦显微镜(LSCM)用于对细胞内部进行成像。我们提出了一种简单而健壮的方法,用于从两种显微镜技术对数据集进行共注册。该方法在TIRF和LSCM中通过计算机模拟图像形成过程生成的图像上得到了验证。在存在高达3.8dB SNR的高斯噪声的情况下,以小于1%的误差恢复了注册参数。显示了真实显微镜数据的配准,并且比较了检索到的参数的准确性,并与手动获得的值和平方差的测量值非常吻合。

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