A wireless subdural-contained brain-computer interface is a M.Tech project topic for Electronics & Communication Engineering. It gives students a clear starting point for research, implementation planning, and documentation.
A wireless subdural-contained brain-computer interface Project Details
| Abstract |
Highβdensity brainβcomputer interfaces need architectures that can handle huge electrode arrays while staying safe in temperature and fitting within wireless bandwidth limits. This work looks at a wireless, subdural brainβcomputer interface that uses a 65,536βelectrode grid. The grid is multiplexed down to 1,024 active recording channels. The approach tackles three main problems: the tight space under the dura, the amount of power the device can safely dissipate, and the need to send large amounts of data wirelessly. Computer models test activeβmatrix multiplexing methods that move signals from the dense electrode layout to onβchip analogβtoβdigital converters. Signalβprocessing models examine how the design improves spatial resolution, boosts signalβtoβnoise ratio, and compresses data
enough for realβtime wireless transmission. Thermal simulations check that the implantβs electronics stay within safe body temperature limits during continuous use. A development framework guides the simulation of neuralβdecoding performance, the calculation of wireless link budgets, and the selection of the best recording channels. Together, these models give a thorough assessment of highβdensity subdural interfaces and lay the groundwork for future implantable neural prosthetics and highβbandwidth brainβmachine communication systems.
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| Reference Paper |
A wireless subdural-contained brain-computer interface with 65,536 electrodes and 1,024 channels. |
| Domain |
Electronics & Communication Engineering |
| Sub-Domain |
Signal & Image Processing / Biomedical Signal Processing / Brain-Computer Interface |
| PDF Download |
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