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Non-linear cortico-cortical interactions modulated by cholinergic afferences from the rat basal forebrain

机译:大鼠基底前脑的胆碱能干扰调节的非线性皮层相互作用

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In the adult rat most of basal forebrain cholinergic neurons (BFCN) express the low-affinity p75 nerve growth factor receptor (NGFr). The immunotoxin 192 IgG-saporin (SAP) provokes a selective loss of NGFr-positive BFCN, somewhat similar to the loss of integrity of BFCN associated with human senile dementia of Alzheimer's type, whereas NGF exerts a trophic action on BFCN. Cortico-cortical interactions are modulated by cholinergic projections of BFCN and it is proposed that alterations of these projections by SAP and by NGF produce opposite effects. This hypothesis was tested by recording multiple local field potentials (LFPs) in the rat temporal cortex and applying bispectral analysis to measure phase-coupled frequencies, somewhat analogous to frequencies of resonance. Choline acetyltransferase (ChAT) activity was measured in the septal area in order to assess the effects of the treatments. NGF-treatment increased ChAT activity by 45% and frequencies of non-linear coupling were shifted towards frequencies higher than 70 Hz, thus suggesting the presence of increased functional interactions in the short range. By contrast, SAP provoked a decrease of nearly 40% in ChAT activity and an increase of phase-coupling in the low frequencies (< 50 Hz), being interpreted as a decreased functional cortico-cortical interaction. Bispectral analysis revealed features of the effect of BFCN on cortical activity that could not be observed by other means and offers as a valuable tool of study that could be extended to the EEG of Alzheimer's patients. (C) 2000 Elsevier Science Ireland Ltd. All rights reserved. [References: 43]
机译:在成年大鼠中,大多数基底前脑胆碱能神经元(BFCN)表达低亲和力p75神经生长因子受体(NGFr)。免疫毒素192 IgG-saporin(SAP)会导致NGFr阳性BFCN的选择性丧失,这与与阿尔茨海默氏型老年性痴呆有关的BFCN完整性丧失有些相似,而NGF对BFCN发挥营养作用。 BFCN的胆碱能投射调节皮质-皮质相互作用,有人提出,SAP和NGF对这些投射的改变会产生相反的作用。通过在大鼠颞皮质中记录多个局部场电势(LFP)并应用双频谱分析来测量相位耦合频率(有点类似于共振频率)来测试该假设。在隔垫区域测量胆碱乙酰基转移酶(ChAT)活性,以评估治疗效果。 NGF处理使ChAT活性提高了45%,非线性耦合频率朝着高于70 Hz的频率移动,因此表明在短距离内存在增强的功能相互作用。相比之下,SAP激发了ChAT活性降低了近40%,并且在低频(<50 Hz)中增加了相位耦合,这被认为是功能性皮质-皮质相互作用的降低。双谱分析揭示了BFCN对皮层活动的影响的特征,其他方法无法观察到,并提供了有价值的研究工具,可以扩展到阿尔茨海默氏病患者的脑电图。 (C)2000 Elsevier Science Ireland Ltd.保留所有权利。 [参考:43]

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