GPU-optimized Direct Fourier Method for On-line Tomography
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Summary
The results show that tomographic reconstruction with a throughput of more than 1.5 GB/sec on a single GPU is possible and the achieved performance for the latest generation of GPUs from NVIDIA and AMD is evaluated.
- Type
- article
- Published
- 2014-05-07
- Cited by
- 7
- References
- 32
- OpenAlex
- https://openalex.org/W1547992477
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:42158406
Keywords
Computer science, Interpolation (computer graphics), Sinc function, Algorithm, Design for manufacturability
References
- The Radon Transform - Theory and Implementation
- Computed Tomography: Principles, Design, Artifacts, and Recent Advances
- Selection of a convolution function for Fourier inversion using gridding [computerised tomography application].
- Direct Fourier reconstruction in computer tomography
- Direct Fourier Tomographic Reconstruction Image-To-Image Filter
- NVIDIA cuda software and gpu parallel computing architecture
- OpenCL: A Parallel Programming Standard for Heterogeneous Computing Systems
- Digital reconstruction of multidimensional signals from their projections
- UFO: A Scalable GPU-based Image Processing Framework for On-line Monitoring
- A Fast Sinc Function Gridding Algorithm for Fourier Inversion in Computer Tomography
- tomoRecon: High-speed tomography reconstruction on workstations using multi-threading
- The Fourier reconstruction of a head section
- Comments and corrections on the use of polar sampling theorems in CT
- Image Quality Metrics: PSNR vs. SSIM
- Data-parallel tomographic reconstruction: A comparison of filtered backprojection and direct Fourier reconstruction
- Mathematical methods in image reconstruction
- A GPU-based architecture for real-time data assessment at synchrotron experiments
- Survey: interpolation methods in medical image processing
- Regridding reconstruction algorithm for real-time tomographic imaging
- Analysis of the direct Fourier method for computer tomography
Cited by
- Modelling of Cellular Structures Obtained by X-Ray Phase Contrast Imaging
- A distributed ASTRA toolbox
- Low-complexity Distributed Tomographic Backprojection for large datasets
- UFO — a scalable platform for high-speed synchrotron X-ray imaging
- Reviewing GPU architectures to build efficient back projection for parallel geometries
- New Collaborative Approach to Scientific Data Management with NOVA [in press]
- NEW COLLABORATIVE APPROACH TO SCIENTIFIC DATA MANAGEMENTWITH NOVA
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