刺激
长时程增强
抑制性突触后电位
神经科学
化学
突触可塑性
神经传递
可塑性
调制(音乐)
宽带
神经可塑性
峰值时间相关塑性
生物物理学
变质塑性
电生理学
突触
突触增强
作者
Lei Dong,Yuxin Liu,J. Wang,Qiwen Liu,Yu Zheng Zheng
标识
DOI:10.1080/09553002.2025.2608751
摘要
Wide-band mixed-frequency μMS has frequency-dependent modulation of LTP, high-frequency mixed-frequency stimulation has an enhancement effect, low-frequency mixed-frequency stimulation has an inhibitory effect, while high and low-frequency mixed-frequency stimulation reflect high-frequency enhancement characteristics and improve the stability of LTP modulation, which provides an experimental basis for cross-frequency and multi-scale neuromodulation.
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