Alert button
Picture for Steffen Wolf

Steffen Wolf

Alert button

Unsupervised Learning of Object-Centric Embeddings for Cell Instance Segmentation in Microscopy Images

Add code
Bookmark button
Alert button
Oct 12, 2023
Steffen Wolf, Manan Lalit, Henry Westmacott, Katie McDole, Jan Funke

Viaarxiv icon

ALE: A Simulation-Based Active Learning Evaluation Framework for the Parameter-Driven Comparison of Query Strategies for NLP

Add code
Bookmark button
Alert button
Aug 01, 2023
Philipp Kohl, Nils Freyer, Yoka Krämer, Henri Werth, Steffen Wolf, Bodo Kraft, Matthias Meinecke, Albert Zündorf

Viaarxiv icon

Proposal-Free Volumetric Instance Segmentation from Latent Single-Instance Masks

Add code
Bookmark button
Alert button
Sep 10, 2020
Alberto Bailoni, Constantin Pape, Steffen Wolf, Anna Kreshuk, Fred A. Hamprecht

Figure 1 for Proposal-Free Volumetric Instance Segmentation from Latent Single-Instance Masks
Figure 2 for Proposal-Free Volumetric Instance Segmentation from Latent Single-Instance Masks
Figure 3 for Proposal-Free Volumetric Instance Segmentation from Latent Single-Instance Masks
Figure 4 for Proposal-Free Volumetric Instance Segmentation from Latent Single-Instance Masks
Viaarxiv icon

Instance Separation Emerges from Inpainting

Add code
Bookmark button
Alert button
Feb 28, 2020
Steffen Wolf, Fred A. Hamprecht, Jan Funke

Figure 1 for Instance Separation Emerges from Inpainting
Figure 2 for Instance Separation Emerges from Inpainting
Figure 3 for Instance Separation Emerges from Inpainting
Figure 4 for Instance Separation Emerges from Inpainting
Viaarxiv icon

The Semantic Mutex Watershed for Efficient Bottom-Up Semantic Instance Segmentation

Add code
Bookmark button
Alert button
Dec 29, 2019
Steffen Wolf, Yuyan Li, Constantin Pape, Alberto Bailoni, Anna Kreshuk, Fred A. Hamprecht

Figure 1 for The Semantic Mutex Watershed for Efficient Bottom-Up Semantic Instance Segmentation
Figure 2 for The Semantic Mutex Watershed for Efficient Bottom-Up Semantic Instance Segmentation
Figure 3 for The Semantic Mutex Watershed for Efficient Bottom-Up Semantic Instance Segmentation
Figure 4 for The Semantic Mutex Watershed for Efficient Bottom-Up Semantic Instance Segmentation
Viaarxiv icon

Learning the Arrow of Time

Add code
Bookmark button
Alert button
Jul 02, 2019
Nasim Rahaman, Steffen Wolf, Anirudh Goyal, Roman Remme, Yoshua Bengio

Figure 1 for Learning the Arrow of Time
Figure 2 for Learning the Arrow of Time
Figure 3 for Learning the Arrow of Time
Figure 4 for Learning the Arrow of Time
Viaarxiv icon

A Generalized Framework for Agglomerative Clustering of Signed Graphs applied to Instance Segmentation

Add code
Bookmark button
Alert button
Jun 27, 2019
Alberto Bailoni, Constantin Pape, Steffen Wolf, Thorsten Beier, Anna Kreshuk, Fred A. Hamprecht

Figure 1 for A Generalized Framework for Agglomerative Clustering of Signed Graphs applied to Instance Segmentation
Figure 2 for A Generalized Framework for Agglomerative Clustering of Signed Graphs applied to Instance Segmentation
Figure 3 for A Generalized Framework for Agglomerative Clustering of Signed Graphs applied to Instance Segmentation
Figure 4 for A Generalized Framework for Agglomerative Clustering of Signed Graphs applied to Instance Segmentation
Viaarxiv icon

The Mutex Watershed and its Objective: Efficient, Parameter-Free Image Partitioning

Add code
Bookmark button
Alert button
Apr 25, 2019
Steffen Wolf, Alberto Bailoni, Constantin Pape, Nasim Rahaman, Anna Kreshuk, Ullrich Köthe, Fred A. Hamprecht

Figure 1 for The Mutex Watershed and its Objective: Efficient, Parameter-Free Image Partitioning
Figure 2 for The Mutex Watershed and its Objective: Efficient, Parameter-Free Image Partitioning
Figure 3 for The Mutex Watershed and its Objective: Efficient, Parameter-Free Image Partitioning
Figure 4 for The Mutex Watershed and its Objective: Efficient, Parameter-Free Image Partitioning
Viaarxiv icon

Learned Watershed: End-to-End Learning of Seeded Segmentation

Add code
Bookmark button
Alert button
Sep 04, 2017
Steffen Wolf, Lukas Schott, Ullrich Köthe, Fred Hamprecht

Figure 1 for Learned Watershed: End-to-End Learning of Seeded Segmentation
Figure 2 for Learned Watershed: End-to-End Learning of Seeded Segmentation
Figure 3 for Learned Watershed: End-to-End Learning of Seeded Segmentation
Figure 4 for Learned Watershed: End-to-End Learning of Seeded Segmentation
Viaarxiv icon

Tracking Objects with Higher Order Interactions using Delayed Column Generation

Add code
Bookmark button
Alert button
Aug 09, 2016
Shaofei Wang, Steffen Wolf, Charless Fowlkes, Julian Yarkony

Figure 1 for Tracking Objects with Higher Order Interactions using Delayed Column Generation
Figure 2 for Tracking Objects with Higher Order Interactions using Delayed Column Generation
Figure 3 for Tracking Objects with Higher Order Interactions using Delayed Column Generation
Figure 4 for Tracking Objects with Higher Order Interactions using Delayed Column Generation
Viaarxiv icon