Volume exploration using multidimensional Bhattacharyya flow Journal Article


Authors: Jadhav, S.; Torkaman, M.; Tannenbaum, A.; Nadeem, S.; Kaufman, A. E.
Article Title: Volume exploration using multidimensional Bhattacharyya flow
Abstract: We present a novel approach for volume exploration that is versatile yet effective in isolating semantic structures in both noisy and clean data. Specifically, we describe a hierarchical active contours approach based on Bhattacharyya gradient flow which is easier to control, robust to noise, and can incorporate various types of statistical information to drive an edge-agnostic exploration process. To facilitate a time-bound user-driven volume exploration process that is applicable to a wide variety of data sources, we present an efficient multi-GPU implementation that (1) is approximately 400 times faster than a single thread CPU implementation, (2) allows hierarchical exploration of 2D and 3D images, (3) supports customization through multidimensional attribute spaces, and (4) is applicable to a variety of data sources and semantic structures. The exploration system follows a 2-step process. It first applies active contours to isolate semantically meaningful subsets of the volume. It then applies transfer functions to the isolated regions locally to produce clear and clutter-free visualizations. We show the effectiveness of our approach in isolating and visualizing structures-of-interest without needing any specialized segmentation methods on a variety of data sources, including 3D optical microscopy, multi-channel optical volumes, abdominal and chest CT, micro-CT, MRI, simulation, and synthetic data. We also gathered feedback from a medical trainee regarding the usefulness of our approach and discussion on potential applications in clinical workflows. © 1995-2012 IEEE.
Keywords: computerized tomography; image segmentation; semantics; three dimensional computer graphics; active contours; digital storage; graphics processing unit; semantic structures; bhattacharyya flow; geometric active contours; hierarchical decomposition; multi-gpu; volume exploration; bhattacharyyum flow; data-source; exploration process; gradient flow; hierarchical decompositions; volume explorations
Journal Title: IEEE Transactions on Visualization and Computer Graphics
Volume: 29
Issue: 3
ISSN: 1077-2626
Publisher: IEEE  
Date Published: 2023-03-01
Start Page: 1651
End Page: 1663
Language: English
DOI: 10.1109/tvcg.2021.3127918
PROVIDER: scopus
PMCID: PMC9594946
PUBMED: 34780328
DOI/URL:
Notes: The MSK Cancer Center Support Grant (P30 CA008748) is acknowledged in the PDF -- Source: Scopus
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  1. Saad Nadeem
    50 Nadeem