Motion capture has in recent years grown in interest in many fields from both game industry to sport analysis. The need of reflective markers and expensive multi-camera systems limits the business since they are costly and time-consuming. One solution to this could be a deep neural network trained to extract 3D joint estimations from a 2D video captured with a smartphone. This master thesis project has investigated the accuracy of a trained convolutional neural network, MargiPose, that estimates 25 joint positions in 3D from a 2D video, against a gold standard, multi-camera Vicon-system. The project has also investigated if the data from the deep neural network can be connected to a biomechanical modelling software, AnyBody, for further ana...
Motion capture system has recently being brought to light and drawn much attention in many fields of...
This paper presents a novel method for estimating the human body in 3D using depth sensor data. The ...
Kinematic analysis is often performed in a lab using optical cameras combined with reflective marker...
Motion capture has in recent years grown in interest in many fields from both game industry to sport...
Human motion analysis is the systematic study of human motion, which is employed for understanding t...
Goal: Motion capture is used for recording complex human movements that is increasingly applied in m...
Kinematic analysis is often performed in a lab using optical cameras combined with reflective marker...
Markerless estimation of 3D Kinematics has the great potential to clinically diagnose and monitor mo...
In sport science, athlete tracking and motion analysis are essential for monitoring and optimizing t...
This study presented a deep learning based markerless motion capture workflow and evaluated performa...
Marker based motion capture is currently the most accurate method of measuring human kinematics; how...
In recent years, motion capture systems have emerged, allowing for a broad and ever-expanding range ...
This study outlines a technique to leverage the wide availability of high resolution three-dimension...
Motion capture system has recently being brought to light and drawn much attention in many fields of...
The objective of this thesis is to study the capabilities of 3D convolutional neural networks (CNN) ...
Motion capture system has recently being brought to light and drawn much attention in many fields of...
This paper presents a novel method for estimating the human body in 3D using depth sensor data. The ...
Kinematic analysis is often performed in a lab using optical cameras combined with reflective marker...
Motion capture has in recent years grown in interest in many fields from both game industry to sport...
Human motion analysis is the systematic study of human motion, which is employed for understanding t...
Goal: Motion capture is used for recording complex human movements that is increasingly applied in m...
Kinematic analysis is often performed in a lab using optical cameras combined with reflective marker...
Markerless estimation of 3D Kinematics has the great potential to clinically diagnose and monitor mo...
In sport science, athlete tracking and motion analysis are essential for monitoring and optimizing t...
This study presented a deep learning based markerless motion capture workflow and evaluated performa...
Marker based motion capture is currently the most accurate method of measuring human kinematics; how...
In recent years, motion capture systems have emerged, allowing for a broad and ever-expanding range ...
This study outlines a technique to leverage the wide availability of high resolution three-dimension...
Motion capture system has recently being brought to light and drawn much attention in many fields of...
The objective of this thesis is to study the capabilities of 3D convolutional neural networks (CNN) ...
Motion capture system has recently being brought to light and drawn much attention in many fields of...
This paper presents a novel method for estimating the human body in 3D using depth sensor data. The ...
Kinematic analysis is often performed in a lab using optical cameras combined with reflective marker...