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磁铁矿磁感受器神经信号转换过程 被引量:1
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作者 钱霞 《四川大学学报(自然科学版)》 CAS CSCD 北大核心 2018年第2期323-328,共6页
生物中磁感受器机制是理解生物磁导航的生物物理机制,磁信息转换成神经信息的过程是这一机制的核心,但是仍然处于假设阶段.本文中首先综述了电磁感应机制、基于磁蛋白的磁感知机制和磁铁矿纳米颗粒的磁感知机制中神经信号转变过程,最后... 生物中磁感受器机制是理解生物磁导航的生物物理机制,磁信息转换成神经信息的过程是这一机制的核心,但是仍然处于假设阶段.本文中首先综述了电磁感应机制、基于磁蛋白的磁感知机制和磁铁矿纳米颗粒的磁感知机制中神经信号转变过程,最后提出了从理论上认识磁铁矿磁感受器神经信号转换过程的可能途径. 展开更多
关键词 生物磁导航 磁感受器 神经信号转换
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Quantitative Brain Recovery Assessment Using EEG After Cardiac Arrest
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作者 Kab-mun CHA Nitish.V.Thakor Hyun-chool SHIN 《Journal of Measurement Science and Instrumentation》 CAS 2011年第3期222-225,共4页
This paper presents a study of measures that enable diagnosis of brain recovery after cardiac arrest by using subband-based Information Quantity(SIQ).By using Discrete Wavelet Transform(DWT)and Shannon Entropy(SE),bra... This paper presents a study of measures that enable diagnosis of brain recovery after cardiac arrest by using subband-based Information Quantity(SIQ).By using Discrete Wavelet Transform(DWT)and Shannon Entropy(SE),brain signals after cardiac arrest are converted into quantitative IQ and this is put into subband-based IQ.By using IQ and SIQ,a comparison and analysis on correlation between measures suggested in this paper and Neural Deficit Score(NDS)is developed.This goes further by collecting the features in each subband and analyzing the changes in brain signals from the biological prospective.Experiment data is collected from 26 rats.Based on correlation between suggested measures and NDS,this study will allow early assessment of brain recovery after cardiac arrest.Furthermore,it is expected that proposed measures could be an assistant index of NDS. 展开更多
关键词 BMI EEG IQ SIQ brain injury
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