This two-volume set constitutes the proceedings of the 18th biennial AAATE Conference on Technology for Inclusion and Participation for All: Recent Achievements and Future Directions, AAATE 2025, which took place in Nicosia, Cyprus, during September 10-12, 2025.
This two-volume set constitutes the proceedings of the 18th biennial AAATE Conference on Technology for Inclusion and Participation for All: Recent Achievements and Future Directions, AAATE 2025, which took place in Nicosia, Cyprus, during September 10-12, 2025.
This two-volume set constitutes the proceedings of the 18th biennial AAATE Conference on Technology for Inclusion and Participation for All: Recent Achievements and Future Directions, AAATE 2025, which took place in Nicosia, Cyprus, during September 10-12, 2025.
This two-volume set constitutes the proceedings of the 18th biennial AAATE Conference on Technology for Inclusion and Participation for All: Recent Achievements and Future Directions, AAATE 2025, which took place in Nicosia, Cyprus, during September 10-12, 2025.
This book provides an in-depth exploration of machine learning techniques and their biomedical applications, particularly in developing intelligent computer-aided diagnostic systems, creating groundbreaking healthcare technologies, uncovering novel biological applications, and fostering sustainable health solutions.
This book provides an in-depth exploration of machine learning techniques and their biomedical applications, particularly in developing intelligent computer-aided diagnostic systems, creating groundbreaking healthcare technologies, uncovering novel biological applications, and fostering sustainable health solutions.
This book focuses on the most recent tools unveiling the role of glial cells in brain function and dysfunction, especially involving epilepsy, ischemia, and glioma.
Noise, often viewed as a disturbance in biomedical signal analysis, plays a crucial and informative role in the dynamics of complex physiological systems, particularly in neurocardiovascular and neural networks.
This book provides fundamental information on all aspects of computational haemodynamics in an integrated manner, combining physiology, fluid mechanics, differential equations and related numerical methods, computing, experiments and cardiovascular pathologies.
Noise, often viewed as a disturbance in biomedical signal analysis, plays a crucial and informative role in the dynamics of complex physiological systems, particularly in neurocardiovascular and neural networks.
This book focuses on the most recent tools unveiling the role of glial cells in brain function and dysfunction, especially involving epilepsy, ischemia, and glioma.
This book provides fundamental information on all aspects of computational haemodynamics in an integrated manner, combining physiology, fluid mechanics, differential equations and related numerical methods, computing, experiments and cardiovascular pathologies.
3D Printing for Biomedical Engineering: Additive Manufacturing Processes, Properties, and Applications combines cutting-edge research developments with fundamental concepts related to processing, properties, and applications of advanced additive manufacturing technology in the medical field.
Robot Design: Application to Medical Robotics offers a blend of theory and applications, with a focus on robot design to aid researchers in developing innovative robotic solutions in the healthcare domain.
Intelligent Systems for Neurocognition and Human-Robot-Computer Interaction explores the transformative potential of intelligent systems in enhancing human well-being through advancements in neurocognitive technologies, robotics, and AI-driven healthcare.
This book presents an advanced methodology for developing tightly fitting clothing using automated 4D scan data analysis and individualized, deformable human body Finite Element models (ID-HBM).
This book presents an advanced methodology for developing tightly fitting clothing using automated 4D scan data analysis and individualized, deformable human body Finite Element models (ID-HBM).
This book delves into the fundamental concepts, methodologies, and practical implementations of feature fusion, providing valuable perspectives on how merging several data aspects might augment the decision-making skills of artificial intelligence.
In an age where digital transformation is redefining healthcare, this book offers a timely and comprehensive exploration of one of the field’s most dynamic frontiers.
The 16-volume set LNCS 15960 - 15975 constitutes the refereed proceedings of the 28th International Conference on Medical Image Computing and Computer Assisted Intervention, MICCAI 2025, which took place in Daejeon, South Korea, during September 23–27, 2025.
The 16-volume set LNCS 15960 - 15975 constitutes the refereed proceedings of the 28th International Conference on Medical Image Computing and Computer Assisted Intervention, MICCAI 2025, which took place in Daejeon, South Korea, during September 23–27, 2025.
This book introduces engineering students and practitioners to biopolymers, which are polymers derived partially or entirely from biobased (renewable) raw materials, and/or are biodegradable.
