AbstractWe investigate magnetic, angular rate, and gravity (MARG) sensor modules for deriving shoulder, elbow and lumbar joint angles of the human body. We use three tri-axial MARG sensors, placed proximal to the wrist and elbow and centrally on the chest, and employ a quaternion-based Unscented Kalman Filter technique to estimate orientations from the sensor data, from which joint angles are calculated based on a simple model of the arm. Tests reveal that the method has the potential to accurately derive specific angles. When compared with a camera-based system, a root mean square difference error between 5° - 15° was observed
Magnetic-inertial measurement units (MIMUs) are often used to measure the joint angles between two b...
Magnetic-inertial measurement units (MIMUs) are often used to measure the joint angles between two b...
Magnetic-inertial measurement units (MIMUs) are often used to measure the joint angles between two b...
We investigate magnetic, angular rate, and gravity (MARG) sensor modules for deriving shoulder, elbo...
A measurement technique that decreases the root mean square error (RMSE) of measurements of human-jo...
Maximum 200 words.) Recently, a new impetus has been given to work to produce a whole body human/co...
In physical therapy, exercises improve range of motion, muscle strength, and flexibility, where moti...
In physical therapy, exercises improve range of motion, muscle strength, and flexibility, where moti...
This contribution is concerned with joint angle calculation based on inertial measurement data in th...
This study proposes a real-time joint angle estimation method of human elbow by processing a biomedi...
Abstract: This paper presents an extended Kalman filter for real-time estimation of rigid body orie...
In home-based motor rehabilitation, bio-feedback and remote monitoring are essential to maintain pat...
The development of a wireless sensor network (WSN) that measures joint angles of the human body is r...
Magnetic-inertial measurement units (MIMUs) are often used to measure the joint angles between two b...
Magnetic-inertial measurement units (MIMUs) are often used to measure the joint angles between two b...
Magnetic-inertial measurement units (MIMUs) are often used to measure the joint angles between two b...
Magnetic-inertial measurement units (MIMUs) are often used to measure the joint angles between two b...
Magnetic-inertial measurement units (MIMUs) are often used to measure the joint angles between two b...
We investigate magnetic, angular rate, and gravity (MARG) sensor modules for deriving shoulder, elbo...
A measurement technique that decreases the root mean square error (RMSE) of measurements of human-jo...
Maximum 200 words.) Recently, a new impetus has been given to work to produce a whole body human/co...
In physical therapy, exercises improve range of motion, muscle strength, and flexibility, where moti...
In physical therapy, exercises improve range of motion, muscle strength, and flexibility, where moti...
This contribution is concerned with joint angle calculation based on inertial measurement data in th...
This study proposes a real-time joint angle estimation method of human elbow by processing a biomedi...
Abstract: This paper presents an extended Kalman filter for real-time estimation of rigid body orie...
In home-based motor rehabilitation, bio-feedback and remote monitoring are essential to maintain pat...
The development of a wireless sensor network (WSN) that measures joint angles of the human body is r...
Magnetic-inertial measurement units (MIMUs) are often used to measure the joint angles between two b...
Magnetic-inertial measurement units (MIMUs) are often used to measure the joint angles between two b...
Magnetic-inertial measurement units (MIMUs) are often used to measure the joint angles between two b...
Magnetic-inertial measurement units (MIMUs) are often used to measure the joint angles between two b...
Magnetic-inertial measurement units (MIMUs) are often used to measure the joint angles between two b...