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首页> 外文期刊>International Journal of Neuroscience >MAgnetic stimulation of the brain increase Na+, K+-ATPase activity decreased by injection of AlCl3 into nucleus basalis magnocellularis of rats.
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MAgnetic stimulation of the brain increase Na+, K+-ATPase activity decreased by injection of AlCl3 into nucleus basalis magnocellularis of rats.

机译:大脑的运动刺激通过将AlCl3注射到大鼠大细胞基底核中而降低了Na +,K + -ATPase活性。

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摘要

This article reports here on the influence of the static magnetic fields (MFs), locally applied to the brain area, on Na, K-ATPase activity in the rat with lesioned nucleus basalis magnocellularis (NBM) by intracerebral injection of 5 microl, 1% AlCl3 into the nucleus. Two AKMA micromagnets (M) flux density of 60 miliTesla, 5 mm in diameter, were bilaterally implanted with "N" polarity facing down to the cranial bones in the vicinity of the pineal gland (PG), immediately after the lesioning of NBM, during the same operation procedure. Ten days after the lesions of NBM, Na, K-ATPase activity on the erythrocyte membranes in the peripheral blood, measured spectrophotometrically, was completely inhibited. Magnetic stimulation (60 mT) of the brain during the 10 days significantly increased Na, K-ATPase activity on the erythrocyte membranes of rats with lesioned NBM. This results suggests that altered by lesions Na, K-ATPase activity in an experimental model of Alzheimer's disease might be ameliorated by magnetic stimulation of the brain.
机译:本文在这里报道了通过脑内注射5微升,1%的脑内局部损伤的静态磁场(MFs)对病变脑基底膜巨细胞细胞瘤(NBM)大鼠的Na,K-ATPase活性的影响AlCl3进入原子核。在NBM病变后不久,在松果体(PG)附近,将两个直径为5 mm的AKMA微磁铁(M)的通量密度为5 mm,直径为5 mm的双侧向着松果体(PG)附近的颅骨植入“ N”极性。相同的操作步骤。用分光光度法测得的NBM损伤十天后,外周血中红细胞膜上的Na,K-ATPase活性被完全抑制。在10天之内,大脑的电磁刺激(60 mT)显着增加了受损NBM大鼠的红细胞膜上的Na,K-ATPase活性。该结果表明,在大脑阿尔茨海默氏病的实验模型中,由于损伤Na,K-ATPase活性的改变,可以通过对大脑的磁刺激来改善。

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