Microwave stimulation of active points and its effect on electrical activity of brain fields

T. Sulima, O. Sulima
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Abstract

Summing the obtained results, it can be stated that low intense microwave impact on active points results in continuous decrease of individual pain sensitivity. This is also proved by changes in brain systems of sensor control and visceral regulation. Observed changes of neurodynamics indicate development of inhibition in non-specific thalamocortical system that integrates individual perception of applied irritant. This corresponds to decrease of tonic influence of reticular formation on neocortex that is probably due to activation of endogenous neuropeptids localized in PG. Generalized increase of hypothalamus influence on neocortex fields provides a possibility to consider applied impact as a trigger factor in development of reaction of adaptation.
微波刺激脑活动点及其对脑电活动的影响
综上所述,低强度微波对活动点的影响导致个体疼痛敏感性持续下降。大脑传感器控制和内脏调节系统的变化也证明了这一点。观察到的神经动力学变化表明非特异性丘脑皮质系统抑制的发展,该系统整合了个体对应用刺激物的感知。这对应于网状结构对新皮层的强张性影响减弱,这可能是由于PG内源性神经肽的激活。下丘脑对新皮层场的影响普遍增加,这为将应用影响作为适应反应发展的触发因素提供了可能性。
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