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体内大鼠海马持续刺激期间脉冲参数的微小差异引起神经元群体放电的分岔。

Bifurcations in the Firing of Neuronal Population Caused by a Small Difference in Pulse Parameters During Sustained Stimulations in Rat Hippocampus in Vivo.

出版信息

IEEE Trans Biomed Eng. 2022 Sep;69(9):2893-2904. doi: 10.1109/TBME.2022.3157342. Epub 2022 Aug 19.

Abstract

OBJECTIVE

The bifurcation of neuronal firing is one of important nonlinear phenomena in the nervous system and is characterized by a significant change in the rate or temporal pattern of neuronal firing on responding to a small disturbance from external inputs. Previous studies have reported firing bifurcations for individual neurons, not for a population of neurons. We hypothesized that the integrated firing of a neuronal population could also show a bifurcation behavior that should be important in certain situations such as deep brain stimulations. The hypothesis was verified by experiments of rat hippocampus in vivo.

METHODS

Stimulation sequences of paired-pulses with two different inter-pulse-intervals (IPIs) or with two different pulse intensities were applied on the alveus of hippocampal CA1 region in anaesthetized rats. The amplitude and area of antidromic population spike (APS) were used as indices to evaluate the differences in the responses of neuronal population to the different pulses in stimulations.

RESULTS

During sustained paired-pulse stimulations with a high mean pulse frequency such as ∼130 Hz, a small difference of only a few percent in the two IPIs or in the two intensities was able to generate a sequence of evoked APSs with a substantial bifurcation in their amplitudes and areas.

CONCLUSION

Small differences in the excitatory inputs can cause nonlinearly enlarged differences in the induced firing of neuronal populations.

SIGNIFICANCE

The novel dynamics and bifurcation of neuronal responses to electrical stimulations provide important clues for developing new paradigms to extend neural stimulations to treat more diseases.

摘要

目的

神经元发放的分岔是神经系统中的一种重要非线性现象,其特征是在对外来输入的小干扰做出响应时,神经元发放的速率或时间模式发生显著变化。先前的研究报告了单个神经元的发放分岔,而不是神经元群体的发放分岔。我们假设神经元群体的整合发放也可能表现出分岔行为,这种行为在某些情况下(如深部脑刺激)应该很重要。该假设通过大鼠海马体在体实验得到了验证。

方法

在麻醉大鼠的海马 CA1 区的齿状回施加具有两个不同的脉冲间隔(IPIs)或两个不同脉冲强度的成对脉冲刺激序列。用逆行群体锋电位(APS)的幅度和面积作为指标,评估神经元群体对刺激中不同脉冲的反应差异。

结果

在持续的高平均脉冲频率(如约 130 Hz)的成对脉冲刺激下,两个 IPI 或两个强度之间仅相差几个百分点,就能产生一系列诱发 APS,其幅度和面积有很大的分岔。

结论

兴奋性输入的微小差异会导致神经元群体诱发发放的非线性放大差异。

意义

神经元对电刺激反应的新动力学和分岔为开发新的范式提供了重要线索,以扩展神经刺激来治疗更多疾病。

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