Gungor Harun R, Akkaya Semih, Ok Nusret, Yorukoglu Aygun, Yorukoglu Cagdas, Kiter Esat, Oguz Emin O, Keskin Nazan, Mete Gulcin A
Orthopedics and Traumatology Department, Pamukkale University Medical Faculty, Denizli 20070, Turkey.
Pathology Department, Servergazi State Hospital, Denizli 20100, Turkey.
Int J Environ Res Public Health. 2015 Jul 30;12(8):8919-32. doi: 10.3390/ijerph120808919.
Technicians often receive chronic magnetic exposures from magnetic resonance imaging (MRI) devices, mainly due to static magnetic fields (SMFs). Here, we ascertain the biological effects of chronic exposure to SMFs from MRI devices on the bone quality using rats exposed to SMFs in MRI examining rooms. Eighteen Wistar albino male rats were randomly assigned to SMF exposure (A), sham (B), and control (C) groups. Group A rats were positioned within 50 centimeters of the bore of the magnet of 1.5 T MRI machine during the nighttime for 8 weeks. We collected blood samples for biochemical analysis, and bone tissue samples for electron microscopic and histological analysis. The mean vitamin D level in Group A was lower than in the other groups (p = 0.002). The mean cortical thickness, the mean trabecular wall thickness, and number of trabeculae per 1 mm2 were significantly lower in Group A (p = 0.003). TUNEL assay revealed that apoptosis of osteocytes were significantly greater in Group A than the other groups (p = 0.005). The effect of SMFs in chronic exposure is related to movement within the magnetic field that induces low-frequency fields within the tissues. These fields can exceed the exposure limits necessary to deteriorate bone microstructure and vitamin D metabolism.
技术人员经常受到磁共振成像(MRI)设备产生的慢性磁暴露,主要是由于静磁场(SMF)。在此,我们使用在MRI检查室中暴露于SMF的大鼠,确定MRI设备产生的慢性SMF暴露对骨质量的生物学影响。18只Wistar白化雄性大鼠被随机分为SMF暴露组(A)、假手术组(B)和对照组(C)。A组大鼠在夜间被放置在1.5T MRI机器磁体孔50厘米范围内,持续8周。我们采集血样进行生化分析,采集骨组织样本进行电子显微镜和组织学分析。A组的平均维生素D水平低于其他组(p = 0.002)。A组的平均皮质厚度、平均小梁壁厚度和每平方毫米小梁数量显著低于其他组(p = 0.003)。TUNEL检测显示,A组骨细胞的凋亡明显高于其他组(p = 0.005)。慢性暴露中SMF的影响与磁场内的运动有关,这种运动在组织内诱导低频场。这些场可能超过使骨微结构和维生素D代谢恶化所需的暴露限值。