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Aligned with
This conference contributes to global sustainability by aligning its research discussions and academic sessions with key United Nations Sustainable Development Goals. It fosters knowledge exchange, innovation, and collaborative engagement.
This track focuses on the latest innovations in biomechanics that enhance rehabilitation processes. It aims to explore how biomechanical principles can be applied to improve patient outcomes in rehabilitation engineering.
This session will delve into the application of predictive modeling techniques in biomedical engineering. Participants will discuss methodologies that enhance the accuracy of predictions in patient care and treatment outcomes.
This track examines the integration of supervised and unsupervised learning techniques in biomechanics research. Emphasis will be placed on how these methodologies can facilitate the analysis of complex biomechanical data.
This session will explore the role of anomaly detection in ensuring the reliability of biomedical systems. Discussions will focus on techniques that identify deviations from expected performance in rehabilitation technologies.
This track addresses advanced feature extraction methods used in the analysis of human motion. Participants will share insights on how these techniques can enhance the understanding of biomechanics in various applications.
This session focuses on the automation of workflows in rehabilitation engineering to improve efficiency and effectiveness. Discussions will include the integration of digital tools and systems for streamlined processes.
This track emphasizes the importance of system monitoring and evaluation in biomechanics applications. Participants will discuss methodologies for assessing the performance and reliability of biomechanical systems.
This session explores the intersection of industrial IoT and rehabilitation engineering. Topics will include how IoT technologies can enhance data collection and analysis in rehabilitation settings.
This track investigates the application of digital twin technologies in biomechanics and rehabilitation engineering. Participants will discuss how virtual models can optimize rehabilitation processes and patient monitoring.
This session focuses on innovative design processes for prosthetics, emphasizing optimization techniques. Discussions will cover the integration of biomechanics principles in creating effective prosthetic solutions.
This track examines the role of simulation and analytics in musculoskeletal modeling. Participants will share research on how these tools can enhance understanding and treatment of musculoskeletal disorders.