FPGA (field programmable gate array)-based electronic synapse experimental platform

An experimental platform, the technology of electronic synapse, applied in the field of biomedical engineering, can solve the problems that the electronic synapse experimental platform is not used, and there is no electronic synaptic experimental platform.

Pending Publication Date: 2018-10-26
LANZHOU JIAOTONG UNIV
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  • Abstract
  • Description
  • Claims
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AI Technical Summary

Problems solved by technology

[0005] The existing technology is still in the basic stage, so there are still the following shortcomings: 1) There is no FPGA-based dedicated electronic synapse experimen

Method used

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  • FPGA (field programmable gate array)-based electronic synapse experimental platform
  • FPGA (field programmable gate array)-based electronic synapse experimental platform
  • FPGA (field programmable gate array)-based electronic synapse experimental platform

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Embodiment Construction

[0020] The present invention will be described in detail below in conjunction with the accompanying drawings and specific embodiments.

[0021] Such as figure 1 Shown, the experimental platform of the present invention comprises computer 1, and computer 1 is respectively connected with first FPGA2, the second FPGA3, the 3rd FPGA4 and the 4th FPGA5 signal, and the first FPGA2 is connected with the 2nd FPGA3 and the 3rd FPGA4 signal respectively, the 3rd FPGA4 signal is connected respectively. The second FPGA3 and the third FPGA4 are respectively connected to the fourth FPGA5 signal, the first FPGA2, the second FPGA3, the third FPGA4 and the fourth FPGA5 are all connected to the digital-to-analog converter 6, and the digital-to-analog converter 6 is connected to the oscilloscope 10.

[0022] The computer 1 is respectively connected to the first FPGA2, the second FPGA3, the third FPGA4 and the fourth FPGA5 through USB control download lines. The first FPGA2, the second FPGA3, th...

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Abstract

The invention provides an FPGA (field programmable gate array)-based electronic synapse experimental platform, which comprises a computer in signal connection with four FPGAs. A second FPGA and a third FPGA are in signal connection with a first FPGA as well as a fourth FPGA, and the four FPGAs are all connection with a digital-analog converter which is connected with an oscilloscope. The first FPGA serves as a first electronic nerve cell to generate action potential; the second FPGA generates excitatory synaptic current; the third FPGA generates inhibitive synaptic current; the fourth FPGA serves as a second electronic nerve cell without application of any external stimulation, and the stimulation derives from synaptic current. The experimental platform has advantages that differences andsimilarities of neural information transmission under different coupling strengths, effects of different types of synapses namely inhibitive and excitatory chemical synapses on information transmission and influences of joint action of the two types of chemical synapses on information transmission can be observed.

Description

technical field [0001] The invention belongs to the technical field of biomedical engineering and relates to an experimental platform for imitating electronic synapse, in particular to an experimental platform for electronic synapse based on FPGA. Background technique [0002] In 1894, the famous British physiologist Charles Sherrington first proposed the concept of "synapse". In the biological nervous system, a large number of neurons are interconnected by synapses to form a neural network. The key role of synapses is to process and transmit information between neurons. Professor Feng Depei, a famous Chinese physiologist, explained the role of synapses, that is, "in the entire neurobiology, synapses and related research can be said to occupy a central position. Because the nervous system is basically an information processing system, and information Processing requires neuron-to-neuron dialogue, which occurs through synapses." Scholars have explored the process of electr...

Claims

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Application Information

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IPC IPC(8): G09B23/18
CPCG09B23/186
Inventor 逯迈陈凯易飞鸿董绪伟潘强强
Owner LANZHOU JIAOTONG UNIV
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