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首页> 外文期刊>NanoBioscience, IEEE Transactions on >Employing TDMA Protocol in Neural Nanonetworks in Case of Neuron Specific Faults
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Employing TDMA Protocol in Neural Nanonetworks in Case of Neuron Specific Faults

机译:在神经元特定故障的情况下,在神经纳米网络中采用TDMA协议

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摘要

Many neurodegenerative diseases arise from the malfunctioning neurons in the pathway where the signal is carried. In this paper, we propose neuron specific TDMA/multiplexing and demultiplexing mechanisms to convey the spikes of a receptor neuron over a neighboring path in case of an irreversible path fault existing in its original path. The multiplexing mechanism depends on neural delay box (NDB) which is composed of a relay unit and a buffering unit. The relay unit can be realized as a nanoelectronic device. The buffering unit can be implemented either via neural delay lines as employed in optical switching systems or via nanoelectronic delay lines, i.e., delay flip flops. Demultiplexing is realized by a demultiplexer unit according to the time slot assignment information. Besides, we propose the use of neural interfaces in the NDBs and the demultiplexer unit for detecting and stimulating the generation of spikes. The objective of the proposed mechanisms is to substitute a malfunctioning path, increase the number of spikes delivered and correctly deliver the spikes to the intended part of the somatosensory cortex. The results demonstrate that significant performance improvement on the successively delivered number of spikes is achievable when delay lines are employed as neural buffers in NDBs.
机译:许多神经退行性疾病是由信号传递途径中的神经元功能失常引起的。在本文中,我们提出了特定于神经元的TDMA /多路复用和多路分解机制,以在原始路径中存在不可逆路径故障的情况下,在邻近路径上传递受体神经元的尖峰信号。多路复用机制取决于神经延迟盒(NDB),它由中继单元和缓冲单元组成。中继单元可以被实现为纳米电子器件。缓冲单元可以通过光交换系统中采用的神经延迟线或通过纳米电子延迟线即延迟触发器来实现。通过多路分解器单元根据时隙分配信息来实现多路分解。此外,我们建议在NDB和解复用器单元中使用神经接口来检测和刺激尖峰的产生。所提出的机制的目的是替代故障路径,增加所传送的尖峰的数量,并将尖峰正确地传送到体感皮层的预期部分。结果表明,当将延迟线用作NDB中的神经缓冲区时,可以实现连续交付的尖峰数量的显着性能改进。

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