Neurological diseases can be studied by performing bio-hybrid experiments using a real-time biomimetic Spiking Neural Network (SNN) platform. The Hodgkin-Huxley model offers a set of equations including biophysical parameters which can serve as a base to represent different classes of neurons and affected cells. Also, connecting the artificial neurons to the biological cells would allow us to understand the effect of the SNN stimulation using different parameters on nerve cells. Thus, designing a real-time SNN could useful for the study of simulations of some part of the brain. Here, we present a different approach to optimize the Hodgkin-Huxley equations adapted for Field Programmable Gate Array (FPGA) implementation. The equations of the ...
The main required organ of the biological system is the Central Nervous System (CNS), which can infl...
Recently, researchers have shown an increased interest in more biologically realistic neural network...
Cortical circuits in the brain have long been recognised for their information processing capabiliti...
In the last years, the idea to dynamically interface biological neurons with artificial ones has bec...
Neuroscience has been the subject of many studies and has seen new fields of research emerge where t...
Neuroscience has been the subject of many studies and has seen new fields of researchemerge where te...
Closed-loop experiments involving biological and artificial neural networks would improve the unders...
This work has been supported by the European FACETS project. Within this project, we contribute in d...
Field-programmable gate arrays (FPGAs) can provide an efficient programmable resource for implementi...
Neuromorphic systems take inspiration from the principles of biological information processing to fo...
Summarization: Neuromorphic computing is expanding by leaps and bounds through custom integrated cir...
We present a reconfigurable neural processor for real-time simulation and prediction of opto-neural ...
We present a reconfigurable neural processor for real-time simulation and prediction of opto-neural ...
Real-time large-scale simulation of biological systems is a challenging task due to nonlinear functi...
Restoration of the communication between brain circuitry is a crucial step in the recovery of brain ...
The main required organ of the biological system is the Central Nervous System (CNS), which can infl...
Recently, researchers have shown an increased interest in more biologically realistic neural network...
Cortical circuits in the brain have long been recognised for their information processing capabiliti...
In the last years, the idea to dynamically interface biological neurons with artificial ones has bec...
Neuroscience has been the subject of many studies and has seen new fields of research emerge where t...
Neuroscience has been the subject of many studies and has seen new fields of researchemerge where te...
Closed-loop experiments involving biological and artificial neural networks would improve the unders...
This work has been supported by the European FACETS project. Within this project, we contribute in d...
Field-programmable gate arrays (FPGAs) can provide an efficient programmable resource for implementi...
Neuromorphic systems take inspiration from the principles of biological information processing to fo...
Summarization: Neuromorphic computing is expanding by leaps and bounds through custom integrated cir...
We present a reconfigurable neural processor for real-time simulation and prediction of opto-neural ...
We present a reconfigurable neural processor for real-time simulation and prediction of opto-neural ...
Real-time large-scale simulation of biological systems is a challenging task due to nonlinear functi...
Restoration of the communication between brain circuitry is a crucial step in the recovery of brain ...
The main required organ of the biological system is the Central Nervous System (CNS), which can infl...
Recently, researchers have shown an increased interest in more biologically realistic neural network...
Cortical circuits in the brain have long been recognised for their information processing capabiliti...