Picture for Mateus Roder

Mateus Roder

Feature Selection and Hyperparameter Fine-tuning in Artificial Neural Networks for Wood Quality Classification

Add code
Oct 20, 2023
Viaarxiv icon

Facial Point Graphs for Amyotrophic Lateral Sclerosis Identification

Add code
Jul 22, 2023
Figure 1 for Facial Point Graphs for Amyotrophic Lateral Sclerosis Identification
Figure 2 for Facial Point Graphs for Amyotrophic Lateral Sclerosis Identification
Figure 3 for Facial Point Graphs for Amyotrophic Lateral Sclerosis Identification
Figure 4 for Facial Point Graphs for Amyotrophic Lateral Sclerosis Identification
Viaarxiv icon

Enhancing Hyper-To-Real Space Projections Through Euclidean Norm Meta-Heuristic Optimization

Add code
Jan 31, 2023
Viaarxiv icon

Improving Pre-Trained Weights Through Meta-Heuristics Fine-Tuning

Add code
Dec 19, 2022
Figure 1 for Improving Pre-Trained Weights Through Meta-Heuristics Fine-Tuning
Figure 2 for Improving Pre-Trained Weights Through Meta-Heuristics Fine-Tuning
Figure 3 for Improving Pre-Trained Weights Through Meta-Heuristics Fine-Tuning
Figure 4 for Improving Pre-Trained Weights Through Meta-Heuristics Fine-Tuning
Viaarxiv icon

From Actions to Events: A Transfer Learning Approach Using Improved Deep Belief Networks

Add code
Nov 30, 2022
Figure 1 for From Actions to Events: A Transfer Learning Approach Using Improved Deep Belief Networks
Figure 2 for From Actions to Events: A Transfer Learning Approach Using Improved Deep Belief Networks
Figure 3 for From Actions to Events: A Transfer Learning Approach Using Improved Deep Belief Networks
Figure 4 for From Actions to Events: A Transfer Learning Approach Using Improved Deep Belief Networks
Viaarxiv icon

MaxDropoutV2: An Improved Method to Drop out Neurons in Convolutional Neural Networks

Add code
Mar 05, 2022
Figure 1 for MaxDropoutV2: An Improved Method to Drop out Neurons in Convolutional Neural Networks
Figure 2 for MaxDropoutV2: An Improved Method to Drop out Neurons in Convolutional Neural Networks
Figure 3 for MaxDropoutV2: An Improved Method to Drop out Neurons in Convolutional Neural Networks
Figure 4 for MaxDropoutV2: An Improved Method to Drop out Neurons in Convolutional Neural Networks
Viaarxiv icon

Comparative Study Between Distance Measures On Supervised Optimum-Path Forest Classification

Add code
Feb 08, 2022
Viaarxiv icon

Gait Recognition Based on Deep Learning: A Survey

Add code
Jan 10, 2022
Figure 1 for Gait Recognition Based on Deep Learning: A Survey
Figure 2 for Gait Recognition Based on Deep Learning: A Survey
Figure 3 for Gait Recognition Based on Deep Learning: A Survey
Figure 4 for Gait Recognition Based on Deep Learning: A Survey
Viaarxiv icon

A Layer-Wise Information Reinforcement Approach to Improve Learning in Deep Belief Networks

Add code
Jan 17, 2021
Figure 1 for A Layer-Wise Information Reinforcement Approach to Improve Learning in Deep Belief Networks
Figure 2 for A Layer-Wise Information Reinforcement Approach to Improve Learning in Deep Belief Networks
Figure 3 for A Layer-Wise Information Reinforcement Approach to Improve Learning in Deep Belief Networks
Figure 4 for A Layer-Wise Information Reinforcement Approach to Improve Learning in Deep Belief Networks
Viaarxiv icon

Intestinal Parasites Classification Using Deep Belief Networks

Add code
Jan 17, 2021
Figure 1 for Intestinal Parasites Classification Using Deep Belief Networks
Figure 2 for Intestinal Parasites Classification Using Deep Belief Networks
Figure 3 for Intestinal Parasites Classification Using Deep Belief Networks
Figure 4 for Intestinal Parasites Classification Using Deep Belief Networks
Viaarxiv icon