Since the late 1990s, there has been a burst of research on robotic devices for poststroke rehabilitation. Robot-mediated therapy produced improvements on recovery of motor capacity; however, so far, the use of robots has not shown qualitative benefit over classical therapist-led training sessions, performed on the same quantity of movements. Multidegree-of-freedom robots, like the modern upper-limb exoskeletons, enable a distributed interaction on the whole assisted limb and can exploit a large amount of sensory feedback data, potentially providing new capabilities within standard rehabilitation sessions. Surprisingly, most publications in the field of exoskeletons focused only on mechatronic design of the devices, while little details wer...
Upper-limb impairment after stroke is caused by weakness, loss of individual joint control, spastici...
abstract: Robotic rehabilitation for upper limb post-stroke recovery is a developing technology. How...
Neurological impairments such as stroke cause damage to the functional mobility of survivors and aff...
Since the late 1990s, there has been a burst of research on robotic devices for poststroke rehabilit...
Technology-supported rehabilitation therapy for neurological patients has gained increasing interest...
Upper-limb exoskeletons provide high-intensity, repetitive, task-specific, interactive and individua...
International audienceUpper-limb impairment after stroke is caused by weakness, loss of individual j...
BACKGROUND: During the last two decades, extensive interaction between clinicians and engineers has ...
Background: In the past decade, there has been substantial progress in the development of robotic co...
The paper describes the implementation and testing of two adaptive controllers developed for a weara...
Robot-assisted therapy affords effective advantages to the rehabilitation training of patients with ...
Upper-limb impairment after stroke is caused by weakness, loss of individual joint control, spastici...
abstract: Robotic rehabilitation for upper limb post-stroke recovery is a developing technology. How...
Neurological impairments such as stroke cause damage to the functional mobility of survivors and aff...
Since the late 1990s, there has been a burst of research on robotic devices for poststroke rehabilit...
Technology-supported rehabilitation therapy for neurological patients has gained increasing interest...
Upper-limb exoskeletons provide high-intensity, repetitive, task-specific, interactive and individua...
International audienceUpper-limb impairment after stroke is caused by weakness, loss of individual j...
BACKGROUND: During the last two decades, extensive interaction between clinicians and engineers has ...
Background: In the past decade, there has been substantial progress in the development of robotic co...
The paper describes the implementation and testing of two adaptive controllers developed for a weara...
Robot-assisted therapy affords effective advantages to the rehabilitation training of patients with ...
Upper-limb impairment after stroke is caused by weakness, loss of individual joint control, spastici...
abstract: Robotic rehabilitation for upper limb post-stroke recovery is a developing technology. How...
Neurological impairments such as stroke cause damage to the functional mobility of survivors and aff...