03/10/2022 |
Lihao Liu |
PC-SwinMorph: Patch Representation for Unsupervised Medical Image Registration and Segmentation |
MRI |
3D |
N/A |
 |
03/10/2022 |
Lei Zhou |
Self Pre-training with Masked Autoencoders for Medical Image Analysis |
CT & MRI |
3D |
N/A |
 |
01/30/2022 |
Jiangyun Li |
TransBTSV2: Wider Instead of Deeper Transformer for Medical Image Segmentation |
CT & MRI |
3D |
PyTorch |
 |
01/26/2022 |
Shiqi Huang |
RTNet: Relation Transformer Network for Diabetic Retinopathy Multi-lesion Segmentation |
DR |
2D |
N/A |
IEEE TMI  |
01/04/2022 |
Ali Hatamizadeh |
Swin UNETR: Swin Transformers for Semantic Segmentation of Brain Tumors in MRI Images |
MRI |
3D |
PyTorch |
 |
01/03/2022 |
Yixuan Wu |
D-Former: A U-shaped Dilated Transformer for 3D Medical Image Segmentation |
MRI & CT |
3D |
N/A |
 |
12/17/2021 |
Yutong Xie |
Unified 2D and 3D Pre-training for Medical Image Classification and Segmentation |
X-ray & CT |
2D & 3D |
N/A |
 |
12/09/2021 |
Xiangde Luo |
Semi-Supervised Medical Image Segmentation via Cross Teaching between CNN and Transformer |
MRI |
2D |
PyTorch |
 |
11/29/2021 |
Yucheng Tang |
Self-Supervised Pre-Training of Swin Transformers for 3D Medical Image Analysis |
CT & MRI |
3D |
PyTorch |
 |
11/26/2021 |
Xiangyu Meng |
Exploiting full Resolution Feature Context for Liver Tumor and Vessel Segmentation via Fusion Encoder: Application to Liver Tumor and Vessel 3D reconstruction |
CT |
2D |
N/A |
 |
11/26/2021 |
Himashi Peiris |
A Volumetric Transformer for Accurate 3D Tumor Segmentation |
CT & MRI |
3D |
PyTorch |
 |
11/15/2021 |
Dong Yang |
T-AutoML: Automated Machine Learning for Lesion Segmentation using Transformers in 3D Medical Imaging |
CT |
3D |
N/A |
ICCV 2021  |
11/08/2021 |
Hongyi Wang |
Mixed Transformer U-Net For Medical Image Segmentation |
CT |
2D |
PyTorch |
 |
09/30/2021 |
Yunxiang Li |
GT U-Net: A U-Net Like Group Transformer Network for Tooth Root Segmentation |
X-ray & Fundus |
2D |
PyTorch |
MLMI 2021  |
09/15/2021 |
Xiaohong Huang |
MISSFormer: An Effective Medical Image Segmentation Transformer |
CT |
2D |
PyTorch |
 |
09/07/2021 |
Hong-Yu Zhou |
nnFormer: Interleaved Transformer for Volumetric Segmentation |
CT |
3D |
PyTorch |
 |
07/28/2021 |
Madeleine K. Wyburd |
TEDS-Net: Enforcing Diffeomorphisms in Spatial Transformers to Guarantee Topology Preservation in Segmentations |
MRI |
2D |
PyTorch |
MICCAI 2021  |
07/19/2021 |
Guoping Xu |
LeViT-UNet: Make Faster Encoders with Transformer for Medical Image Segmentation |
CT |
2D |
N/A |
 |
07/12/2021 |
Bingzhi Chen |
TransAttUnet: Multi-level Attention-guided U-Net with Transformer for Medical Image Segmentation |
X-ray & CT ... |
2D |
N/A |
 |
07/12/2021 |
Chang Yao |
TransClaw U-Net: Claw U-Net with Transformers for Medical Image Segmentation |
CT |
2D |
N/A |
 |
07/02/2021 |
Yunhe Gao |
UTNet: A Hybrid Transformer Architecture for Medical Image Segmentation |
CT |
2D |
PyTorch |
MICCAI 2021  |
06/28/2021 |
Yuanfeng Ji |
Multi-Compound Transformer for Accurate Biomedical Image Segmentation |
Colonoscopy & Pathology ... |
2D |
PyTorch |
MICCAI 2021  |
06/12/2021 |
Ailiang Lin |
DS-TransUNet: Dual Swin Transformer U-Net for Medical Image Segmentation |
Colonoscopy & Histology ... |
2D |
N/A |
 |
06/02/2021 |
Shaohua Li |
Medical Image Segmentation Using Squeeze-and-Expansion Transformers |
Fundus & Colonoscopy & MRI |
2D & 3D |
PyTorch |
IJCAI 2021  |
05/12/2021 |
Hu Cao |
Swin-Unet: Unet-like Pure Transformer for Medical Image Segmentation |
CT |
2D |
PyTorch |
 |
04/29/2021 |
Zhuangzhuang Zhang |
Pyramid Medical Transformer for Medical Image Segmentation |
Microscopic |
2D |
N/A |
 |
04/28/2021 |
Eunji Jun |
Medical Transformer: Universal Brain Encoder for 3D MRI Analysis |
MRI |
3D |
N/A |
 |
03/18/2021 |
Ali Hatamizadeh |
UNETR: Transformers for 3D Medical Image Segmentation |
CT & MRI |
3D |
PyTorch |
 |
03/10/2021 |
Olivier Petit |
U-Net Transformer: Self and Cross Attention for Medical Image Segmentation |
CT |
2D |
N/A |
 |
03/07/2021 |
Wenxuan Wang |
TransBTS: Multimodal Brain Tumor Segmentation Using Transformer |
MRI |
3D |
PyTorch |
MICCAI 2021  |
03/05/2021 |
Boxiang Yun |
SpecTr: Spectral Transformer for Hyperspectral Pathology Image Segmentation |
HSI |
3D |
PyTorch |
 |
03/04/2021 |
Yutong Xie |
CoTr: Efficiently Bridging CNN and Transformer for 3D Medical Image Segmentation |
CT |
3D |
PyTorch |
MICCAI 2021 |
02/26/2021 |
Davood Karimi |
Convolution-Free Medical Image Segmentation using Transformers |
CT & MRI |
3D |
N/A |
 |
02/21/2021 |
Jeya Maria Jose Valanarasu |
Medical Transformer: Gated Axial-Attention for Medical Image Segmentation |
Ultrasound & Microscopic |
2D |
PyTorch |
MICCAI 2021  |
02/16/2021 |
Yundong Zhang |
TransFuse: Fusing Transformers and CNNs for Medical Image Segmentation |
Colonoscopy |
2D |
N/A |
 |
02/08/2021 |
Jieneng Chen |
TransUNet: Transformers Make Strong Encoders for Medical Image Segmentation |
CT & MRI |
2D |
PyTorch |
 |
02/08/2021 |
Walter Hugo Lopez Pinaya |
Unsupervised Brain Anomaly Detection and Segmentation with Transformers |
MRI |
2D |
N/A |
MIDL 2021  |