Signal processing and filter operations are important tools for visual data processing and analysis. Due to GPU memory and bandwidth limitations, it is challenging to apply complex filter operators to large-scale volume data interactively. We propose a novel and fast multiscale compression-domain volume filtering approach integrated into an interactive multiresolution volume visualization framework. In our approach, the raw volume data is decomposed offline into a compact hierarchical multiresolution tensor approximation model. We then demonstrate how convolution filter operators can effectively be applied in the compressed tensor approximation domain. To prevent aliasing due to multiresolution filtering, our solution (a) filters accurately...
Tensor decompositions, in particular the Tucker model, are a powerful family of techniques for dimen...
We present a multiresolution technique for interactive texture-based volume visualization of very la...
We present a multiresolution technique for interactive texture- based volume visualization of very l...
Signal processing and filter operations are important tools for visual data processing and analysis....
As modern high-resolution imaging devices allow to acquire increasingly large and complex volume dat...
Interactive visualization and analysis of large and complex volume data is still a big challenge. Co...
Most visual computing domains are witnessing a steady growth in sheer data set size, complexity, and...
In this thesis we investigated several advanced techniques in visualization of large data sets, mult...
Compression methods have become of fundamental importance in almost every subfield of scientific vis...
We present a novel multiresolution compression-domain GPU volume rendering architecture designed for...
Figure 1: Frames from real-time rendering of animated supernova data set (4323×60, float- 18GB), com...
Great advancements in commodity graphics hardware have favoured graphics processing unit (GPU)-based...
The authors present an application-driven approach to compressing large-scale time-varying volume da...
© 2020 Society for Industrial and Applied Mathematics. We describe a simple, black-box compression f...
Tensor approximation is necessary to obtain compact multilinear models for multi-dimensional visual ...
Tensor decompositions, in particular the Tucker model, are a powerful family of techniques for dimen...
We present a multiresolution technique for interactive texture-based volume visualization of very la...
We present a multiresolution technique for interactive texture- based volume visualization of very l...
Signal processing and filter operations are important tools for visual data processing and analysis....
As modern high-resolution imaging devices allow to acquire increasingly large and complex volume dat...
Interactive visualization and analysis of large and complex volume data is still a big challenge. Co...
Most visual computing domains are witnessing a steady growth in sheer data set size, complexity, and...
In this thesis we investigated several advanced techniques in visualization of large data sets, mult...
Compression methods have become of fundamental importance in almost every subfield of scientific vis...
We present a novel multiresolution compression-domain GPU volume rendering architecture designed for...
Figure 1: Frames from real-time rendering of animated supernova data set (4323×60, float- 18GB), com...
Great advancements in commodity graphics hardware have favoured graphics processing unit (GPU)-based...
The authors present an application-driven approach to compressing large-scale time-varying volume da...
© 2020 Society for Industrial and Applied Mathematics. We describe a simple, black-box compression f...
Tensor approximation is necessary to obtain compact multilinear models for multi-dimensional visual ...
Tensor decompositions, in particular the Tucker model, are a powerful family of techniques for dimen...
We present a multiresolution technique for interactive texture-based volume visualization of very la...
We present a multiresolution technique for interactive texture- based volume visualization of very l...