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Enhancing Human-Machine Interaction: Leveraging Neuromorphic Chips for Adaptive Learning and Control in Neural Prosthetics and Artificial Intelligence

Author

Listed:
  • Satnam Singh
  • Ishita Sabharwal
  • Shweta Kushwaha
  • Shilpi Jain
  • Madhur Jain

Abstract

This paper examines the integration of neuromorphic chips, AI, and neural prostheses to enhance human-machine interaction. Neuromorphic chips, modelled after the brain's neural architecture, enable efficient learning, adaptive behaviour, and energy-efficient processing in AI systems and prostheses. These chips improve pattern recognition, adaptive control, and integration with the human nervous system. In neural prostheses, they promise seamless brain-computer interfaces (BCI) to restore mobility for paralyzed individuals and enable precise control of devices for people with severe disabilities. For AI systems, neuromorphic chips support rapid learning from large datasets, enabling adaptability in dynamic environments and real-time decision-making.

Suggested Citation

  • Satnam Singh & Ishita Sabharwal & Shweta Kushwaha & Shilpi Jain & Madhur Jain, 2024. "Enhancing Human-Machine Interaction: Leveraging Neuromorphic Chips for Adaptive Learning and Control in Neural Prosthetics and Artificial Intelligence," International Journal of Scientific Research in Computer Science, Engineering and Information Technology, International Journal of Scientific Research in Computer Science, Engineering and Information Technology, vol. 10(6), pages 933-940, November.
  • Handle: RePEc:jbh:ijsrcs:v10:y2024:i6:id:488
    DOI: 10.32628/CSEIT241061135
    Note: Article URL: https://ijsrcseit.com/home/article/view/CSEIT241061135
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