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An Original Method to Quantify Mitochondria Movement in Cultured Cardiomyocytes

机译:一种定量培养心肌细胞的线粒体运动的原始方法

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We studied in confocal microscopy non-beating cells from the HL-1 cardiac cell line. Using a fluorescent dye, mitochondria appeared as a dense tubular network, in permanent fusion, fission and displacement. To quantify these movements in response to pharmacological stimuli, we needed a method only based on their position. Time-lapse recording was performed in physiological medium. Every image was first converted into binary images by ultimate erosion or skeletonization. Then a distance map was created by attributing to every point a grey level equal to the distance from the skeleton. In a third step, the following binary image was laid over the distance image, by pixel to pixel multiplication. The pixel value below the binary objects indicated the distance ran between the two images. The method is fast and accurate, and can be scaled in absolute values. The average velocity lies in the range obtained by other methods.
机译:我们研究了来自HL-1心脏细胞系的共聚焦显微镜非跳动细胞。使用荧光染料,线粒体出现为密集的管状网络,永久融合,裂变和位移。为了响应药理学刺激来量化这些运动,我们需要仅基于其位置的方法。延时记录在生理培养基中进行。每张图像首先通过最终的侵蚀或骨架转换为二进制图像。然后通过归因于灰度级等于骨架的距离来创建距离图。在第三步骤中,通过像素到像素乘法,将以下二进制图像放置在距离图像上。二进制对象下方的像素值指示两个图像之间的距离ran。该方法快速准确,可以以绝对值缩放。平均速度位于其他方法获得的范围内。

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