This release contains data files for our publication: "Stride-level analysis of mouse open field behavior using deep learning-based pose estimation". Also note that our source code is made available at our github page under the repositories deep-hrnet-mouse and gaitanalysis. Files: deep-hres-net-2019-06-28.simg: a singularity image containing everything needed to run our neural network infer-poseest-batch.sh: our inference script written to run on our cluster using the SLURM scheduler. This script will not work unchanged in other environments but it serves as a useful example of how to run the singularity image (deep-hres-net-2019-06-28.simg) on a cluster merged_pose_annos_2019-06-26.h5.gz: training data that was used to train the neu...
In neuroscience research, the refined analysis of rodent locomotion is complex and cumbersome, and a...
The study of naturalistic social behavior requires quantification of animals' interactions. This is ...
Detailed behavioral analysis is key to understanding the brain-behavior relationship. Here, we prese...
This release contains data files for our publication: "Stride-level analysis of mouse open field beh...
This data entry contains annotated mouse data from the DeepLabCut Nature Neuroscience paper. This d...
Gait and posture are often perturbed in many neurological, neuromuscular, and neuropsychiatric condi...
Mouse pose estimations have important applications in the fields of animal behavior research, biomed...
This repository contains raw data for 411 different open field recordings of mice. these include top...
DeepLabCut (https://github.com/DeepLabCut/) (Mathis et al., 2018; Nath et al., 2019) was used for tr...
Both the training data and trained models used in the paper are found here. Dataset description In...
Quantitative behavioral measurements are important for answering questions across scientific discipl...
DeepLabCut (https://github.com/DeepLabCut/) (Mathis et al., 2018; Nath et al., 2019) was used for tr...
This dataset contains trained neural network models for mouse detection and pose estimation, and tra...
Pose estimation uses computer vision to predict how a body moves. The likeliness off different movem...
This repository contains raw data for 32 different open field recordings of mice. these include top ...
In neuroscience research, the refined analysis of rodent locomotion is complex and cumbersome, and a...
The study of naturalistic social behavior requires quantification of animals' interactions. This is ...
Detailed behavioral analysis is key to understanding the brain-behavior relationship. Here, we prese...
This release contains data files for our publication: "Stride-level analysis of mouse open field beh...
This data entry contains annotated mouse data from the DeepLabCut Nature Neuroscience paper. This d...
Gait and posture are often perturbed in many neurological, neuromuscular, and neuropsychiatric condi...
Mouse pose estimations have important applications in the fields of animal behavior research, biomed...
This repository contains raw data for 411 different open field recordings of mice. these include top...
DeepLabCut (https://github.com/DeepLabCut/) (Mathis et al., 2018; Nath et al., 2019) was used for tr...
Both the training data and trained models used in the paper are found here. Dataset description In...
Quantitative behavioral measurements are important for answering questions across scientific discipl...
DeepLabCut (https://github.com/DeepLabCut/) (Mathis et al., 2018; Nath et al., 2019) was used for tr...
This dataset contains trained neural network models for mouse detection and pose estimation, and tra...
Pose estimation uses computer vision to predict how a body moves. The likeliness off different movem...
This repository contains raw data for 32 different open field recordings of mice. these include top ...
In neuroscience research, the refined analysis of rodent locomotion is complex and cumbersome, and a...
The study of naturalistic social behavior requires quantification of animals' interactions. This is ...
Detailed behavioral analysis is key to understanding the brain-behavior relationship. Here, we prese...