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首页> 外文期刊>Clinical neurophysiology >O131 Non-invasive, multimodal analysis of cortical activity, blood volume and neurovascular coupling in infantile spasms using EEG-FNIRS monitoring
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O131 Non-invasive, multimodal analysis of cortical activity, blood volume and neurovascular coupling in infantile spasms using EEG-FNIRS monitoring

机译:o131使用EEG-FNIR监测的婴儿痉挛中皮质活动,血液体积和神经血管偶联的无侵入性,多峰分析

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Objective Although infantile spasms can be caused by a variety of etiologies, the clinical features are stereotypical. The neuronal and vascular mechanisms that contribute to the emergence of infantile spasms are not well understood. Methods We performed a multimodal study by simultaneously recording electroencephalogram and functional Near-infrared spectroscopy in an intentionally heterogeneous population of six children with spasms in series. Results Regardless of the etiology, spasms were accompanied by two phases of hemodynamic changes; an initial change in the cerebral blood volume (simultaneously with each spasm) followed by a neurovascular coupling in all children except for the one with a large porencephalic cyst. Discussion Changes in cerebral blood volume, like the neurovascular coupling, occurred over frontal areas in all patients regardless of any brain damage suggesting a diffuse hemodynamic cortical response. Significance The simultaneous motor activation and changes in cerebral blood volume might result from the involvement of the brainstem. The inconstant neurovascular coupling phase suggests a diffuse activation of the brain likely resulting too from the brainstem involvement that might trigger diffuse changes in cortical excitability. ]]>
机译:客观虽然婴儿痉挛可能是由各种病因引起的,但临床特征是陈规定型的。有助于出现婴儿痉挛的神经元和血管机制尚不清楚。方法我们通过同时记录脑电图和功能近红外光谱,在有意的异质群体中进行六个儿童串联痉挛的六种儿童进行多模态研究。结果无论病因如何,痉挛伴有血液动力学变化的两个阶段;除了具有大姿态囊肿之外的所有儿童中,脑血量(同时与每个痉挛同时)的初始变化。讨论脑血容量的变化,如神经血管偶联,在所有患者的前部区域发生,无论是否有弥漫性血液动力学皮质反应。意义同时电机激活和脑血量的变化可能由脑干的累积引起。不动态的神经血管偶联阶段表明,可能导致的脑干受累的大脑的漫反射激活,这可能引发皮质兴奋性的弥漫性变化。 ]]>

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