Chronic Ankle Instability Rehabilitation
How stable is the ankle during static and dynamic tasks, and how does neuromuscular control improve with rehabilitation?

How stable is the ankle during static and dynamic tasks, and how does neuromuscular control improve with rehabilitation?
How stable is the ankle during static and dynamic tasks, and how does neuromuscular control improve with rehabilitation?
A rehabilitation pathway for chronic ankle instability focused on static/dynamic balance, gait, landing control and movement variability.
Measurement follows the task
The technology path shown here is the approved structure for this service. The exact protocol is configured around the research question, environment and participant flow.
Balance, dynamic stability and landing control.
Lower-limb activation timing.
Interactive balance training when indicated.
How this study is executed.
The protocol below reflects the service definition developed for Neuro Garage. Final details are confirmed before execution.
Establish safe static-balance baseline.
Progress to single-leg and dynamic-balance tasks.
Add gait, step or landing tasks as appropriate.
Run rehabilitation/balance training.
Repeat objective stability measures.
What this specific study can produce
What the client can change with the evidence
The study is designed to translate observed behavior into concrete operational, people, design or risk-management decisions.
Who has used comparable research approaches?
Publicly documented examples from companies and institutions worldwide. These organizations are not presented as Neuro Garage clients, and the examples do not imply they purchased this exact Neuro Garage protocol.
Eye tracking used to study cognition, training and attention in medical procedures.
View public source ↗02Wearable eye-tracking research on clinical-device usability and safety.
View public source ↗03Eye-movement research supporting healthcare and neurological investigations.
View public source ↗The method follows the question
Technology is selected because it is scientifically appropriate for the research objective, not because a device must be used. Santiago configures the study scope, stimuli, participant flow and measurement path before execution.
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