In this study, a soft sensor-based three-dimensional (3-D) finger motion measurement system is proposed. The sensors, made of the soft material Ecoflex, comprise embedded microchannels filled with a conductive liquid metal (EGaln). The superior elasticity, light weight, and sensitivity of soft sensors allows them to be embedded in environments in which conventional sensors cannot. Complicated finger joints, such as the carpometacarpal (CMC) joint of the thumb are modeled to specify the location of the sensors. Algorithms to decouple the signals from soft sensors are proposed to extract the pure flexion, extension, abduction, and adduction joint angles. The performance of the proposed system and algorithms are verified by comparison with a c...
This presents a motion and force estimation system of human fingers by using an Electromyography (EM...
Developing a compact sensing system is important for controlling the joint coordination of wearable ...
Emerging microelectromechanical system (MEMS)-based sensors become much more applicable for on-body ...
In this study, a soft sensor-based three-dimensional (3-D) finger motion measurement system is propo...
In this study, a soft sensor-based three-dimensional (3-D) finger motion measurement system is propo...
Various wearable systems have been investigated to measure hand motion, but some challenges remain. ...
In this paper, a wearable sensing glove for measuring motion of fingers is proposed. The proposed sy...
In this paper, a wearable sensing glove for measuring the motion of the fingers is proposed. The sys...
Bending sensors enable compact, wearable designs when used for measuring hand configurations in data...
The development of techniques for monitoring finger movement is becoming increasingly important in a...
Body motion tracking technologies are widespread in military, medical and sport fields. The work pro...
Flexibility, lightness, wearability and cheapness are the most important features for a successful a...
This paper presents the design, improvement, fabrication and application of a novel 3D printed pneum...
There is a growing and significant interest in home-based therapy or telerehabilitation for physiolo...
The methods used to quantify finger range of motion significantly influence how hand disability is r...
This presents a motion and force estimation system of human fingers by using an Electromyography (EM...
Developing a compact sensing system is important for controlling the joint coordination of wearable ...
Emerging microelectromechanical system (MEMS)-based sensors become much more applicable for on-body ...
In this study, a soft sensor-based three-dimensional (3-D) finger motion measurement system is propo...
In this study, a soft sensor-based three-dimensional (3-D) finger motion measurement system is propo...
Various wearable systems have been investigated to measure hand motion, but some challenges remain. ...
In this paper, a wearable sensing glove for measuring motion of fingers is proposed. The proposed sy...
In this paper, a wearable sensing glove for measuring the motion of the fingers is proposed. The sys...
Bending sensors enable compact, wearable designs when used for measuring hand configurations in data...
The development of techniques for monitoring finger movement is becoming increasingly important in a...
Body motion tracking technologies are widespread in military, medical and sport fields. The work pro...
Flexibility, lightness, wearability and cheapness are the most important features for a successful a...
This paper presents the design, improvement, fabrication and application of a novel 3D printed pneum...
There is a growing and significant interest in home-based therapy or telerehabilitation for physiolo...
The methods used to quantify finger range of motion significantly influence how hand disability is r...
This presents a motion and force estimation system of human fingers by using an Electromyography (EM...
Developing a compact sensing system is important for controlling the joint coordination of wearable ...
Emerging microelectromechanical system (MEMS)-based sensors become much more applicable for on-body ...