Huang Lu, Wang Zhaoxiang, Feng Zhouyan
Key Laboratory of Biomedical Engineering of Ministry of Education, College of Biomedical Engineering and Instrument Science, Zhejiang University, Hangzhou 310027, P.R.China.
Key Laboratory of Biomedical Engineering of Ministry of Education, College of Biomedical Engineering and Instrument Science, Zhejiang University, Hangzhou 310027,
Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2019 Apr 25;36(2):177-182. doi: 10.7507/1001-5515.201805016.
Deep brain stimulation (DBS), which usually utilizes high frequency stimulation (HFS) of electrical pulses, is effective for treating many brain disorders in clinic. Studying the dynamic response of downstream neurons to HFS and its time relationship with stimulus pulses can reveal important mechanisms of DBS and advance the development of new stimulation modes (e.g., closed-loop DBS). To exhibit the dynamic neuronal firing and its relationship with stimuli, we designed a two-dimensional raster plot to visualize neuronal activity during HFS (especially in the initial stage of HFS). Additionally, the influence of plot resolution on the visualization effect was investigated. The method was then validated by investigating the neuronal responses to the axonal HFS in the hippocampal CA1 region of rats. Results show that the new design of raster plot is able to illustrate the dynamics of indexes (such as phase-locked relationship and latency) of single unit activity (i.e., spikes) during periodic pulse stimulations. Furthermore, the plots can intuitively show changes of neuronal firing from the baseline before stimulation to the onset dynamics during stimulation, as well as other information including the silent period of spikes immediately following the end of HFS. In addition, by adjusting resolution, the raster plot can be adapted to a large range of firing rates for clear illustration of neuronal activity. The new raster plot can illustrate more information with a clearer image than a regular raster plot, and thereby provides a useful tool for studying neuronal behaviors during high-frequency stimulations in brain.
深部脑刺激(DBS)通常利用电脉冲的高频刺激(HFS),在临床上对治疗多种脑部疾病有效。研究下游神经元对HFS的动态反应及其与刺激脉冲的时间关系,可以揭示DBS的重要机制,并推动新刺激模式(如闭环DBS)的发展。为了展示神经元的动态放电及其与刺激的关系,我们设计了一种二维光栅图,以可视化HFS期间(特别是在HFS的初始阶段)的神经元活动。此外,还研究了绘图分辨率对可视化效果的影响。然后通过研究大鼠海马CA1区对轴突HFS的神经元反应来验证该方法。结果表明,新设计的光栅图能够说明周期性脉冲刺激期间单个单元活动(即尖峰)的指标动态(如锁相关系和潜伏期)。此外,这些图可以直观地显示神经元放电从刺激前的基线到刺激期间起始动态的变化,以及其他信息,包括HFS结束后紧接着的尖峰静息期。此外,通过调整分辨率,光栅图可以适应大范围的放电率,以清晰地展示神经元活动。与常规光栅图相比,新的光栅图能够以更清晰的图像展示更多信息,从而为研究大脑高频刺激期间的神经元行为提供了一个有用的工具。