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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Neuromodulation Effects of Ultrasound Stimulation Under Different Parameters on Mouse Motor Cortex
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Neuromodulation Effects of Ultrasound Stimulation Under Different Parameters on Mouse Motor Cortex

机译:小鼠电机皮层不同参数下超声刺激的神经调节作用

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Objective: Although low-intensity transcranial ultrasound stimulation (TUS) enhancessuppresses neural oscillations and causes electroencephalography changes in the motor cortex, researchers have not clearly determined the manner in which the relative power and entropy of neural oscillations in the motor cortex vary with ultrasonic parameters, such as ultrasound intensity, stimulation duration (SD), and duty cycle. Methods: In this paper, we use the transcranial ultrasound of different parameters to stimulate the mouse motor cortex, cause tail muscle contraction and movement, and simultaneously record local field potentials (LFPs) in the mouse motor cortex. The relative power and entropy of the LFPs under different ultrasonic parameters are analyzed. Results: The relative power of the theta [4-8 Hz] frequency bands decreases with an increase in spatial-peak and pulse-average intensity (I-sppa) at 0-0.5 s and 0.5-1 s; the relative power of the gamma [30-45 Hz] frequency bands increases with an increase in I-sppa at 0-0.5 s and 0.5-1 s; the relative power each of the gamma [30-45 Hz] and high gamma [55-100 Hz] frequency bands increases with an increase in the SD at 0-0.5 s and 0.5-1 s; the entropy values decrease with increases in I-sppa and SD at 0-0.5 s. Conclusion: The relative power and entropy of neural oscillations in the motor cortex can be modulated by TUS with different parameters, namely, ultrasound intensity and stimulation duration.
机译:目的:虽然低强度经颅超声刺激(TUS)增强了神经振荡,并导致电气皮层中的脑电图变化,研究人员尚未明确确定电机皮层中神经振荡的相对功率和熵随超声波参数而变化的方式,如超声强度,刺激持续时间(SD)和占空比。方法:在本文中,我们使用不同参数的经颅超声刺激小鼠电机皮质,导致尾部肌肉收缩和移动,并同时记录鼠标电机皮层中的局部场电位(LFP)。分析了不同超声参数下LFP的相对功率和熵。结果:θ[4-8Hz]频带的相对功率随着0-0.5秒和0.5-1秒的空间峰值和脉冲平均强度(I-SPPA)的增加而降低; γ[30-45Hz]频段的相对功率随着0-0.5秒和0.5-1秒的I-SPPA增加而增加;每个γ[30-45Hz]和高γ[55-100Hz]频带的相对功率随着0-0.5秒和0.5-1秒的增加而增加。熵值随着I-SPPA和SD的增加而降低0-0.5秒。结论:电动机皮层中神经振荡的相对功率和熵可以由具有不同参数的TUS调制,即超声强度和刺激持续时间。

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