Alert button
Picture for Jochen Triesch

Jochen Triesch

Alert button

Self-Supervised Learning of Color Constancy

Add code
Bookmark button
Alert button
Apr 11, 2024
Markus R. Ernst, Francisco M. López, Arthur Aubret, Roland W. Fleming, Jochen Triesch

Viaarxiv icon

Caregiver Talk Shapes Toddler Vision: A Computational Study of Dyadic Play

Add code
Bookmark button
Alert button
Dec 07, 2023
Timothy Schaumlöffel, Arthur Aubret, Gemma Roig, Jochen Triesch

Viaarxiv icon

MIMo: A Multi-Modal Infant Model for Studying Cognitive Development

Add code
Bookmark button
Alert button
Dec 07, 2023
Dominik Mattern, Pierre Schumacher, Francisco M. López, Marcel C. Raabe, Markus R. Ernst, Arthur Aubret, Jochen Triesch

Viaarxiv icon

CIPER: Combining Invariant and Equivariant Representations Using Contrastive and Predictive Learning

Add code
Bookmark button
Alert button
Feb 05, 2023
Xia Xu, Jochen Triesch

Figure 1 for CIPER: Combining Invariant and Equivariant Representations Using Contrastive and Predictive Learning
Figure 2 for CIPER: Combining Invariant and Equivariant Representations Using Contrastive and Predictive Learning
Figure 3 for CIPER: Combining Invariant and Equivariant Representations Using Contrastive and Predictive Learning
Figure 4 for CIPER: Combining Invariant and Equivariant Representations Using Contrastive and Predictive Learning
Viaarxiv icon

Sequence and Circle: Exploring the Relationship Between Patches

Add code
Bookmark button
Alert button
Oct 19, 2022
Zhengyang Yu, Jochen Triesch

Figure 1 for Sequence and Circle: Exploring the Relationship Between Patches
Figure 2 for Sequence and Circle: Exploring the Relationship Between Patches
Viaarxiv icon

Time to augment contrastive learning

Add code
Bookmark button
Alert button
Jul 27, 2022
Arthur Aubret, Markus Ernst, Céline Teulière, Jochen Triesch

Figure 1 for Time to augment contrastive learning
Figure 2 for Time to augment contrastive learning
Figure 3 for Time to augment contrastive learning
Figure 4 for Time to augment contrastive learning
Viaarxiv icon

Embodied vision for learning object representations

Add code
Bookmark button
Alert button
May 12, 2022
Arthur Aubret, Céline Teulière, Jochen Triesch

Figure 1 for Embodied vision for learning object representations
Figure 2 for Embodied vision for learning object representations
Figure 3 for Embodied vision for learning object representations
Figure 4 for Embodied vision for learning object representations
Viaarxiv icon

Multiple Instance Learning for Brain Tumor Detection from Magnetic Resonance Spectroscopy Data

Add code
Bookmark button
Alert button
Dec 16, 2021
Diyuan Lu, Gerhard Kurz, Nenad Polomac, Iskra Gacheva, Elke Hattingen, Jochen Triesch

Figure 1 for Multiple Instance Learning for Brain Tumor Detection from Magnetic Resonance Spectroscopy Data
Figure 2 for Multiple Instance Learning for Brain Tumor Detection from Magnetic Resonance Spectroscopy Data
Figure 3 for Multiple Instance Learning for Brain Tumor Detection from Magnetic Resonance Spectroscopy Data
Figure 4 for Multiple Instance Learning for Brain Tumor Detection from Magnetic Resonance Spectroscopy Data
Viaarxiv icon

Recurrent Feedback Improves Recognition of Partially Occluded Objects

Add code
Bookmark button
Alert button
Apr 21, 2021
Markus Roland Ernst, Jochen Triesch, Thomas Burwick

Figure 1 for Recurrent Feedback Improves Recognition of Partially Occluded Objects
Figure 2 for Recurrent Feedback Improves Recognition of Partially Occluded Objects
Figure 3 for Recurrent Feedback Improves Recognition of Partially Occluded Objects
Viaarxiv icon

Self-Calibrating Active Binocular Vision via Active Efficient Coding with Deep Autoencoders

Add code
Bookmark button
Alert button
Jan 27, 2021
Charles Wilmot, Bertram E. Shi, Jochen Triesch

Figure 1 for Self-Calibrating Active Binocular Vision via Active Efficient Coding with Deep Autoencoders
Figure 2 for Self-Calibrating Active Binocular Vision via Active Efficient Coding with Deep Autoencoders
Figure 3 for Self-Calibrating Active Binocular Vision via Active Efficient Coding with Deep Autoencoders
Figure 4 for Self-Calibrating Active Binocular Vision via Active Efficient Coding with Deep Autoencoders
Viaarxiv icon