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首页> 外文期刊>Archives of dermatological research. >Macroscopic and histological effects of magnetic field exposition in the process of tissue reparation in Wistar rats.
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Macroscopic and histological effects of magnetic field exposition in the process of tissue reparation in Wistar rats.

机译:Wistar大鼠组织修复过程中磁场暴露的宏观和组织学影响。

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摘要

Exposing body tissue, in vivo, to a magnetic field promotes metabolic alterations in the cell membrane's permeability and in the apoptosis phenomenon. This aim of the study was to investigate magnetic field interactions in the process of tissue repair in rats. Twenty-four male Wistar rats, weighing 200-350 g, were assigned to one of the three different groups: Control (without exposure to the magnetic field), South Pole (with exposure to the South magnetic field), and North Pole (with exposure to the north magnetic field). The intensity of the magnetic field used was 1,600 G. All the animals were anesthetized and immobilized on a surgical board in order to receive circular wounds. The size of the wounds was measured by a milimetric paquimeter. For the histological study, the tissues were fixed in paraffin and colored with hematoxylin and eosin. Wound size data were submitted to one-way analysis of variance (ANOVA) and to the test of Student-Newman-Keuls when appropriated. The results of day 5 (F (2,23):F (3,84); P < 0.05), day 10 (F (2,23):F (8,89); P < 0.05), and day 15 (F (2,23):F (7,88); P < 0.05) revealed a significant reduction between the size of the wounds of both North and South groups when compared to Control group. Our data suggest that chronic exposure to a magnetic field of 1,600 G can accelerate the speed of tissue repair in rats.
机译:在体内将人体组织暴露于磁场中会促进细胞膜通透性和凋亡现象中新陈代谢的改变。该研究的目的是研究大鼠组织修复过程中的磁场相互作用。将二十四只体重200-350 g的Wistar大鼠分为三组之一:对照组(不暴露于磁场),南极(暴露于南磁场)和北极(不暴露于磁场)。暴露于北磁场)。所使用的磁场强度为1600G。将所有动物麻醉并固定在手术板上以接受圆形伤口。伤口的大小是通过测速计测量的。为了进行组织学研究,将组织固定在石蜡中,并用苏木精和曙红染色。适当时,将伤口大小数据提交给方差的单向分析(ANOVA),并提交给Student-Newman-Keuls测试。第5天(F(2,23):F(3,84); P <0.05),第10天(F(2,23):F(8,89); P <0.05)和第15天的结果(F(2,23):F(7,88); P <0.05)显示,与对照组相比,南北两组伤口的大小明显减少。我们的数据表明,长期暴露于1,600 G磁场中可以加速大鼠组织修复的速度。

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