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Neuropunk Revolution: Further Results

  • Max Talanov

摘要

We use the term “neuropunk revolution” to identify the set of technologies based on the idea to use neuromorphic computing devices to compensate the pathological work of a patients nervous system. In this paper, I present approach for the distributed architecture of the implants infrastructure and further results of the “neuropunk revolution” technologies. Firstly I present one of the possible solution for the bypass problem to process the inbound data from the motor cortex of paralysed patient by real-time thalamus, brain stem and spinal cord models to orchestrate a spinal cord and muscles stimulation taking into account the feedback loop. Secondly I present the digital components interface to “speak the language” of the nervous system for the implementation of the neurointerface with real-time neurosimulation for spasticity compensation via the antagonist muscle/nerve stimulation. Thirdly I present the memristive implementation of the self-organising reservoir computing spiking neural network replicating the walking pattern recovery of a rat after complete spinal cord injury.