DEVELOPING CONTROL SYSTEMS THAT PROVIDE PRECISE AND RESPONSIVE BODY MOVEMENTS IN WEARABLE TECHNOLOGIES

Abstract
The advent of wearable technologies has revolutionized the way we interact with ourselves and our surroundings. From fitness trackers to prosthetic limbs, wearable devices have become an integral part of our daily lives. One of the most significant challenges in the development of wearable technologies is creating control systems that can accurately and responsively detect and replicate human body movements. This article will explore the importance of developing control systems that provide precise and responsive body movements in wearable technologies, highlighting the current state of research, the challenges faced, and the potential applications of such systems.
Keywords
Control systems, technology integration, wearable technologies, neuroplasticity.
References
- UCLA researchers develop advanced control system for prosthetic limbs (2020). Retrieved from <https://newsroom.ucla.edu/releases/ucla-researchers-develop-advanced-control-system-prosthetic-limbs>
- Electromyography (EMG) signals for controlling prosthetic limbs (2019). Retrieved from <https://www.sciencedirect.com/science/article/pii/B9780128148394000156>
- Machine learning algorithms for wearable devices (2018). Retrieved from https://ieeexplore.ieee.org/document/8334449
- Rice K.R., Joschtel B., Trost S.G. Validity of family child care providers’ proxy reports on children’s physical activity. Child. Obes. 2013; 9:393–398. doi: 10.1089/chi.2013.0035.
- Lobenius-Palmer K., Sjoqvist B., Hurtig-Wennlof A., Lundqvist L.O. Accelerometer-Assessed Physical Activity and Sedentary Time in Youth with Disabilities. Adapt. Phys. Activ. Q. 2018; 35:1–19. doi: 10.1123/apaq.2015-0065.
- King-Dowling S., Rodriguez C., Missiuna C., Timmons B.W., Cairney J. Health-related Fitness in Preschool Children with and without Motor Delays. Med. Sci. Sports Exerc. 2018; 50:1442–1448. doi: 10.1249/MSS.0000000000001590.