Real-time multicompartment Hodgkin-Huxley neuron emulation on SoC FPGA - presented by Pr Timothée Levi

Real-time multicompartment Hodgkin-Huxley neuron emulation on SoC FPGA

Pr Timothée Levi

Pr Timothée Levi
Slide at 03:58
Context
Timothee
Objectives:
Modify, replace, control biological neuronal activity
Why?
Therapeutic protocols, neuroprostheses Al applications
How?
Real-time closed-loop bio-hybrid platform with biomimetic neural
network
Difficulties?
Real-time
Closed-loop Multidisciplinarity
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Summary (AI generated)

Maintaining real-time operations poses significant challenges, which is why we focus on embedded systems. Setting up closed-loop experiments in this multidisciplinary field can be complex. To clarify, let's discuss the meaning of bio breed and the schematics for its setup. On the left side, you will find the biological preparation, where you can work at various levels such as in vitro or in vivo. In the in vitro setting, different types of neurons, like neuron cultures, can be studied.