Theta节律、注意和经颅刺激法

N. Karatygin, I. Korobeinikova
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引用次数: 0

摘要

近年来,经颅刺激的无创方法在临床和研究活动中得到了广泛的应用。由于高空间和时间分辨率,这些方法可以在一个新的水平上探索重要认知功能背后的振荡过程。特别是,研究人员有机会通过这些方法影响提供注意力功能的节奏过程。顺便说一下,用节奏频率刺激不同的大脑区域似乎很有趣,因为在这个频率上的注意力振荡在被试的外部活动和神经元和神经群的振荡活动中都表现出来。目的:分析和总结利用经颅刺激方法识别theta-rhythm在注意过程中的作用的国内外研究。分析了有关节奏在注意过程组织中的意义的现代资料。考虑了不同模式的经颅刺激方法,这些方法允许发现theta-rhythm在神经组合振荡活动中的基本作用,这是注意机制的基础。本文认为,基于电磁感应原理的经颅磁刺激(TMS)方法具有良好的时间分辨率和足够好的空间分辨率,得到了广泛的应用。通常,经颅磁刺激是使用单脉冲、双脉冲或重复有节奏的刺激。在当前的综述中,特别关注的是脉冲刺激方案。目前的方案假设影响大脑的可塑性,并模拟了theta-gamma耦合的影响,即根据theta波相位改变gamma节律频率下的电位幅度。在TMS不同变体的应用过程中,采用了几种研究方法。因此,使用经颅磁刺激可能会破坏某些皮层区域的功能,也有可能在特定频率下增加特定区域的振荡活动,并在特定频率范围内增强或减少远端皮层区域的同步。这些方法可在受试者执行测试任务期间或在执行测试之前的一段时间内直接使用。许多研究表明,经颅刺激大脑皮层的某些区域有助于考生在记忆力和注意力测试中取得更好的成绩。这种效果在使用节奏频率刺激时最常观察到。记忆和注意功能的改善对于广泛的活动具有很高的现实意义。了解节律频率刺激的规律和机制将有助于建立刺激系统和方案,从而有效地长期改善这些功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Theta rhythm, attention and transcranial stimulation method
Noninvasive methods of transcranial stimulation in clinical and research activity have become widely applied for the last few years. Due to the high spatial and temporal resolution, these methods allow to explore oscillatory processes that underlie important cognitive functions on a new level. In particular, researchers got an opportunity to influence rhythmic processes, which provide function of attention by these methods. By the way, stimulation of different brain zones with theta-rhythm frequency appears to be interesting, as far as oscillations of attention on this frequency reveal itself both in external activity of subject and in oscillatory activity of neurons and neural ensembles. Aim – analysis and summarize of domestic and foreign researches with usage of transcranial stimulation method to identify role of theta-rhythm in attention processes. Analysis of modern data concerning significance of theta-rhythm in organization of attention processes was performed analyzed. Different modes of transcranial stimulation methods, that allow to discover fundamental role of theta-rhythm in oscillatory activity of neural assembles, which are the base for attention mechanisms were considered. The review noted that the method of transcranial magnetic stimulation (TMS), which is based on the principle of electromagnetic induction with potential excellent temporal and sufficiently decent spatial resolution, is extensively widely used. Usually, TMS is performed with usage single-pulse, paired-pulse, or repetitive rhythmic stimulation. In current review special attention is salaried to the theta burst stimulation protocol. It was suggested that current protocol hypothesizes to influence brain plasticity and simulates the effect of theta-gamma coupling, which is to change the amplitude of the potentials at the frequency of the gamma rhythm depending on the theta wave phase. During the applying of the TMS different variants, several research methodological approaches were applied. Thus, usage of TMS may disrupt functioning in certain cortex areas , also it is possible to increase the oscillatory activity of a particular region at a particular frequency and to enhance or decrease the synchronization of remote cortical areas in a certain frequency range. These approaches may be used directly during the execution of the test task by the subjects or in the period prior the test performing. Many researches show that transcranial stimulation of some zones of cortex contributes to the achievement of better results of examinee in tests on memory and attention. This effect is most often observed while usage of stimulation with theta-rhythm frequency. Improvement of memory and attention functions has high practical meaning for wide range of activity. Understanding of regularities and mechanisms of stimulation with theta-rhythm frequency would allow to create systems and protocols of stimulation, which would effectively improve these functions for the long period.
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