脉冲宽度调制
振幅
电场
脉搏(音乐)
干扰(通信)
局部场电位
波形
刺激
物理
膜电位
材料科学
神经科学
电压
光学
计算机科学
生物
探测器
电信
频道(广播)
量子力学
作者
Charlotte Luff,Patrycja Dzialecka,Emma Acerbo,Adam Williamson,Nir Grossman
标识
DOI:10.1016/j.brs.2023.12.010
摘要
BackgroundElectrical stimulation involving temporal interference of two different kHz frequency sinusoidal electric fields (temporal interference (TI)) enables non-invasive deep brain stimulation by creating an electric field that is amplitude modulated at the slow difference frequency within the neural range at the target brain region.ObjectiveHere, we investigate temporal interference neural stimulation using square, rather sinusoidal, electric fields that create an electric field that is pulse-width, but not amplitude, modulated at the difference frequency (pulse-width modulated temporal interference, (PWM-TI)).Methods/Results: We show, using ex-vivo single-cell recordings and in-vivo calcium imaging, that PWM-TI effectively stimulates neural activity at the difference frequency at a similar efficiency to traditional TI. We then demonstrate, using computational modelling, that the PWM stimulation waveform induces amplitude-modulated membrane potential depolarization due to the membrane's intrinsic low-pass filtering property.ConclusionsPWM-TI can effectively drive neural activity at the difference frequency. The PWM-TI mechanism involves converting an amplitude-fixed PWM field to an amplitude-modulated membrane potential via the low-pass filtering of the passive neural membrane. Unveiling the biophysics underpinning the neural response to complex electric fields may facilitate the development of new brain stimulation strategies with improved precision and efficiency.
科研通智能强力驱动
Strongly Powered by AbleSci AI