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Content-Aware Enhancement of Images With Filamentous Structures.


ABSTRACT: In this paper, we describe a novel enhancement method for images containing filamentous structures. Our method combines a gradient sparsity constraint with a filamentous structure constraint for the effective removal of clutter and noise from the background. The method is applied and evaluated on three types of data: 1) confocal microscopy images of neurons; 2) calcium imaging data; and 3) images of road pavement. We found that the images enhanced by our method preserve both the structure and the intensity details of the original object. In the case of neuron microscopy, we find that the neurons enhanced by our method are better correlated with the original structure intensities than the neurons enhanced by well-known vessel enhancement methods. Experiments on simulated calcium imaging data indicate that both the number of detected neurons and the accuracy of the derived calcium activity are improved. Applying our method to real calcium data, more regions exhibiting calcium activity in the full field of view were found. In road pavement crack detection, smaller or milder cracks were detected after using our enhancement method.

SUBMITTER: Jeelani H 

PROVIDER: S-EPMC6538482 | biostudies-literature | 2019 Jul

REPOSITORIES: biostudies-literature

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Content-Aware Enhancement of Images With Filamentous Structures.

Jeelani Haris H   Liang Haoyi H   Acton Scott T ST   Weller Daniel S DS  

IEEE transactions on image processing : a publication of the IEEE Signal Processing Society 20190204 7


In this paper, we describe a novel enhancement method for images containing filamentous structures. Our method combines a gradient sparsity constraint with a filamentous structure constraint for the effective removal of clutter and noise from the background. The method is applied and evaluated on three types of data: 1) confocal microscopy images of neurons; 2) calcium imaging data; and 3) images of road pavement. We found that the images enhanced by our method preserve both the structure and th  ...[more]

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