- Format
- Häftad (Paperback / softback)
- Språk
- Engelska
- Antal sidor
- 182
- Utgivningsdatum
- 2019-11-14
- Upplaga
- 1st ed. 2019
- Förlag
- Springer Nature Switzerland AG
- Medarbetare
- Zhou, Luping / Jie, Biao
- Illustrationer
- 68 Illustrations, color; 19 Illustrations, black and white; IX, 182 p. 87 illus., 68 illus. in color
- Dimensioner
- 234 x 156 x 10 mm
- Vikt
- Antal komponenter
- 1
- Komponenter
- 1 Paperback / softback
- ISBN
- 9783030358167
- 277 g
Du kanske gillar
-
Graph Learning in Medical Imaging
First International Workshop, GLMI 2019, Held in Conjunction with MICCAI 2019, Shenzhen, China, October 17, 2019, Proceedings
699- Skickas inom 7-10 vardagar.
- Gratis frakt inom Sverige över 199 kr för privatpersoner.
Finns även somPassar bra ihop
De som köpt den här boken har ofta också köpt The Art of War av Sun Tzu (häftad).
Köp båda 2 för 758 krKundrecensioner
Har du läst boken? Sätt ditt betyg »Fler böcker av författarna
-
Machine Learning in Medical Imaging
Guorong Wu, Daoqiang Zhang, Dinggang Shen, Pingkun Yan, Kenji Suzuki
-
Intelligent Data Engineering and Automated Learning - IDEAL 2016
Hujun Yin, Yang Gao, Bin Li, Daoqiang Zhang, Ming Yang
-
Human Brain and Artificial Intelligence
An Zeng, Dan Pan, Tianyong Hao, Daoqiang Zhang, Yiyu Shi
-
OR 2.0 Context-Aware Operating Theaters and Machine Learning in Clinical Neuroimaging
Luping Zhou, Hongzhi Wang, Duygu Sarikaya, Seyed Mostafa Kia, Stefanie Speidel
Innehållsförteckning
Graph Hyperalignment for Multi-Subject fMRI Functional Alignment.- Interactive 3D Segmentation Editing and Refinement via Gated Graph Neural Networks.- Adaptive Thresholding of Functional Connectivity Networks for fMRI-based Brain Disease Analysis.- Graph-kernel-based Multi-task Structured Feature Selection on Multi-level Functional Connectivity Networks for Brain Disease Classification.- Linking convolutional neural networks with graph convolutional networks: application in pulmonary artery-vein separation.- Comparative Analysis of Magnetic Resonance Fingerprinting Dictionaries via Dimensionality Reduction.- Learning Deformable Point Set Registration with Regularized Dynamic Graph CNNs for Large Lung Motion in COPD Patients.- Graph Convolutional Networks for Coronary Artery Segmentation in Cardiac CT Angiography.- Triplet Graph Convolutional Network forMulti-scale Analysis of Functional Connectivityusing Functional MRI.- Multi-Scale Graph Convolutional Network for Mild Cognitive Impairment Detection.- DeepBundle: Fiber Bundle Parcellation With Graph CNNs.- Identification of Functional Connectivity Features in Depression Subtypes Using a Data-Driven Approach.- Movie-watching fMRI Reveals Inter-subject Synchrony Alteration in Functional Brain Activity in ADHD.- Weakly- and Semi- Supervised Graph CNN for identifying Basal Cell Carcinoma on Pathological images.- Geometric Brain Surface Network For Brain Cortical Parcellation.- Automatic Detection of Craniomaxillofacial Anatomical Landmarks on CBCT Images using 3D Mask R-CNN.- Discriminative-Region-Aware Residual Network for Adolescent Brain Structure and Cognitive Development Analysis.- Graph Modeling for Identifying Breast Tumor Located in Dense Background of a Mammogram.- OCD Diagnosis via Smoothing Sparse Network and Stacked Sparse Auto-Encoder Learning.- A Longitudinal MRI Study of Amygdala and Hippocampal Subfields for Infants with Risk of Autism.- CNS: CycleGAN-assisted Neonatal Segmentation Model for Cross-Datasets.