The 16-volume set LNCS 15960 - 15975 constitutes the refereed proceedings of the 28th International Conference on Medical Image Computing and Computer Assisted Intervention, MICCAI 2025, which took place in Daejeon, South Korea, during September 23–27, 2025.
The 16-volume set LNCS 15960 - 15975 constitutes the refereed proceedings of the 28th International Conference on Medical Image Computing and Computer Assisted Intervention, MICCAI 2025, which took place in Daejeon, South Korea, during September 23–27, 2025.
The 16-volume set LNCS 15960 - 15975 constitutes the refereed proceedings of the 28th International Conference on Medical Image Computing and Computer Assisted Intervention, MICCAI 2025, which took place in Daejeon, South Korea, during September 23–27, 2025.
This book brings together cutting-edge research and innovative applications of artificial intelligence, machine learning, wearable technologies and decision support systems in modern healthcare.
This book reports on advances in human modeling techniques, covering cutting edge tool development together with practical application across a broad range of domains including: health and wellbeing, automotive, clothing, military, work environments, and inclusive design.
The 16-volume set LNCS 15960 - 15975 constitutes the refereed proceedings of the 28th International Conference on Medical Image Computing and Computer Assisted Intervention, MICCAI 2025, which took place in Daejeon, South Korea, during September 23–27, 2025.
This book reports on advances in human modeling techniques, covering cutting edge tool development together with practical application across a broad range of domains including: health and wellbeing, automotive, clothing, military, work environments, and inclusive design.
This book brings together cutting-edge research and innovative applications of artificial intelligence, machine learning, wearable technologies and decision support systems in modern healthcare.
In an age where digital transformation is redefining healthcare, this book offers a timely and comprehensive exploration of one of the field’s most dynamic frontiers.
This book introduces engineering students and practitioners to biopolymers, which are polymers derived partially or entirely from biobased (renewable) raw materials, and/or are biodegradable.
The 16-volume set LNCS 15960 - 15975 constitutes the refereed proceedings of the 28th International Conference on Medical Image Computing and Computer Assisted Intervention, MICCAI 2025, which took place in Daejeon, South Korea, during September 23–27, 2025.
The 16-volume set LNCS 15960 - 15975 constitutes the refereed proceedings of the 28th International Conference on Medical Image Computing and Computer Assisted Intervention, MICCAI 2025, which took place in Daejeon, South Korea, during September 23–27, 2025.
The 16-volume set LNCS 15960 - 15975 constitutes the refereed proceedings of the 28th International Conference on Medical Image Computing and Computer Assisted Intervention, MICCAI 2025, which took place in Daejeon, South Korea, during September 23–27, 2025.
The 16-volume set LNCS 15960 - 15975 constitutes the refereed proceedings of the 28th International Conference on Medical Image Computing and Computer Assisted Intervention, MICCAI 2025, which took place in Daejeon, South Korea, during September 23–27, 2025.
This book delves into the fundamental concepts, methodologies, and practical implementations of feature fusion, providing valuable perspectives on how merging several data aspects might augment the decision-making skills of artificial intelligence.
The 16-volume set LNCS 15960 - 15975 constitutes the refereed proceedings of the 28th International Conference on Medical Image Computing and Computer Assisted Intervention, MICCAI 2025, which took place in Daejeon, South Korea, during September 23–27, 2025.
The 16-volume set LNCS 15960 - 15975 constitutes the refereed proceedings of the 28th International Conference on Medical Image Computing and Computer Assisted Intervention, MICCAI 2025, which took place in Daejeon, South Korea, during September 23–27, 2025.
The 16-volume set LNCS 15960 - 15975 constitutes the refereed proceedings of the 28th International Conference on Medical Image Computing and Computer Assisted Intervention, MICCAI 2025, which took place in Daejeon, South Korea, during September 23–27, 2025.
The 16-volume set LNCS 15960 - 15975 constitutes the refereed proceedings of the 28th International Conference on Medical Image Computing and Computer Assisted Intervention, MICCAI 2025, which took place in Daejeon, South Korea, during September 23–27, 2025.
The 16-volume set LNCS 15960 - 15975 constitutes the refereed proceedings of the 28th International Conference on Medical Image Computing and Computer Assisted Intervention, MICCAI 2025, which took place in Daejeon, South Korea, during September 23–27, 2025.
This reference work gives a comprehensive overview about how to fully exploit the potential of bioimaging to characterize tissue regeneration holistically and to gain complementary, multi-scale information about relevant structure, function, dynamics and molecular composition.