SDG 3 — Good Health and Well-being
SDG 4 — Quality Education
SDG 9 — Industry, Innovation and Infrastructure
This track focuses on the application of geometric methods in the analysis of anatomical structures. It aims to explore the integration of geometric modeling with computational techniques to enhance our understanding of human anatomy.
This session will delve into the use of statistical methodologies in physiotherapy to assess treatment outcomes. Participants will discuss the implications of statistical analysis on patient care and rehabilitation strategies.
This track emphasizes the intersection of biomechanics and computational modeling in understanding human movement. It will cover advancements in simulation techniques that inform clinical practices in rehabilitation.
This session will explore the role of evolutionary equations in modeling anatomical changes over time. Researchers will present their findings on how these equations can be applied to understand developmental processes.
This track focuses on innovative imaging techniques that leverage computational methods for enhanced anatomical visualization. Discussions will include advancements in imaging modalities and their applications in clinical settings.
This session will address the integration of neuroimaging techniques with computational analysis to study brain anatomy and function. It aims to highlight the latest research in understanding neurological disorders through advanced imaging.
This track will explore the methodologies of shape analysis in the context of medical research. Participants will discuss how shape metrics can be utilized to assess anatomical variations and their clinical significance.
This session will focus on the study of diffeomorphometry as a metric space for analyzing shapes and forms. Researchers will present their work on the mathematical foundations and applications of diffeomorphic transformations.
This track will investigate the application of Hamiltonian dynamics in the context of computational anatomy. Discussions will center on how these principles can inform the modeling of anatomical structures and their transformations.
This session will highlight the use of computational anatomy techniques in orthopaedic research. Participants will share insights on how these methods can improve surgical planning and patient outcomes.
This track will explore the role of group actions in understanding anatomical symmetries and variations. Researchers will discuss the implications of these mathematical concepts on the study of human anatomy.