Strategic Objectives
• Master the physics of high-impedance capacitive coupling.
• Design advanced low-noise amplifiers for ultra-weak signal detection.
• Implement robust electromagnetic shielding against ambient interference.
• Develop wearable neural interfaces that work through hair and clothing.
The Core Challenge
Traditional neural interfaces require conductive gels and direct skin contact, limiting long-term monitoring and user comfort in real-world environments.
01
The Evolution of Neural Sensing
02
Physics of Capacitive Coupling
03
The Human Bioelectric Source
04
High-Impedance Challenges
05
Front-End Amplifier Design
06
Electromagnetic Interference
07
Advanced Shielding Techniques
08
The Active Electrode Paradigm
09
Material Science for Sensors
10
Motion Artifact Mitigation
11
Digital Signal Processing
12
Non-Contact Electroencephalography
13
Electrocardiography Through Clothing
14
System Integration
15
Safety and Isolation
16
Wireless Data Transmission
17
Machine Learning for Pattern Recognition
18
Real-World Environmental Factors
19
Applications in Human-Computer Interaction
20
Clinical and Consumer Validation
21