In home-based motor rehabilitation, bio-feedback and remote monitoring are essential to maintain patient motivation and ensure appropriate monitoring of training effects. Wearable sensors can be exploited to provide this feedback both to the patient and to the therapist. This paper presents an algorithm for the real-time extraction of shoulder and elbow joint angles from three inertial measurement units (IMUs). The five angles extracted are defined according to the International Society of Biomechanics (ISB) convention. The algorithm includes a two-step calibration procedure (N-pose and T-pose), which allows placing the IMUs on the limbs freely, without the need to use the magnetometer, and the real-time computation of the joint angles. The...
This contribution is concerned with joint angle calculation based on inertial measurement data in th...
Magneto-Inertial Measurement Unit sensors (MIMU) display high potential for the quantitative evaluat...
This paper aims to establish a post processing algorithm to estimate the upper limb motion, given a ...
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...
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...
A precise estimation of joint angles of the human body is an important requirement for assistive rob...
In the context of Industry 4.0, collaborative robotics can be improved by implementing appropriate r...
AbstractThe objective of this study was to develop and evaluate the feasibility of a wearable, senso...
This paper presents a novel kinematic reconstruction of the human arm chain with five degrees of fre...
This paper presents a novel kinematic reconstruction of the human arm chain with five degrees of fre...
This contribution is concerned with joint angle calculation based on inertial measurement data in th...
Magneto-Inertial Measurement Unit sensors (MIMU) display high potential for the quantitative evaluat...
This paper aims to establish a post processing algorithm to estimate the upper limb motion, given a ...
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...
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...
A precise estimation of joint angles of the human body is an important requirement for assistive rob...
In the context of Industry 4.0, collaborative robotics can be improved by implementing appropriate r...
AbstractThe objective of this study was to develop and evaluate the feasibility of a wearable, senso...
This paper presents a novel kinematic reconstruction of the human arm chain with five degrees of fre...
This paper presents a novel kinematic reconstruction of the human arm chain with five degrees of fre...
This contribution is concerned with joint angle calculation based on inertial measurement data in th...
Magneto-Inertial Measurement Unit sensors (MIMU) display high potential for the quantitative evaluat...
This paper aims to establish a post processing algorithm to estimate the upper limb motion, given a ...