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Keyphrases
Medical Imaging
100%
Multi-GPU
100%
Large-scale Deep Learning
100%
Tumor Hypoxia
100%
Positron Emission Tomography Imaging
100%
Brain Tumor
100%
Cardiac Magnetic Resonance Imaging (cMRI)
100%
Positron Emission Tomography/computed Tomography (PET/CT)
100%
Horovod
66%
Tomography Image
40%
Cost Cutting
33%
Large Volume
33%
Data Parallelism
33%
Clinical Setting
33%
TensorFlow
33%
Keras
33%
Speed Gain
33%
U-Net Model
33%
Widespread Adoption
33%
Deep Learning Model
33%
Digital Radiology
33%
Computing Node
33%
2D U-Net
33%
Rapid Expansion
33%
GPU
33%
Heterogeneous Architectures
33%
Reduced Error
33%
Research-clinical
33%
High Performance Computing
33%
Patient Outcomes
33%
Research Laboratories
33%
Biological State
20%
Physiological Information
20%
Acquisition Method
20%
Molecular Biology
20%
High Cost
20%
Logistic Constraints
20%
Advanced Models
20%
Biological Targets
20%
Molecular Targets
20%
PET-MRI
20%
Rodent Models
20%
Hypoxia
20%
Machine Learning Models
20%
Pathological State
20%
Cyclotron
20%
Ionizing Radiation
20%
Routine Diagnosis
20%
Anatomical Information
20%
Soft Tissue
20%
High Sensitivity
20%
Histology
20%
Clinical Significance
20%
Clinical Data
20%
Imaging Systems
20%
Clinical Centers
20%
Cost Constraint
20%
Computer Science
Graphics Processing Unit
100%
Deep Learning Method
100%
TensorFlow
50%
Speed-up
50%
Deep Learning Model
50%
Keras
50%
Data Parallelism
50%
Heterogeneous Architecture
50%
Reducing Error
50%
Widespread Adoption
50%
Clinical Setting
50%
High-Performance Computing
50%
Medicine and Dentistry
Tumor Hypoxia
100%
Positron Emission Tomography
100%
Intracranial Tumor
100%
Magnetic Resonance Imaging
66%
Positron Emission Tomography - Magnetic Resonance Imaging
33%
Health Care Cost
16%
Biological Target
16%
Hypoxia
16%
Ionizing Radiation
16%
Histology
16%