Publication | Open Access
Segmentation and tracking of cytoskeletal filaments using open active contours
221
Citations
53
References
2010
Year
EngineeringMicroscopyMolecular BiologyCytoskeletonBiomedical EngineeringSoft MatterOpen Active ContoursLight MicroscopyBiophysicsMacromolecular MachineMorphogenesisCell BiomechanicsActin FilamentsMedical Image ComputingCell BiologyActive ContourMicroscope Image ProcessingBioimage AnalysisBiomedical ImagingCell MotilityMedicineCell Detection
We use open active contours to quantify cytoskeletal structures imaged by fluorescence microscopy in two and three dimensions. We developed an interactive software tool for segmentation, tracking, and visualization of individual fibers. Open active contours are parametric curves that deform to minimize the sum of an external energy derived from the image and an internal bending and stretching energy. The external energy generates (i) forces that attract the contour toward the central bright line of a filament in the image, and (ii) forces that stretch the active contour toward the ends of bright ridges. Images of simulated semiflexible polymers with known bending and torsional rigidity are analyzed to validate the method. We apply our methods to quantify the conformations and dynamics of actin in two examples: actin filaments imaged by TIRF microscopy in vitro, and actin cables in fission yeast imaged by spinning disk confocal microscopy.
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