期刊文献+

脉冲电磁场对糖尿病大鼠足底血流灌注量的影响

Effects of Pulsed Electromagnetic Fields on Blood Perfusion of Plantar in Diabetic Rats
暂未订购
导出
摘要 目的:研究脉冲电磁场对糖尿病大鼠足底血流灌注量的影响。方法:成年SD大鼠随机分为3组(8只/组):正常组(正常成年非糖尿病大鼠)、模型组(糖尿病大鼠,不施加脉冲电磁场照射)以及实验组(糖尿病大鼠,施加脉冲电磁场辐照8 h/d,6周),以足底血流灌注量为检测指标对各组糖尿病大鼠的微循环进行评估。结果:经过6周的脉冲电磁场照射,发现脉冲电磁场能够显著抑制糖尿病引起的大鼠足底血流灌注量的降低。结论:脉冲电磁场照射能够缓解糖尿病导致的大鼠足底血流灌注量的下降,并且脉冲电磁场对相关疾病导致的微循环障碍可能有积极的治疗作用,但其确切机理还有待更多的实验来加以研究证实。 Objective To investigate the effects of pulsed electromagnetic fields (PEMFs) on blood perfusion of foot in diabetic rats.Methods Adult male Sprague-Dawley rats were randomly divided into three groups (eight in each group):Normal (the non-diabetic control group),Experiment (diabetes mellitus with PEMFs exposure group which were subjected to daily 8-h PEMFs exposure for 6 weeks) and Model (diabetes mellitus with sham PEMFs exposure group).The blood perfusions of plantar in all groups were investigated by using Laser Doppler Flowmetry.Results After 6-week experimental exposure,it's found that PEMFs stimulation attenuated the decrement of blood perfusion of plantar observed in diabetic rats.Conclusion The current study demonstrates that exposure with PEMFs might prevent the decrement of blood perfusion of plantar observed in diabetic rats.It is suggested that PEMFs would play a positive role in treatment of microcirculation disturbance induced by relevant disease.However,its specific mechanism needs to be elucidated by more studies.
出处 《医疗卫生装备》 CAS 2014年第5期15-17,共3页 Chinese Medical Equipment Journal
基金 国家自然科学基金(31000381)
关键词 脉冲电磁场 糖尿病 血流灌注 pulsed electromagnetic field diabetes mellitus blood perfusion
  • 相关文献

参考文献11

  • 1Bassett C A. Fundamental and practical aspects of therapeutic uses of pulsed electromagnetic fields (PEMFs)[J]. Critical Reviews in Biomedical Engineering, 1989,17 (5) :451-529.
  • 2Detlavs I, Dombrovska L, Klavinsh I,et al. Experimental study of the effect of electromagnetic fields' in the early stage of wound healing[J]. Bioelectrochemistry and Bioenergetics, 1994,35 (1-2) : 13-17.
  • 3Jing D, Shen G, Huang J,et ol. Circadian rhythm affects the preven- tive role of pulsed electromagnetic fields on ovariectomy-induced osteoporosis in rats[J]. Bone, 2010,46 (2) :487-495.
  • 4Jing D, Cai J, Shen G, et ol. The preventive effects of pulsed eleetro- magnetic fields on diabetic bone loss in streptozotoein-treated rats[J]. Osteoporosis International, 2011,22 (6) : 1 885-1 895.
  • 5Luo E ,Shen G,Xie K,et ol. Alimentary hyperlipemia of rabbits is affected by exposure to low-intensity pulsed magnetic fields[J]. Bio- electromagnetics, 2007,28 ( 8 ) : 608-614.
  • 6Mert T, Gunay I,Ocal I. Neurobiological effects of pulsed magnetic field on diabetes-induced neuropathy[J]. Bioelectromagneties, 2010, 31(1):39-47.
  • 7雷涛,申广浩,姜茂刚,谢康宁,闫一力,罗二平.小波变换在人体血流灌注信号分析中的应用[J].中国医学物理学杂志,2012,29(6):3784-3787. 被引量:3
  • 8Bassett C A, Pilla A A, Pawluk R J. A non-operative salvage of sur- gically-resistant pseudarthroses and non-unions by pulsing electro- magnetic fields:A preliminary report[J]. Clinical Orthopaedics and Related Research, 1977,124 : 128-143.
  • 9Yang Y,Li L,Wang Y G,et al. Acute neuroprotective effects of ex- tremely low-frequency electromagnetic fields after traumatic brain injury in rats[J]. Neuroscience Letters, 2012,516 ( 1 ) : 15-20.
  • 10Miura M, Okada J. Non-thermal vasodilatation by radio frequency burst-type electromagnetic field radiation in the frog[J]. The Journal of Physiology, 1991,435 : 257-273.

二级参考文献12

  • 1Daubechies I.关于小波的十次演讲[Z].1992.
  • 2Bra?i? M, Stefanovska A.基于小波的人体血流动态性的分[J].数学生物学杂志,1998,60(5):919-935.
  • 3Ushiyama A, Masuda H, Hirota S,等.小鼠全身照射于极低频电磁场对白细胞与内皮细胞相互作用的亚慢性影响[J].活体研究杂志,2004,18(4):425-432.
  • 4Smith T L, Wong-Gibbons D, Maultsby J.脉冲电磁场对微循环的影响[J].骨科研究杂志,2004,22(1):80-84.
  • 5Brix G, Strieth S, Strelczyk D, 等.静磁场影响条纹肌中红细胞的流动[J].微循环杂志,2008,15(1):15-26.
  • 6Xu S, Okano H, Ohkubo C.麻醉后的小鼠全身分别照射于静磁场和50-Hz的电磁场中的短时效应[J].生物电磁学,2001,53(1):127-135.
  • 7Schuhfried O, Vacariu G,Rochowanski H,等.低剂量和高剂量的低频电磁场对健康受试者的微循环和皮肤温度的影响[J].国际运动医学杂志,2005,26(10):886-890.
  • 8Mcnamee D A, Corbacio M, Weller J K,等.人体微循环在200-uT,60-Hz的电磁场照射中的反应[J].国际职业环境健康杂志,2011,84(3):267-277.
  • 9Mayrovitz H N, Groseclose E E, King D. 85 mT的恒定磁场对与呼吸相关的激光多普勒测得的血流没有影响[J].生物电磁学杂志,2005,26(4):331-335.
  • 10心率变异性的测量标准,生理机制以及临床应用[J].血液循环杂志,1996,93(5):1043-1065.

共引文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部