DocumentCode :
1312485
Title :
Interactive Volume Exploration of Petascale Microscopy Data Streams Using a Visualization-Driven Virtual Memory Approach
Author :
Hadwiger, Markus ; Beyer, Johanna ; Jeong, Won-Ki ; Pfister, Hanspeter
Volume :
18
Issue :
12
fYear :
2012
Firstpage :
2285
Lastpage :
2294
Abstract :
This paper presents the first volume visualization system that scales to petascale volumes imaged as a continuous stream of high-resolution electron microscopy images. Our architecture scales to dense, anisotropic petascale volumes because it: (1) decouples construction of the 3D multi-resolution representation required for visualization from data acquisition, and (2) decouples sample access time during ray-casting from the size of the multi-resolution hierarchy. Our system is designed around a scalable multi-resolution virtual memory architecture that handles missing data naturally, does not pre-compute any 3D multi-resolution representation such as an octree, and can accept a constant stream of 2D image tiles from the microscopes. A novelty of our system design is that it is visualization-driven: we restrict most computations to the visible volume data. Leveraging the virtual memory architecture, missing data are detected during volume ray-casting as cache misses, which are propagated backwards for on-demand out-of-core processing. 3D blocks of volume data are only constructed from 2D microscope image tiles when they have actually been accessed during ray-casting. We extensively evaluate our system design choices with respect to scalability and performance, compare to previous best-of-breed systems, and illustrate the effectiveness of our system for real microscopy data from neuroscience.
Keywords :
data acquisition; data visualisation; electron microscopes; microscopy; virtual storage; 2D microscope image tiles; 3D blocks; 3D multiresolution representation; anisotropic petascale volume; best-of-breed system; cache misses; continuous stream; data acquisition; decouples construction; high resolution electron microscopy image; interactive volume exploration; microscopes; multiresolution hierarchy; multiresolution virtual memory architecture; neuroscience; octree; petascale microscopy data streams; petascale volumes; ray-casting; real microscopy data; system design; visible volume data; visualization-driven virtual memory; volume ray casting; volume visualization system; Data visualization; Graphics processing unit; Image resolution; Microscopy; Neuroscience; Octrees; Rendering (computer graphics); Petascale volume exploration; high-resolution microscopy; high-throughput imaging; neuroscience;
fLanguage :
English
Journal_Title :
Visualization and Computer Graphics, IEEE Transactions on
Publisher :
ieee
ISSN :
1077-2626
Type :
jour
DOI :
10.1109/TVCG.2012.240
Filename :
6327233
Link To Document :
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