详细信息
Impact of θ-burst stimulation on memory mechanism:modeling study
文献类型:期刊文献
中文题名:Impact of θ-burst stimulation on memory mechanism:modeling study
英文题名:Impact of θ-burst stimulation on memory mechanism:modeling study
作者:Yating ZHU[1];Rubin WANG[1];Yihong WANG[1]
机构:[1]Institute for Cognitive Neurodynamics, East China University of Science and Technology, Shanghai 200237, China
年份:2016
卷号:37
期号:3
起止页码:395
中文期刊名:Applied Mathematics and Mechanics(English Edition)
外文期刊名:应用数学和力学(英文版)
收录:Scopus;CSCD:【CSCD2015_2016】;
基金:supported by the National Natural Science Foundation of China(Nos.11232005 and11472104);the Ministry of Education Doctoral Foundation of China(No.20120074110020)
语种:英文
中文关键词:θ-burst stimulation (TBS);long-term potential (LTP);working memory,long-term memory
外文关键词:θ-burst stimulation (TBS), long-term potential (LTP), working memory,long-term memory
摘要:The information stored in working memory can be transformed into the system of long-term memory due to the long-term potential (LTP) mechanism. The 8- burst stimulation (TBS) can be used as an LTP induction protocol in some experiments, but it has not been used in the models related to memory. In this work, an improved Camperi-Wang (C-W) model with the Ca2+ subsystem-induced bistability is adopted, and the TBS is simulated to be the initial stimuli of this model. With the evolution of the effects of the stimuli properties such as the cycle, the amplitude, and the duty ration on the memory mechanism of this model, the TBS can be adopted to activate working memory models and produce long-term memory. The study helps to propose the relationship between working memory and long-term memory, which lays a theoretical basis for the study of the neural mechanism of long-term memory.
The information stored in working memory can be transformed into the system of long-term memory due to the long-term potential (LTP) mechanism. The 8- burst stimulation (TBS) can be used as an LTP induction protocol in some experiments, but it has not been used in the models related to memory. In this work, an improved Camperi-Wang (C-W) model with the Ca2+ subsystem-induced bistability is adopted, and the TBS is simulated to be the initial stimuli of this model. With the evolution of the effects of the stimuli properties such as the cycle, the amplitude, and the duty ration on the memory mechanism of this model, the TBS can be adopted to activate working memory models and produce long-term memory. The study helps to propose the relationship between working memory and long-term memory, which lays a theoretical basis for the study of the neural mechanism of long-term memory.
参考文献:
正在载入数据...
