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March 22, 2007AJP Cell Physiology330 citations

SparkMaster: automated calcium spark analysis with ImageJ

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EPEckard PichtAZAleksey V. ZimaLBLothar A. Blatter

Key Result

SparkMaster, an automated analysis program implemented in ImageJ, provides a reliable, easy-to-use, and fast method for analyzing calcium sparks across various experimental muscle cell conditions.

Structured PICO

P
Population
Synthetic sparks embedded into backgrounds with different signal-to-noise ratios, intact and permeabilized ventricular cardiomyocytes, permeabilized mammalian skeletal muscle, and intact smooth muscle cells
I
Intervention
SparkMaster automated analysis program implemented in ImageJ
O
Outcome
Reliability, sensitivity, and false-positive detections of Ca spark analysissurrogate

SparkMaster is a validated, automated, and freely available ImageJ-based tool for rapid and reliable analysis of calcium sparks in various muscle cell types.

Abstract

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.

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Cite This Study

Picht et al. (2007) studied Calcium sparks in muscle cells. SparkMaster vs. Manual analysis was evaluated on Validation using synthetic sparks and experimental data. SparkMaster, an automated analysis program implemented in ImageJ, provides a reliable, easy-to-use, and fast method for analyzing calcium sparks across various experimental muscle cell conditions.

synapsesocial.com/papers/6a1ad08b739ab56a908601e4https://doi.org/10.1152/ajpcell.00586.2006
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