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Subcutaneous Arteriolar Vasomotion Changes During and After ELF-EMF Exposure in Mice in Vivo

机译:小鼠ELF-EMF暴露期间和之后皮下小动脉血管运动变化

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Biological effects of extremely low-frequency electromagnetic fields (ELF-EMF) on microcirculation were investigated in vivo by monitoring arteriole diameters in conscious mice. Measurements of blood vessel diameter were monitored 33 min non-stop before during and after exposure with ELF-EMF and every 389 ms blood vessel diameter were calculated. Using a dorsal skinfold chamber (DSC), and following caudal vein injection of FITC-dextran 250 kDa, the microvasculature (initial arteriole diameter of 45-80 μm), was examined by intravital microscopy and video images were recorded for a total time of 33 min. Arteriole diameter was continuously measured by on-line analysis using a High-speed Digital Machine Vision System CV-2100, using an edge-gap detection algorithm. Since vessel diameters exhibit rhythmic variation expressed by vasomotion, for estimation of microcirculatory activity we used both raw data for frequency analysis of vasomotion (measured frequencies of vasomotion were in the range 0.008/0.1 Hz) and evaluate mean blood vessel diameter for each 1 min period of time, and make a comparison between Pre, Exposure/Sham exposure and Post exposure periods, with the aim to evaluate possible changes in mean blood vessel diameter as a result of ELF-EMF action. During EMF exposure and post-exposure periods, arteriole diameters increased significantly compared with the pre-exposure period, and the changes were larger during post-exposure. In contrast to sham exposure, vasodilatation of the microvasculature was significantly greater during exposure and post-exposure to 16 Hz EMF. These findings suggest that ELF-EMF may have potential therapeutic use benefit for treating vascular disorders.
机译:通过监测清醒小鼠的小动脉直径,在体内研究了极低频电磁场(ELF-EMF)对微循环的生物学效应。在暴露于ELF-EMF之前和之后33分钟不间断地监测血管直径的测量,并计算每389 ms的血管直径。使用背皮折叠室(DSC),并在尾静脉注射FITC-葡聚糖250 kDa后,通过活体显微镜检查微脉管系统(初始小动脉直径为45-80μm),并记录了总共33的视频图像分钟使用边缘间隙检测算法,使用高速数字机器视觉系统CV-2100通过在线分析连续测量小动脉直径。由于血管直径表现出由血管运动表达的节律变化,因此,为了评估微循环活动,我们将原始数据用于血管运动的频率分析(测得的血管运动频率在0.008 / 0.1 Hz范围内)并评估每1分钟的平均血管直径时间,并在暴露前,暴露/假接触和暴露后时间之间进行比较,以评估由于ELF-EMF作用而导致的平均血管直径的可能变化。在EMF暴露期间和暴露后阶段,与暴露前阶段相比,小动脉直径显着增加,并且在暴露后期间变化较大。与假暴露相反,在暴露期间以及暴露于16 Hz EMF后,微脉管系统的血管扩张明显更大。这些发现表明,ELF-EMF可能具有治疗血管疾病的潜在治疗用途。

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