๐”– Scriptorium
โœฆ   LIBER   โœฆ

๐Ÿ“

Graphics processing unit-based high performance computing in radiation therapy

โœ Scribed by Jia, Xun; Jiang, Steve B


Publisher
CRC Press
Year
2016
Tongue
English
Leaves
416
Series
Series in medical physics and biomedical engineering
Category
Library

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โœฆ Table of Contents


Content: Front Cover
Series In Medical Physics And Biomedical Engineering
Dedication
Contents
Preface
Editors
Contributors
Chapter 1 Introduction
Chapter 2 Digitally Reconstructed Radiographs
Chapter 3 Analytic Cone- Beam CT Reconstructions
Chapter 4 Iterative Cone- Beam CT Reconstruction on GPUs
Chapter 5 4DCT and 4D Cone- Beam CT Reconstruction Using Temporal Regularizations
Chapter 6 Multi- GPU Cone- Beam CT Reconstruction
Chapter 7 Tumor Tracking and Real- Time Volumetric Imaging via One Cone- Beam CT Projection
Chapter 8 GPU Denoising for Computed Tomography Chapter 9 GPU- Based Unimodal Deformable Image Registration in Radiation TherapyChapter 10 Inter- Modality Deformable Registration
Chapter 11 CT- to- Cone- Beam CT Deformable Registration
Chapter 12 Reconstruction in Positron Emission Tomography
Chapter 13 Implementation of Convolution Superposition Methods on a GPU
Chapter 14 Photon and Proton Pencil Beam Dose Calculation
Chapter 15 Photon Monte Carlo Dose Calculation
Chapter 16 Monte Carlo Dose Calculations for Proton Therapy
Chapter 17 Treatment Plan Optimization for Intensity- Modulated Radiation Therapy ( IMRT) Chapter 18 Treatment Plan Optimization for Volumetric- Modulated Arc Therapy ( VMAT)Chapter 19 Non- Voxel- Based Broad Beam Framework
Chapter 20 Gamma Index Calculations
Chapter 21 SCORE System for Online Adaptive Radiotherapy
Chapter 22 TARGET: A GPU- Based Patient- Specific Quality Assurance System for Radiation Therapy
Color Insert
Back Cover

โœฆ Subjects


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