Scopes
(Including but not limited to the following topics)
Topic 1: Biomechanics of Movement
Modeling and analysis of human movement biomechanics
Kinematics and dynamics analysis
Gait analysis and joint mechanics
Muscle dynamics and electromyography analysis
Biomechanical mechanisms of movement injuries
Biomechanical optimization of movement performance
Multimodal motion data fusion and interpretation
Wearable sensor motion monitoring
Motion capture and posture estimation
Three-dimensional motion simulation and simulation
Design of motion equipment based on biomechanical data
Motion technique action diagnosis and optimization
Biomechanical aspects of movement fatigue and recovery
Biomechanical experimental methods
Clinical translation of biomechanics
Topic 2: Artificial Intelligence
Machine learning and deep learning
Natural language processing and sports text analysis
Computer vision and action recognition
Knowledge graphs and motion reasoning
Reinforcement learning and motion decision optimization
Generative AI and motion data augmentation
Graph neural networks and motion relationship modeling
Transfer learning and adaptation across motion domains
Interpretable artificial intelligence and transparency in motion analysis
Federated learning and protection of movement data privacy
Large language models and sports intelligent question answering
Multi-agent systems and motion simulation
Intelligent perception and human-computer interaction
Edge intelligence and deployment on wearable devices
Topic 3: Sports Rehabilitation
Rehabilitation robot technology
Brain-computer interface and neural regulation technology
Virtual reality/ augmented reality rehabilitation training
Smart wearable rehabilitation devices
Prevention of movement injuries and decision-making for returning to the field
Intelligent orthopedic and neurological rehabilitation
Community and home-based intelligent rehabilitation
Quantitative assessment and prediction of rehabilitation effects
Multimodal biofeedback rehabilitation system
Digital twin technology in sports rehabilitation
Rehabilitation assistive engineering and intelligent design
Life-cycle rehabilitation ecosystem
Intelligent rehabilitation informatization and data management
Topic 1: Biomechanics of Movement
Modeling and analysis of human movement biomechanics
Kinematics and dynamics analysis
Gait analysis and joint mechanics
Muscle dynamics and electromyography analysis
Biomechanical mechanisms of movement injuries
Biomechanical optimization of movement performance
Multimodal motion data fusion and interpretation
Wearable sensor motion monitoring
Motion capture and posture estimation
Three-dimensional motion simulation and simulation
Design of motion equipment based on biomechanical data
Motion technique action diagnosis and optimization
Biomechanical aspects of movement fatigue and recovery
Biomechanical experimental methods
Clinical translation of biomechanics
Topic 2: Artificial Intelligence
Machine learning and deep learning
Natural language processing and sports text analysis
Computer vision and action recognition
Knowledge graphs and motion reasoning
Reinforcement learning and motion decision optimization
Generative AI and motion data augmentation
Graph neural networks and motion relationship modeling
Transfer learning and adaptation across motion domains
Interpretable artificial intelligence and transparency in motion analysis
Federated learning and protection of movement data privacy
Large language models and sports intelligent question answering
Multi-agent systems and motion simulation
Intelligent perception and human-computer interaction
Edge intelligence and deployment on wearable devices
Topic 3: Sports Rehabilitation
Rehabilitation robot technology
Brain-computer interface and neural regulation technology
Virtual reality/ augmented reality rehabilitation training
Smart wearable rehabilitation devices
Prevention of movement injuries and decision-making for returning to the field
Intelligent orthopedic and neurological rehabilitation
Community and home-based intelligent rehabilitation
Quantitative assessment and prediction of rehabilitation effects
Multimodal biofeedback rehabilitation system
Digital twin technology in sports rehabilitation
Rehabilitation assistive engineering and intelligent design
Life-cycle rehabilitation ecosystem
Intelligent rehabilitation informatization and data management
Important Dates/重要日期
- Submission Deadline: 2026.10.20
- Registration Deadline: 2026.10.30
- Conference Date: 2026.11.8
- Notification Date: About a week after the submission
Submission Portal/投稿方式
Mail Address: icaim_info@126.com
If you have any question or need any assistance regarding the conference, please feel free to contact our conference specialists:
谢老师
+86-15528045772(微信同号)
3825393354
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