Alert button
Picture for Vladimir Iglovikov

Vladimir Iglovikov

Alert button

One Thousand and One Hours: Self-driving Motion Prediction Dataset

Add code
Bookmark button
Alert button
Jun 25, 2020
John Houston, Guido Zuidhof, Luca Bergamini, Yawei Ye, Ashesh Jain, Sammy Omari, Vladimir Iglovikov, Peter Ondruska

Figure 1 for One Thousand and One Hours: Self-driving Motion Prediction Dataset
Figure 2 for One Thousand and One Hours: Self-driving Motion Prediction Dataset
Figure 3 for One Thousand and One Hours: Self-driving Motion Prediction Dataset
Figure 4 for One Thousand and One Hours: Self-driving Motion Prediction Dataset
Viaarxiv icon

2018 Robotic Scene Segmentation Challenge

Add code
Bookmark button
Alert button
Feb 03, 2020
Max Allan, Satoshi Kondo, Sebastian Bodenstedt, Stefan Leger, Rahim Kadkhodamohammadi, Imanol Luengo, Felix Fuentes, Evangello Flouty, Ahmed Mohammed, Marius Pedersen, Avinash Kori, Varghese Alex, Ganapathy Krishnamurthi, David Rauber, Robert Mendel, Christoph Palm, Sophia Bano, Guinther Saibro, Chi-Sheng Shih, Hsun-An Chiang, Juntang Zhuang, Junlin Yang, Vladimir Iglovikov, Anton Dobrenkii, Madhu Reddiboina, Anubhav Reddy, Xingtong Liu, Cong Gao, Mathias Unberath, Myeonghyeon Kim, Chanho Kim, Chaewon Kim, Hyejin Kim, Gyeongmin Lee, Ihsan Ullah, Miguel Luna, Sang Hyun Park, Mahdi Azizian, Danail Stoyanov, Lena Maier-Hein, Stefanie Speidel

Figure 1 for 2018 Robotic Scene Segmentation Challenge
Figure 2 for 2018 Robotic Scene Segmentation Challenge
Figure 3 for 2018 Robotic Scene Segmentation Challenge
Figure 4 for 2018 Robotic Scene Segmentation Challenge
Viaarxiv icon

2017 Robotic Instrument Segmentation Challenge

Add code
Bookmark button
Alert button
Feb 21, 2019
Max Allan, Alex Shvets, Thomas Kurmann, Zichen Zhang, Rahul Duggal, Yun-Hsuan Su, Nicola Rieke, Iro Laina, Niveditha Kalavakonda, Sebastian Bodenstedt, Luis Herrera, Wenqi Li, Vladimir Iglovikov, Huoling Luo, Jian Yang, Danail Stoyanov, Lena Maier-Hein, Stefanie Speidel, Mahdi Azizian

Figure 1 for 2017 Robotic Instrument Segmentation Challenge
Figure 2 for 2017 Robotic Instrument Segmentation Challenge
Figure 3 for 2017 Robotic Instrument Segmentation Challenge
Figure 4 for 2017 Robotic Instrument Segmentation Challenge
Viaarxiv icon

Automatic Instrument Segmentation in Robot-Assisted Surgery Using Deep Learning

Add code
Bookmark button
Alert button
Jun 19, 2018
Alexey Shvets, Alexander Rakhlin, Alexandr A. Kalinin, Vladimir Iglovikov

Figure 1 for Automatic Instrument Segmentation in Robot-Assisted Surgery Using Deep Learning
Figure 2 for Automatic Instrument Segmentation in Robot-Assisted Surgery Using Deep Learning
Figure 3 for Automatic Instrument Segmentation in Robot-Assisted Surgery Using Deep Learning
Figure 4 for Automatic Instrument Segmentation in Robot-Assisted Surgery Using Deep Learning
Viaarxiv icon

Pediatric Bone Age Assessment Using Deep Convolutional Neural Networks

Add code
Bookmark button
Alert button
Jun 19, 2018
Vladimir Iglovikov, Alexander Rakhlin, Alexandr Kalinin, Alexey Shvets

Figure 1 for Pediatric Bone Age Assessment Using Deep Convolutional Neural Networks
Figure 2 for Pediatric Bone Age Assessment Using Deep Convolutional Neural Networks
Figure 3 for Pediatric Bone Age Assessment Using Deep Convolutional Neural Networks
Figure 4 for Pediatric Bone Age Assessment Using Deep Convolutional Neural Networks
Viaarxiv icon

Angiodysplasia Detection and Localization Using Deep Convolutional Neural Networks

Add code
Bookmark button
Alert button
Apr 21, 2018
Alexey Shvets, Vladimir Iglovikov, Alexander Rakhlin, Alexandr A. Kalinin

Figure 1 for Angiodysplasia Detection and Localization Using Deep Convolutional Neural Networks
Figure 2 for Angiodysplasia Detection and Localization Using Deep Convolutional Neural Networks
Figure 3 for Angiodysplasia Detection and Localization Using Deep Convolutional Neural Networks
Figure 4 for Angiodysplasia Detection and Localization Using Deep Convolutional Neural Networks
Viaarxiv icon

Deep Convolutional Neural Networks for Breast Cancer Histology Image Analysis

Add code
Bookmark button
Alert button
Apr 03, 2018
Alexander Rakhlin, Alexey Shvets, Vladimir Iglovikov, Alexandr A. Kalinin

Figure 1 for Deep Convolutional Neural Networks for Breast Cancer Histology Image Analysis
Figure 2 for Deep Convolutional Neural Networks for Breast Cancer Histology Image Analysis
Figure 3 for Deep Convolutional Neural Networks for Breast Cancer Histology Image Analysis
Figure 4 for Deep Convolutional Neural Networks for Breast Cancer Histology Image Analysis
Viaarxiv icon

TernausNet: U-Net with VGG11 Encoder Pre-Trained on ImageNet for Image Segmentation

Add code
Bookmark button
Alert button
Jan 17, 2018
Vladimir Iglovikov, Alexey Shvets

Figure 1 for TernausNet: U-Net with VGG11 Encoder Pre-Trained on ImageNet for Image Segmentation
Figure 2 for TernausNet: U-Net with VGG11 Encoder Pre-Trained on ImageNet for Image Segmentation
Figure 3 for TernausNet: U-Net with VGG11 Encoder Pre-Trained on ImageNet for Image Segmentation
Figure 4 for TernausNet: U-Net with VGG11 Encoder Pre-Trained on ImageNet for Image Segmentation
Viaarxiv icon

Satellite Imagery Feature Detection using Deep Convolutional Neural Network: A Kaggle Competition

Add code
Bookmark button
Alert button
Jun 19, 2017
Vladimir Iglovikov, Sergey Mushinskiy, Vladimir Osin

Figure 1 for Satellite Imagery Feature Detection using Deep Convolutional Neural Network: A Kaggle Competition
Figure 2 for Satellite Imagery Feature Detection using Deep Convolutional Neural Network: A Kaggle Competition
Figure 3 for Satellite Imagery Feature Detection using Deep Convolutional Neural Network: A Kaggle Competition
Figure 4 for Satellite Imagery Feature Detection using Deep Convolutional Neural Network: A Kaggle Competition
Viaarxiv icon