The human brain is structured with the capacity to repair itself. This plasticity of the brain has motivated researchers to develop systems which have similar capabilities of fault tolerance and self-repair. Recent research findings have proven that interactions between astrocytes and neurons can actuate brain-like self-repair in a bidirectionally coupled astrocyte-neuron system. This paper presents a hardware realization of the bio-inspired self-repair architecture on an FPGA. We also introduce a reduced architecture for an FPGA-based hardware-efficient fault-tolerant system. This is based on the principle of retrograde signaling in an astrocyte-neuron network by simplifying the calcium dynamics within the astrocyte. The hardware optimized...
Neurophysiological observations confirm that the brain not only is able to detect the impaired synap...
A self-repairing robot utilising a spiking astrocyte-neuron network is presented in this paper. It u...
While neuromorphic computing architectures based on Spiking Neural Networks (SNNs) are increasingly ...
The human brain is structured with the capacity to repair itself. This plasticity of the brain has m...
The human brain is structured with the capacity to repair itself. This plasticity of the brain has m...
This paper presents a hardware based implementation of a biologically-faithful astrocyte-based selfr...
This paper presents a hardware based implementation of a biologically-faithful astrocyte-based selfr...
This paper presents a hardware based implementation of a biologically-faithful astrocyte-based selfr...
We present a novel methodology that addresses the problem of faults in synapses of a spiking neural ...
We present a novel methodology that addresses the problem of faults in synapses of a spiking neural ...
Spiking Astrocyte-neuron Networks (SANNs) model the adaptive/repair feature of the human brain. They...
Spiking Astrocyte-neuron Networks (SANNs) model the adaptive/repair feature of the human brain. They...
Neurophysiological observations confirm that the brain not only is able to detect the impaired synap...
Neurophysiological observations confirm that the brain not only is able to detect the impaired synap...
Fault tolerance is a remarkable feature of biological systems and their self-repair capability influ...
Neurophysiological observations confirm that the brain not only is able to detect the impaired synap...
A self-repairing robot utilising a spiking astrocyte-neuron network is presented in this paper. It u...
While neuromorphic computing architectures based on Spiking Neural Networks (SNNs) are increasingly ...
The human brain is structured with the capacity to repair itself. This plasticity of the brain has m...
The human brain is structured with the capacity to repair itself. This plasticity of the brain has m...
This paper presents a hardware based implementation of a biologically-faithful astrocyte-based selfr...
This paper presents a hardware based implementation of a biologically-faithful astrocyte-based selfr...
This paper presents a hardware based implementation of a biologically-faithful astrocyte-based selfr...
We present a novel methodology that addresses the problem of faults in synapses of a spiking neural ...
We present a novel methodology that addresses the problem of faults in synapses of a spiking neural ...
Spiking Astrocyte-neuron Networks (SANNs) model the adaptive/repair feature of the human brain. They...
Spiking Astrocyte-neuron Networks (SANNs) model the adaptive/repair feature of the human brain. They...
Neurophysiological observations confirm that the brain not only is able to detect the impaired synap...
Neurophysiological observations confirm that the brain not only is able to detect the impaired synap...
Fault tolerance is a remarkable feature of biological systems and their self-repair capability influ...
Neurophysiological observations confirm that the brain not only is able to detect the impaired synap...
A self-repairing robot utilising a spiking astrocyte-neuron network is presented in this paper. It u...
While neuromorphic computing architectures based on Spiking Neural Networks (SNNs) are increasingly ...