Tech for Good, Life Above All

Chess Across Cities: Two Patients with High Paraplegia Play Chess via Brain-Computer Interfaces

Tech for Good, Life Above All

Reborn Brushstrokes: An Art Teacher with High Paraplegia Picks Up the Paintbrush Once Again

Tech for Good, Life Above All

My First Spring Festival with BCI: Technology Bridges Distances and Connects Hearts

Tech for Good, Life Above All

Life Restarted: After Years of High Paraplegia, His New Journey Begins with the First Mind Click

Motor Function Restoration

Cortical electrodes precisely capture motor intent, which is decoded in real time into accurate control signals to operate external physical and digital devices, empowering patients with motor disorders to regain independent mobility.
Decoding

Language Function Restoration

Cortical electrodes accurately capture language intent, decoded instantly into recognizable audio signals to enable innovative applications including digital avatars and silent thought-to-language communication, breaking communication barriers for patients with language impairments.
Decoding

Visual Function Restoration

Cortical electrodes precisely encode image signals captured by external devices and deliver them into the brain’s visual cortex, helping patients with visual impairments regain clear vision and restore visual capabilities.
Encoding
It is our responsibility to choose technological solutions that are safer, more open, and more human-centered. Guided by what brings the greatest benefit to patients, and with profound respect for life, our commitment is not only to help them survive, but to ensure they live with quality and dignity.

— Tiger H. Tao

Founder, CEO & Chief Scientist of NeuroXess

Core Technology Roadmap

Implantable Flexible Cortical Electrodes

  • High-throughput: Up to 1024 channels
  • Ultra-flexible: MEMS fabrication, only 10 μm thick
  • Higher safety: Placed under the dura mater on the brain surface
  • Wide coverage: Optimized for motor and language ECoG decoding

Cortical Electrode-Based BCI System

Fully Implantable, Fully Wireless, Fully Functional BCI System

High-Throughput Implantable Flexible BCI System

Fully Implantable, Fully Wireless, Fully Functional BCI System

China’s first, the world’s second BCI system with an integrated rechargeable battery
  • Fully implantable: All core modules (including battery) are implanted subcutaneously, eliminating external infection risks at source.
  • Fully wireless: Wireless power supply & data transmission with no external cables, freeing patients from cumbersome external hardware.
  • Fully functional: Integrates neural signal recording, signal processing, wireless data transmission, wireless power transfer and rechargeable battery modules.

Neural Recording ASIC

Custom neural recording ASIC: Integrated with self-developed low-noise amplifiers, 16-bit high-precision low-power ADCs, impedance measurement units and digital low-pass filters. Supports 64-channel neural signal acquisition with four adjustable amplification gain levels.

Implantable Neural Processor

Ultra-miniaturized, high-energy-density architecture with outstanding biocompatibility, chemical stability, long service life, high safety and full medical compliance. Equipped with high-performance implantable rechargeable batteries engineered for long-term, stable power supply inside the human body.

Surgical Implantation Protocol

High-Throughput Implantable Flexible BCI System

  • High throughput: Up to 1024 channels
  • High sampling rate: Up to 30 kHz
  • High precision: 16-bit resolution
  • Captures local field potentials (LFPs)
  • Supports motor & language neural decoding

Medical-grade titanium alloy housing with antibacterial properties to prevent infection

Reinforced wire bonding zone ensures mechanical stability for long-term implantation

256-Channel SurfTrode Cortical Electrodes | High-channel sampling capability

Surgical Implantation Protocol