The objective of this study is to determine if the acute effect of vibration from a smartwatch on hand function is comparable to the effect of an existing laboratory prototype.
More than 4 million stroke survivors in the U.S. suffer from post-stroke hand disability. As hands are our primary means of interacting with the world, post-stroke hand impairment diminishes stroke survivors' abilities for activities of daily living including self-care, hygiene, employment, and leisure, and lowers independence. Hand impairment is difficult to treat. Limited resources in rehabilitation services and financial burdens make it impractical to simply increase rehabilitation service visits within the current healthcare system. One way to augment hand function recovery is peripheral sensory stimulation. Afferent input is a powerful driver of change in the motor cortex. Sensory stimulation has been shown to improve motor recovery in previous studies. In particular, promising preliminary results have been obtained by using imperceptible random-frequency vibration applied via a watch. However, the laboratory prototype device for delivering this vibration must be improved in the form factor for patient adoption. Therefore, we developed an App that can be installed in smartwatches and control the vibrator within the smartwatch to deliver vibratory stimulation to the user. The objective of this study is to determine if the acute effect of vibration from a smartwatch on hand function is comparable to the effect of an existing laboratory prototype.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
QUADRUPLE
Enrollment
40
The smartwatch generates imperceptible vibratory stimulation.
The smartwatch generates no stimulation.
Medical University of South Caorlina
Charleston, South Carolina, United States
Box and Block Test
number of blocks moved
Time frame: 20 minute
Nine Hole Peg Test
time it takes to complete the test
Time frame: 20 minute
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