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SparkMaster: automated calcium spark analysis with ImageJ.

机译:SparkMaster:使用ImageJ进行自动钙火花分析。

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摘要

Ca sparks are elementary Ca-release events from intracellular Ca stores that are observed in virtually all types of muscle. Typically, Ca sparks are measured in the line-scan mode with confocal laser-scanning microscopes, yielding two-dimensional images (distance vs. time). The manual analysis of these images is time consuming and prone to errors as well as investigator bias. Therefore, we developed SparkMaster, an automated analysis program that allows rapid and reliable spark analysis. The underlying analysis algorithm is adapted from the threshold-based standard method of spark analysis developed by Cheng et al. (Biophys J 76: 606-617, 1999) and is implemented here in the freely available image-processing software ImageJ. SparkMaster offers a graphical user interface through which all analysis parameters and output options are selected. The analysis includes general image parameters (number of detected sparks, spark frequency) and individual spark parameters (amplitude, full width at half-maximum amplitude, full duration at half-maximum amplitude, full width, full duration, time to peak, maximum steepness of spark upstroke, time constant of spark decay). We validated the algorithm using images with synthetic sparks embedded into backgrounds with different signal-to-noise ratios to determine an analysis criteria at which a high sensitivity is combined with a low frequency of false-positive detections. Finally, we applied SparkMaster to analyze experimental data of sparks measured in intact and permeabilized ventricular cardiomyocytes, permeabilized mammalian skeletal muscle, and intact smooth muscle cells. We found that SparkMaster provides a reliable, easy to use, and fast way of analyzing Ca sparks in a wide variety of experimental conditions.
机译:Ca火花是细胞内Ca储存的基本Ca释放事件,几乎在所有类型的肌肉中都可以观察到。通常,使用共聚焦激光扫描显微镜以线扫描模式测量Ca火花,从而产生二维图像(距离与时间的关系)。对这些图像进行手动分析非常耗时,并且容易出错以及调查员偏见。因此,我们开发了SparkMaster,这是一种自动分析程序,可以快速可靠地进行火花分析。底层分析算法改编自Cheng等人开发的基于阈值的火花分析标准方法。 (Biophys J 76:606-617,1999),并在此处免费提供的图像处理软件ImageJ中实现。 SparkMaster提供了一个图形用户界面,通过它可以选择所有分析参数和输出选项。分析包括常规图像参数(检测到的火花数量,火花频率)和单个火花参数(振幅,半最大振幅时的全宽度,半最大振幅时的全持续时间,全宽度,全持续时间,峰值时间,最大陡度火花向上冲程的时间,火花衰减的时间常数)。我们使用嵌入到背景中的合成火花图像(具有不同的信噪比)验证了该算法,以确定分析标准,在该分析标准下,高灵敏度与低频率的假阳性检测相结​​合。最后,我们使用SparkMaster来分析在完整和透化的心室心肌细胞,透化的哺乳动物骨骼肌和完整的平滑肌细胞中测得的电火花的实验数据。我们发现,SparkMaster在各种实验条件下提供了一种可靠,易于使用且快速的分析Ca火花的方法。

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