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Image Processing Techniques for Assessing Contractility in Isolated Adult Cardiac Myocytes

机译:评估成年心肌细胞收缩能力的图像处理技术

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摘要

We describe a computational framework for the comprehensive assessment of contractile responses of enzymatically dissociated adult cardiac myocytes. The proposed methodology comprises the following stages: digital video recording of the contracting cell, edge preserving total variation-based image smoothing, segmentation of the smoothed images, contour extraction from the segmented images, shape representation by Fourier descriptors, and contractility assessment. The different stages are variants of mathematically sound and computationally robust algorithms very well established in the image processing community. The physiologic application of the methodology is evaluated by assessing overall contraction in enzymatically dissociated adult rat cardiocytes. Our results demonstrate the effectiveness of the proposed approach in characterizing the true, two-dimensional, "shortening" in the contraction process of adult cardiocytes. We compare the performance of the proposed method to that of a popular edge detection system in the literature. The proposed method not only provides a more comprehensive assessment of the myocyte contraction process but also can potentially eliminate historical concerns and sources of errors caused by myocyte rotation or translation during contraction. Furthermore, the versatility of the image processing techniques makes the method suitable for determining myocyte shortening in cells that usually bend or move during contraction. The proposed method can be utilized to evaluate changes in contractile behavior resulting from drug intervention, disease modeling, transgeneity, or other common applications to mammalian cardiocytes.
机译:我们描述了计算框架的酶解离成年心肌细胞的收缩反应的综合评估。所提出的方法包括以下阶段:收缩细胞的数字视频记录,基于边缘的基于总变化的图像平滑,平滑图像的分割,从分割图像中提取轮廓,通过傅立叶描述符进行形状表示以及可收缩性评估。不同阶段是图像处理社区中非常完善的数学上合理且计算稳定的算法的变体。该方法的生理学应用是通过评估酶解成年大鼠心肌细胞的总体收缩来评估的。我们的结果证明了该方法在表征成年心肌细胞收缩过程中真正的二维“缩短”特征方面的有效性。我们将所提出的方法的性能与文献中流行的边缘检测系统的性能进行了比较。所提出的方法不仅提供了对心肌细胞收缩过程的更全面的评估,而且还可以潜在地消除由于在收缩过程中由心肌细胞旋转或翻译引起的历史问题和错误来源。此外,图像处理技术的多功能性使得该方法适合于确定通常在收缩过程中弯曲或移动的细胞中的心肌细胞缩短。所提出的方法可用于评估由于药物干预,疾病建模,转基因或对哺乳动物心肌细胞的其他常见应用而引起的收缩行为的变化。

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