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长期暴露于持续的900兆赫电磁场会破坏成年雄性幼鼠的小脑形态。

Long-term exposure to a continuous 900 MHz electromagnetic field disrupts cerebellar morphology in young adult male rats.

作者信息

Aslan A, İkinci A, Baş O, Sönmez O F, Kaya H, Odacı E

机构信息

a Department of Physiology , Faculty of Medicine, Ordu University , Ordu.

b Department of Histology and Embryology, Faculty of Medicine , Karadeniz Technical University , Trabzon.

出版信息

Biotech Histochem. 2017;92(5):324-330. doi: 10.1080/10520295.2017.1310295. Epub 2017 May 16.

Abstract

The pathological effects of exposure to an electromagnetic field (EMF) during childhood and adolescence may be greater than those from exposure during adulthood. We investigated possible pathological changes in the cerebellum of adolescent rats exposed to 900 MHz EMF daily for 25 days. We used three groups of six 21-day-old male rats as follows: unexposed control group (Non-EG), sham-exposed group (Sham-EG) and an EMF-exposed group (EMF-EG). EMF-EG rats were exposed to EMF in an EMF cage for 1 h daily from postnatal days 21 through 46. Sham-EG rats were placed in the EMF cage for 1 h daily, but were not subjected to EMF. No procedures were performed on the Non-EG rats. The cerebellums of all animals were removed on postnatal day 47, sectioned and stained with cresyl violet for histopathological and stereological analyses. We found significantly fewer Purkinje cells in the EMF-EG group than in the Non-EG and Sham-EG groups. Histopathological evaluation revealed alteration of normal Purkinje cell arrangement and pathological changes including intense staining of neuron cytoplasm in the EMF-EG group. We found that exposure to continuous 900 MHz EMF for 1 h/day during adolescence can disrupt cerebellar morphology and reduce the number of Purkinje cells in adolescent rats.

摘要

儿童期和青春期接触电磁场(EMF)的病理影响可能大于成年期接触的影响。我们研究了每天暴露于900 MHz电磁场25天的青春期大鼠小脑可能出现的病理变化。我们使用三组,每组六只21日龄雄性大鼠,如下:未暴露对照组(非暴露组)、假暴露组(假暴露组)和电磁场暴露组(电磁场暴露组)。电磁场暴露组大鼠从出生后第21天到第46天每天在电磁场笼中暴露于电磁场1小时。假暴露组大鼠每天在电磁场笼中放置1小时,但未暴露于电磁场。未对非暴露组大鼠进行任何操作。在出生后第47天取出所有动物的小脑,切片并用甲酚紫染色进行组织病理学和体视学分析。我们发现,电磁场暴露组的浦肯野细胞明显少于非暴露组和假暴露组。组织病理学评估显示,电磁场暴露组正常浦肯野细胞排列改变,出现病理变化,包括神经元细胞质强烈染色。我们发现,青春期每天连续1小时暴露于900 MHz电磁场会破坏青春期大鼠的小脑形态并减少浦肯野细胞数量。

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