Comparative Study of Whisk Step Coordination Between Athletes and Beginner Quantitative Evaluation of Coordination in Dance Sports
03Neurological Adaptation
We investigate how cognitive load and fatigue influence motor performance. Using AI-driven modeling, biofeedback systems, and mindfulness strategies, we develop personalized training protocols that strengthen resilience and improve physical readiness.
Related projects
Projects directly connected to neurological adaptation.
Related publications
Selected SIDLAB publications relevant to neurological adaptation.
A Concept of Development A Gait Quality Evaluation System Using ChatGPT: Applying A Standardized Angle Variable Calculation Method
Xing, K., Duan, R., Fang, Z., Sun, X., Koo, D., & Panday, S. B. (2025). Does frequency of the mechanical vibration matter? Evaluating the impact of whole-body vibration training on older adults’ strength, balance, and gait performance: a systematic review and network meta-analysis. Archives of Physical Medicine and Rehabilitation.
Moon, J., Lee, J., Kim, K., Koo, D., Lee, J., Pathak, P., ... & Panday, S. B.* (2021). Effect of Muscle-Specific Fatigue on the Risk of Anterior Cruciate Ligament Injury in Females. Applied Sciences, 11(11), 4969.
Lee, D. W., Yoon, D. H., Lee, J. Y., Panday, S. B., Park, J., & Song, W. (2020). Effects of High-Speed Power Training on Neuromuscular and Gait Functions in Frail Elderly with Mild Cognitive Impairment Despite Blunted Executive Functions: A Randomized Controlled Trial. The Journal of Frailty & Aging, 9, 179-184.
Hyoyeon Ahn, Prabhat Pathak, Siddhartha Bikram Panday, Sungho Kwon. (2018). The Effects of Arousal Regulation through Olfactory Inhalation on Static Stability and Heart Rate. Korean Society of Sport Psychology, 29(3), 219-227.