Related Experiment Video
Updated: Sep 19, 2025

Evaluating Postural Control and Lower-extremity Muscle Activation in Individuals with Chronic Ankle Instability
Published on: September 18, 2020
Effect of plantar vibration on ankle proprioception in chronic stroke patients: a randomized controlled trial
Ömer Dursun1, Ahmet Burak Mavuş2
1Department of Physiotherapy and Rehabilitation, Faculty of Health Sciences, Bitlis Eren University, Bitlis, Turkey.
Background:
Plantar vibration (PV) is considered to enhance proprioceptive input by stimulating mechanoreceptors in the foot, which may help improve ankle joint position sense.
Objective:
To evaluate the immediate and short-term effects of PV on ankle proprioception in patients with chronic stroke.
Methods:
A randomized, sham-controlled study included 40 patients with stroke, divided into an experimental group (n = 20) and a control group (n = 20). Both groups received conventional physical therapy; additionally, the experimental group received 30 minutes of PV for three days. The control group did not receive vibration. Ankle proprioception was assessed before, immediately after, and one week after using a passive joint position sense test with a HUMAC NORM®Isokinetic Extremity System.
Results:
The primary analysis focused on between-group comparisons. The experimental group showed an immediate improvement in ankle proprioception at 5° and 10° plantar flexion and 15° dorsiflexion (U = 4.136-4.193, p < .001), which disappeared during the short-term follow-up (p = .063-.780). As a secondary analysis, within-group comparisons showed that the experimental group similarly experienced immediate improvement in ankle proprioception (z = 3.714-4.029, p < .001), which was lost at short-term follow-up (p = .052-.096). No significant changes were observed in the control group throughout the study (p = .125-.965).
Conclusion:
Repetitive plantar vibration (RPV) improves ankle proprioception immediately but does not maintain the effect short-term; nonetheless, this immediate improvement may help enhance balance and reduce fall risk, which is especially important in stroke rehabilitation.

