This track focuses on the application of geometric methods in the analysis of anatomical structures. Participants are encouraged to present novel approaches that leverage geometric principles to enhance our understanding of human anatomy.
This session invites contributions that utilize statistical methods to investigate biomechanical phenomena. Emphasis will be placed on innovative statistical models that can elucidate the complexities of human movement and structure.
This track explores the role of evolutionary equations in the modeling of anatomical changes over time. Researchers are invited to discuss their findings on how these equations can inform our understanding of developmental and pathological processes.
This session will highlight advancements in computational techniques for body imaging applications. Presenters are encouraged to share their work on algorithms and methodologies that improve image quality and diagnostic capabilities.
This track aims to explore the intersection of computational anatomy and mental health, particularly in the study of psychosis. Contributions should focus on how computational techniques can reveal structural brain abnormalities associated with psychiatric disorders.
This session will delve into the mathematical foundations of shape analysis and diffeomorphometry. Researchers are invited to present their work on the metric spaces of shapes and the implications for anatomical research.
This track focuses on the development and application of numerical methods in the field of computational anatomy. Participants are encouraged to share innovative numerical techniques that address challenges in anatomical modeling.
This session will explore the use of neuroimaging techniques in conjunction with computational anatomy. Presenters should discuss how these combined approaches can enhance our understanding of brain structure and function.
This track invites contributions that apply computational anatomy techniques to orthopaedic research. Emphasis will be placed on studies that demonstrate the impact of computational methods on understanding musculoskeletal disorders.
This session will investigate the application of Hamiltonian dynamics in the study of anatomical structures. Researchers are encouraged to present their findings on how these principles can inform computational models of anatomy.
This track will explore the role of groups and group actions in computational anatomy. Contributions should focus on how these mathematical concepts can be applied to enhance the analysis of anatomical shapes and forms.