Sieroń-Stołtny Karolina, Teister Łukasz, Cieślar Grzegorz, Sieroń Dominik, Śliwinski Zbigniew, Kucharzewski Marek, Sieroń Aleksander
School of Health Sciences in Katowice, Department of Physical Medicine, Chair of Physiotherapy, Medical University of Silesia, Medyków Street 12, 40-752 Katowice, Poland.
Orthopaedics and Motor System Trauma Surgery Unit, Saint Joseph Hospital, Okrzei Street 27, 43-190 Mikołów, Poland.
Biomed Res Int. 2015;2015:896019. doi: 10.1155/2015/896019. Epub 2015 Feb 1.
The study was focused on the influence of electromagnetic field generated by mobile phone on the skeletal system of rats, assessed by measuring the macrometric parameters of bones, mechanical properties of long bones, calcium and phosphorus content in bones, and the concentration of osteogenesis (osteocalcin) and bone resorption (NTX, pyridinoline) markers in blood serum. The study was carried out on male rats divided into two groups: experimental group subjected to 28-day cycle of exposures in electromagnetic field of 900 MHz frequency generated by mobile phone and a control, sham-exposed one. The mobile phone-generated electromagnetic field did not influence the macrometric parameters of long bones and L4 vertebra, it altered mechanical properties of bones (stress and energy at maximum bending force, stress at fracture), it decreased the content of calcium in long bones and L4 vertebra, and it altered the concentration of osteogenesis and bone resorption markers in rats. On the basis of obtained results, it was concluded that electromagnetic field generated by 900 MHz mobile phone does not have a direct impact on macrometric parameters of bones; however, it alters the processes of bone mineralization and the intensity of bone turnover processes and thus influences the mechanical strength of bones.
该研究聚焦于手机产生的电磁场对大鼠骨骼系统的影响,通过测量骨骼的宏观参数、长骨的力学性能、骨骼中的钙和磷含量以及血清中骨生成(骨钙素)和骨吸收(NTX、吡啶啉)标志物的浓度来进行评估。该研究以雄性大鼠为对象,分为两组:实验组接受由手机产生的900 MHz频率电磁场为期28天的暴露周期,另一组为假暴露对照组。手机产生的电磁场未影响长骨和L4椎骨的宏观参数,但改变了骨骼的力学性能(最大弯曲力时的应力和能量、骨折时的应力),降低了长骨和L4椎骨中的钙含量,并改变了大鼠体内骨生成和骨吸收标志物的浓度。基于所得结果,得出结论:900 MHz手机产生的电磁场对骨骼的宏观参数没有直接影响;然而,它会改变骨矿化过程和骨转换过程的强度,从而影响骨骼的机械强度。