Six Weeks of Balance Training Improves Sensorimotor Function in Individuals With Chronic Ankle Instability

2011 ◽  
Vol 41 (2) ◽  
pp. 81-89 ◽  
Author(s):  
Joellen M. Sefton ◽  
Ceren Yarar ◽  
Charlie A. Hicks-Little ◽  
Jack W. Berry ◽  
Mitchell L. Cordova
Author(s):  
Kyung-Min Kim ◽  
María D. Estudillo-Martínez ◽  
Yolanda Castellote-Caballero ◽  
Alejandro Estepa-Gallego ◽  
David Cruz-Díaz

Chronic Ankle Instability (CAI) is one of the most common musculoskeletal dysfunctions. Stroboscopic vision (SV) training has been deemed to enhance somatosensorial pathways in this population group; nevertheless, until recently no studies have addressed the additional effects of this treatment option to the traditional therapeutic approach. Methods: To evaluate the effectiveness of a partial visual deprivation training protocol in patients with CAI, a randomized controlled trial was carried out. Patients with CAI (n = 73) were randomized into either a balance training, SV training, or a control (no training) group. For participants assigned into training groups, they received 18 training sessions over 6 weeks. The primary outcome was dynamic balance as measured by the Star Excursion Balance Test assessed at baseline and after 6 weeks of intervention. Secondary outcome measures included ankle dorsiflexion range of motion, self-reported instability feeling, and ankle functional status. Results: Better scores in stroboscopic training and balance training groups in all outcome measures were observed in comparison with the control group with moderate to large effect sizes. Stroboscopic training was more effective than neuromuscular training in self-reported instability feeling (cohen’s d = 0.71; p = 0.042) and anterior reach distance of the star excursion balance test (cohen’s d = 1.23; p = 0.001). Conclusions: Preliminary findings from the effects of SV Stroboscopic training in patients with CAI, suggest that SV may be beneficial in CAI rehabilitation.


2019 ◽  
Vol 22 (5) ◽  
pp. 538-543 ◽  
Author(s):  
Christopher J. Burcal ◽  
Michelle A. Sandrey ◽  
Tricia Hubbard-Turner ◽  
Patrick O. McKeon ◽  
Erik A. Wikstrom

2009 ◽  
Vol 23 (7) ◽  
pp. 609-621 ◽  
Author(s):  
Patrick O McKeon ◽  
Gabriele Paolini ◽  
Christopher D Ingersoll ◽  
D Casey Kerrigan ◽  
Ethan N Saliba ◽  
...  

2018 ◽  
Vol 23 (1) ◽  
pp. 27-32 ◽  
Author(s):  
Sajad Bagherian ◽  
Nader Rahnama ◽  
Erik A. Wikstrom ◽  
Micheal A. Clark ◽  
Faroogh Rostami

Sensorimotor function is impaired in chronic ankle instability (CAI) patients. CAI patients have an increased sensitivity to fatigue relative to controls. Few investigations have quantified functional movement scores in CAI patients or the effect of fatigue on such scores. Therefore, we characterized functional movement scores before and after fatigue in 40 collegiate athletes with CAI. Three movement patterns (double-limb squat, double-limb squat with heel lift, and single-limb squat) were completed before and after fatigue and scored using Fusionetics®. All Fusionetics scores were higher (worse) after fatigue. The results demonstrate that functional movement scores were sensitive to fatigue.


2020 ◽  
Vol 25 (4) ◽  
pp. 165-169
Author(s):  
Kimmery Migel ◽  
Erik Wikstrom

Introduction/Clinical Scenario: Ankle sprains are highly common within the population and can lead to chronic ankle instability (CAI). Individuals with CAI have both functional and mechanical impairments, which are thought to contribute to maladaptive gait biomechanics. Neuromuscular control and balance training are frequently incorporated into rehabilitation programs, however the effect of balance training on gait biomechanics remains unknown. Focused Clinical Question: Does balance or neuromuscular training improve gait biomechanics in individuals with CAI? Summary of Key Findings: Three studies assessed 4–6 weeks of progressive neuromuscular control training and found no improvements in gait biomechanics. One study found a worsening of eversion position at midstance upon program completion. However, when training was augmented with destabilizing shoes, improvements in dorsiflexion were noted. Clinical Bottom Line: Cumulative findings suggest that neuromuscular control training does not improve gait biomechanics in those with CAI. However, augmentation of programs may be beneficial. Strength of Recommendation: There is high-quality evidence(Grade B) that balance training does not alter gait biomechanics in patients with CAI.


2019 ◽  
Vol 54 (6) ◽  
pp. 727-736 ◽  
Author(s):  
Christopher J. Burcal ◽  
Hyunjae Jeon ◽  
John M. Gonzales ◽  
Mark E. Faust ◽  
Abbey C. Thomas ◽  
...  

Context Motor planning, a prerequisite for goal-driven movement, is a complex process that occurs in the cortex. Evidence has suggested that motor planning is altered in patients with chronic ankle instability (CAI). We know balance training can improve balance, but we do not know if it also improves motor planning. Such changes in cortical activity can be assessed using electroencephalography. Objective To evaluate changes in cortical measures of motor planning after balance training in patients with CAI. Design Controlled laboratory study. Setting Research laboratory. Patients or Other Participants Fifteen patients with CAI (age = 20.80 ± 2.37 years, height = 169.47 ± 7.95 cm, mass = 70.45 ± 19.25 kg). Intervention(s) A 4-week progression-based balance-training program. Main Outcome Measure(s) Motor planning was assessed via electroencephalography before a lateral-stepping task. We calculated event-related spectral perturbations in the θ (4–8 Hz), α (8–12 Hz), β (14–25 Hz), and γ (30–50 Hz) bands. The change in power (in decibels) was calculated in each band for the 500 milliseconds before the onset of the lateral-stepping movement. Additional outcomes were the Foot and Ankle Ability Measure (FAAM)–Activities of Daily Living and Sport subscales; the anterior-, posteromedial-, and posterolateral-reach directions of the Star Excursion Balance Test; and static balance. Patients completed 3 test sessions: baseline, 24- to 48-hour posttest, and 1-week posttest. Repeated-measures analyses of variance were used to assess changes over time. The α level was set at .05. Results The FAAM–Activities of Daily Living subscale score was improved at both posttests (P < .05), and the FAAM-Sport subscale score was improved at the 1-week posttest (P = .008). Balance was better in all 3 directions of the Star Excursion Balance Test at both posttest sessions (P < .001). After balance training, no differences were identified in cortical activity at either posttest session (P > .05). Conclusions No improvements were identified in electroencephalography measures of motor planning during lateral stepping in patients with CAI. Improved balance suggested that sensorimotor adaptations occurred, but they may not have transferred to the lateral-stepping task or they may have been mediated via other processes in patients with CAI.


Sign in / Sign up

Export Citation Format

Share Document