Alert button
Picture for Markus Hofmarcher

Markus Hofmarcher

Alert button

SITTA: A Semantic Image-Text Alignment for Image Captioning

Add code
Bookmark button
Alert button
Jul 10, 2023
Fabian Paischer, Thomas Adler, Markus Hofmarcher, Sepp Hochreiter

Figure 1 for SITTA: A Semantic Image-Text Alignment for Image Captioning
Figure 2 for SITTA: A Semantic Image-Text Alignment for Image Captioning
Figure 3 for SITTA: A Semantic Image-Text Alignment for Image Captioning
Figure 4 for SITTA: A Semantic Image-Text Alignment for Image Captioning
Viaarxiv icon

Learning to Modulate pre-trained Models in RL

Add code
Bookmark button
Alert button
Jun 26, 2023
Thomas Schmied, Markus Hofmarcher, Fabian Paischer, Razvan Pascanu, Sepp Hochreiter

Figure 1 for Learning to Modulate pre-trained Models in RL
Figure 2 for Learning to Modulate pre-trained Models in RL
Figure 3 for Learning to Modulate pre-trained Models in RL
Figure 4 for Learning to Modulate pre-trained Models in RL
Viaarxiv icon

Semantic HELM: An Interpretable Memory for Reinforcement Learning

Add code
Bookmark button
Alert button
Jun 15, 2023
Fabian Paischer, Thomas Adler, Markus Hofmarcher, Sepp Hochreiter

Figure 1 for Semantic HELM: An Interpretable Memory for Reinforcement Learning
Figure 2 for Semantic HELM: An Interpretable Memory for Reinforcement Learning
Figure 3 for Semantic HELM: An Interpretable Memory for Reinforcement Learning
Figure 4 for Semantic HELM: An Interpretable Memory for Reinforcement Learning
Viaarxiv icon

Understanding the Effects of Dataset Characteristics on Offline Reinforcement Learning

Add code
Bookmark button
Alert button
Nov 08, 2021
Kajetan Schweighofer, Markus Hofmarcher, Marius-Constantin Dinu, Philipp Renz, Angela Bitto-Nemling, Vihang Patil, Sepp Hochreiter

Figure 1 for Understanding the Effects of Dataset Characteristics on Offline Reinforcement Learning
Figure 2 for Understanding the Effects of Dataset Characteristics on Offline Reinforcement Learning
Figure 3 for Understanding the Effects of Dataset Characteristics on Offline Reinforcement Learning
Figure 4 for Understanding the Effects of Dataset Characteristics on Offline Reinforcement Learning
Viaarxiv icon

Align-RUDDER: Learning From Few Demonstrations by Reward Redistribution

Add code
Bookmark button
Alert button
Sep 29, 2020
Vihang P. Patil, Markus Hofmarcher, Marius-Constantin Dinu, Matthias Dorfer, Patrick M. Blies, Johannes Brandstetter, Jose A. Arjona-Medina, Sepp Hochreiter

Figure 1 for Align-RUDDER: Learning From Few Demonstrations by Reward Redistribution
Figure 2 for Align-RUDDER: Learning From Few Demonstrations by Reward Redistribution
Figure 3 for Align-RUDDER: Learning From Few Demonstrations by Reward Redistribution
Figure 4 for Align-RUDDER: Learning From Few Demonstrations by Reward Redistribution
Viaarxiv icon

Large-scale ligand-based virtual screening for SARS-CoV-2 inhibitors using deep neural networks

Add code
Bookmark button
Alert button
Apr 03, 2020
Markus Hofmarcher, Andreas Mayr, Elisabeth Rumetshofer, Peter Ruch, Philipp Renz, Johannes Schimunek, Philipp Seidl, Andreu Vall, Michael Widrich, Sepp Hochreiter, Günter Klambauer

Figure 1 for Large-scale ligand-based virtual screening for SARS-CoV-2 inhibitors using deep neural networks
Figure 2 for Large-scale ligand-based virtual screening for SARS-CoV-2 inhibitors using deep neural networks
Figure 3 for Large-scale ligand-based virtual screening for SARS-CoV-2 inhibitors using deep neural networks
Figure 4 for Large-scale ligand-based virtual screening for SARS-CoV-2 inhibitors using deep neural networks
Viaarxiv icon

Detecting cutaneous basal cell carcinomas in ultra-high resolution and weakly labelled histopathological images

Add code
Bookmark button
Alert button
Dec 02, 2019
Susanne Kimeswenger, Elisabeth Rumetshofer, Markus Hofmarcher, Philipp Tschandl, Harald Kittler, Sepp Hochreiter, Wolfram Hötzenecker, Günter Klambauer

Figure 1 for Detecting cutaneous basal cell carcinomas in ultra-high resolution and weakly labelled histopathological images
Figure 2 for Detecting cutaneous basal cell carcinomas in ultra-high resolution and weakly labelled histopathological images
Figure 3 for Detecting cutaneous basal cell carcinomas in ultra-high resolution and weakly labelled histopathological images
Viaarxiv icon