Recent advances in wearable sensor technologies for motion capture have produced devices, mainly based on magneto and inertial measurement units (M-IMU), that are now suitable for out-of-the-lab use with children. In fact, the reduced size, weight and the wireless connectivity meet the requirement of minimum obtrusivity and give scientists the possibility to analyze children’s motion in daily life contexts. Typical use of magneto and inertial measurement units (M-IMU) motion capture systems is based on attaching a sensing unit to each body segment of interest. The correct use of this setup requires a specific calibration methodology that allows mapping measurements from the sensors’ frames of reference into useful kinematic information in t...
The thesis focused on the development of a wearable motion tracking platform employing fiber strain ...
In many applications, it is essential that the evaluation of a given motor task is not affected by t...
This paper presents a novel wearable device for gesture capturing based on inertial and magnetic mea...
Recent advances in wearable sensor technologies for motion capture have produced devices, mainly bas...
In the field of biomechanics, Inertial Measurement Units play an increasingly important role in the ...
Magnetic-inertial measurement units (MIMUs) are often used to measure the joint angles between two b...
3D kinematic measurements in children with cerebral palsy (CP) to assess gait deviations can only be...
The estimate of a consistent and clinically meaningful joint kinematics using wearable inertial and ...
A protocol named Outwalk was developed to easily measure the thorax-pelvis and lower-limb 3D kinemat...
AbstractThe objective of this study was to develop and evaluate the feasibility of a wearable, senso...
Inertial sensors (accelerometers and gyroscopes) are ubiquitous in today’s society, where they can b...
Upper limb assessments in children with hemiparesis rely on clinical measurements, which despite sta...
The primary aim of the research activity presented in this PhD thesis was the development of an inno...
Summary: Motion tracking provides unique insights into motor, cognitive, and social development by c...
Inertial sensor technology has assumed an increasingly important role in the field of human motion a...
The thesis focused on the development of a wearable motion tracking platform employing fiber strain ...
In many applications, it is essential that the evaluation of a given motor task is not affected by t...
This paper presents a novel wearable device for gesture capturing based on inertial and magnetic mea...
Recent advances in wearable sensor technologies for motion capture have produced devices, mainly bas...
In the field of biomechanics, Inertial Measurement Units play an increasingly important role in the ...
Magnetic-inertial measurement units (MIMUs) are often used to measure the joint angles between two b...
3D kinematic measurements in children with cerebral palsy (CP) to assess gait deviations can only be...
The estimate of a consistent and clinically meaningful joint kinematics using wearable inertial and ...
A protocol named Outwalk was developed to easily measure the thorax-pelvis and lower-limb 3D kinemat...
AbstractThe objective of this study was to develop and evaluate the feasibility of a wearable, senso...
Inertial sensors (accelerometers and gyroscopes) are ubiquitous in today’s society, where they can b...
Upper limb assessments in children with hemiparesis rely on clinical measurements, which despite sta...
The primary aim of the research activity presented in this PhD thesis was the development of an inno...
Summary: Motion tracking provides unique insights into motor, cognitive, and social development by c...
Inertial sensor technology has assumed an increasingly important role in the field of human motion a...
The thesis focused on the development of a wearable motion tracking platform employing fiber strain ...
In many applications, it is essential that the evaluation of a given motor task is not affected by t...
This paper presents a novel wearable device for gesture capturing based on inertial and magnetic mea...