Neuroscience

Innovative research on movement decoding using advanced techniques.

A digital, abstract representation of a human head is integrated with a circuit-like design that flows into a microchip. The overall layout suggests a fusion of technology and human elements, with intricate line patterns representing circuits.
A digital, abstract representation of a human head is integrated with a circuit-like design that flows into a microchip. The overall layout suggests a fusion of technology and human elements, with intricate line patterns representing circuits.
A detailed depiction of a human brain floating in a serene, gradient background with hues of blue and purple. The brain appears realistic and is centrally positioned, giving it prominence against the smooth, calming backdrop.
A detailed depiction of a human brain floating in a serene, gradient background with hues of blue and purple. The brain appears realistic and is centrally positioned, giving it prominence against the smooth, calming backdrop.
A human brain model is floating against a soft, abstract white background with curved, ribbed structures. The brain is illuminated with a warm, glowing hue, highlighting its intricate surface details.
A human brain model is floating against a soft, abstract white background with curved, ribbed structures. The brain is illuminated with a warm, glowing hue, highlighting its intricate surface details.
A 3D rendering of a microchip with the letters 'AI' prominently displayed on its surface, set on a dark, circular platform.
A 3D rendering of a microchip with the letters 'AI' prominently displayed on its surface, set on a dark, circular platform.
A smartphone displaying the OpenAI logo rests on a laptop keyboard. The screen features a blue abstract design, and the keyboard is visible beneath with dimly lit keys.
A smartphone displaying the OpenAI logo rests on a laptop keyboard. The screen features a blue abstract design, and the keyboard is visible beneath with dimly lit keys.

Neural Decoding

Innovative research combining signal processing and deep learning techniques.

A laptop screen displaying the OpenAI logo and text. The laptop keyboard is visible below, with keys illuminated in a dimly lit environment.
A laptop screen displaying the OpenAI logo and text. The laptop keyboard is visible below, with keys illuminated in a dimly lit environment.
Multi-Scale Architecture

Decoding intended movements from synchronized fMRI and EEG data.

The image features a close-up view of a neuron cell with golden, branch-like extensions against a light background. The neuron is detailed, highlighting its intricate structure.
The image features a close-up view of a neuron cell with golden, branch-like extensions against a light background. The neuron is detailed, highlighting its intricate structure.
Contextual Learning

Fine-tuned GPT-4 component interprets patterns across modalities.

A smartphone displaying a podcast screen titled 'Hidden Brain' lies on an open book. Nearby, a pair of white wireless earbuds rests on the pages. The scene suggests a moment of leisure or learning, combining technology with traditional reading.
A smartphone displaying a podcast screen titled 'Hidden Brain' lies on an open book. Nearby, a pair of white wireless earbuds rests on the pages. The scene suggests a moment of leisure or learning, combining technology with traditional reading.
A close-up view of a computer motherboard with a prominent microchip labeled 'AI' at the center. The board is densely populated with circuits, capacitors, and other electronic components in various shades of gray, black, and gold.
A close-up view of a computer motherboard with a prominent microchip labeled 'AI' at the center. The board is densely populated with circuits, capacitors, and other electronic components in various shades of gray, black, and gold.
Performance Evaluation

Controlled experiments measuring accuracy, response time, and stability.

Research Design

Multi-stage approach for advanced movement intention decoding.