In recent decades, many researchers have focused on the design and development of exoskeletons. Several strategies have been proposed to develop increasingly more efficient and biomimetic mechanisms. However, existing exoskeletons tend to be expensive and only available for a few people. This paper introduces a new gravity-balanced upper-limb exoskeleton suited for rehabilitation applications and designed with the main objective of reducing the cost of the components and materials. Regarding mechanics, the proposed design significantly reduces the motor torque requirements, because a high cost is usually associated with high-torque actuation. Regarding the electronics, we aim to exploit the microprocessor peripherals to obtain parallel and ...
This paper presents the design and the clinical validation of an upper-limb force-feedback exoskelet...
Abstract — Currently, cerebrovascular diseases are one of the main health problems. Part of the pati...
© Springer International Publishing AG, part of Springer Nature 2018. There is an increased interest...
In recent decades, many researchers have focused on the design and development of exoskeletons. Seve...
This paper introduces a novel upper limb robotic exoskeleton designed to assist industrial operators...
Safe operation, energy efficiency, versatility and kinematic compatibility are the most important as...
To respond to increasing risk of stroke in elderly people, several robotic devices for rehabilitatio...
Upper extremity exoskeletons are useful for humans in different ways: for motor rehabilitation, as a...
There are an increasing number of stroke patients in Singapore which may lead to shortage of therapi...
This paper reports the analysis and preliminary design of a passive, wearable, upper limb ExoSkeleto...
Full or partial loss of function in the upper limb is an increasingly common due to sports injuries,...
Upper-limb exoskeletons provide high-intensity, repetitive, task-specific, interactive and individua...
Frequent and repetitive functional training of the upper limb is a key aspect of regaining independe...
This work presents a new shoulder-elbow exoskeleton (NESM) for upper-limb neurological rehabilitatio...
This paper presents the design and the clinical validation of an upper-limb force-feedback exoskelet...
Abstract — Currently, cerebrovascular diseases are one of the main health problems. Part of the pati...
© Springer International Publishing AG, part of Springer Nature 2018. There is an increased interest...
In recent decades, many researchers have focused on the design and development of exoskeletons. Seve...
This paper introduces a novel upper limb robotic exoskeleton designed to assist industrial operators...
Safe operation, energy efficiency, versatility and kinematic compatibility are the most important as...
To respond to increasing risk of stroke in elderly people, several robotic devices for rehabilitatio...
Upper extremity exoskeletons are useful for humans in different ways: for motor rehabilitation, as a...
There are an increasing number of stroke patients in Singapore which may lead to shortage of therapi...
This paper reports the analysis and preliminary design of a passive, wearable, upper limb ExoSkeleto...
Full or partial loss of function in the upper limb is an increasingly common due to sports injuries,...
Upper-limb exoskeletons provide high-intensity, repetitive, task-specific, interactive and individua...
Frequent and repetitive functional training of the upper limb is a key aspect of regaining independe...
This work presents a new shoulder-elbow exoskeleton (NESM) for upper-limb neurological rehabilitatio...
This paper presents the design and the clinical validation of an upper-limb force-feedback exoskelet...
Abstract — Currently, cerebrovascular diseases are one of the main health problems. Part of the pati...
© Springer International Publishing AG, part of Springer Nature 2018. There is an increased interest...