严登俊,李 伟,王贵琴,等. 生物电磁学研究进展[J]. 电气电子教学学报,2007,29(3):11-26. YAN Dengjun, LI Wei, WANG Guiqin, et al . Progress in bio-electromagnetism research[J]. Journal of EEE, 2007, 29(3): 11-26.
[2]
李成祥,郭 飞,姚陈果,等. 裸鼠皮下人恶性黑色素瘤在纳秒脉冲电场下的凋亡机制[J]. 高电压技术,2013,39(4):890-895. LI Chengxiang, GUO Fei, YAO Chenguo, et al . Apoptotic mechanism of human melanoma on nude mouse in nanosecond pulsed electric field[J]. High Voltage Engineering, 2013, 39(4): 890-895.
[3]
郭 飞,姚陈果,章锡明,等. 高强度皮秒脉冲诱导Hela细胞生物电效应分析[J]. 高电压技术,2012,38(12):3381-3386. GUO Fei, YAO Chenguo, ZHANG Ximing, et al . Effects of intense picosecond pulsed electric field on Hela cells[J]. High Voltage Engineering, 2012, 38(12): 3381-3386.
[4]
李成祥,孙才新,姚陈果,等. 微秒脉冲电场对宫颈癌细胞黏附、侵袭和迁移能力的影响[J]. 高电压技术,2011,37(7):1781-1786. LI Chengxiang, SUN Caixin, YAO Chenguo, et al . Effects on cervical cancer cell migration, adhesion and invasion introduced by microsecond pulsed electric field[J]. High Voltage Engineering, 2011, 37(7): 1781-1786.
[5]
姚陈果,郭 飞,董守龙,等. 纳秒脉冲处理A375细胞裸鼠皮下移植瘤的疗效评估[J]. 高电压技术,2013,39(1):117-121. YAO Chenguo, GUO Fei, DONG Shoulong, et al . Treatment effect assessment of A375 cell subcutneous transplantable tumor in nude mouse with nanosecond pulsed electric fields[J]. High Voltage Engineering, 2013, 39(1): 117-121.
[6]
郭 飞,姚陈果,章锡明,等. 细胞骨架在ns脉冲诱导肿瘤细胞凋亡中的作用[J]. 高电压技术,2012,38(1):205-210. GUO Fei, YAO Chenguo, ZHANG Ximing, et al . Effect of cytoskeleton in tumor cell apoptosis induced by nanosecond pulsed electric field[J]. High Voltage Engineering, 2012, 38(1): 205-210.
[7]
姚陈果,郭 飞,王 建,等. 纳秒脉冲电场诱导肿瘤细胞凋亡的内质网信号通路研究[J]. 高电压技术,2012,38(5):1033-1038. YAO Chenguo, GUO Fei, WANG Jian, et al .Analysis of endoplasmic reticulum apoptotic signaling pathway of tumor cells induced by nanosecond pulsed electric field[J]. High Voltage Engineering, 2012, 38(5): 1033-1038.
[8]
郭 飞,姚陈果,王 建,等. 纳秒脉冲诱导SKOV3细胞凋亡的死亡受体途径分析[J]. 高电压技术,2012,38(5):1099-1105. GUO Fei, YAO Chenguo, WANG Jian, et al . Analysis on death receptor apoptotic pathway of SKOV3 cell induced by nanosecond pulsed electric field[J]. High Voltage Engineering, 2012, 38(5): 1099-1105.
[9]
姚陈果,郭 飞,王 建,等. 纳秒脉冲电场治疗裸鼠皮下人恶性黑色素瘤模型的长期效应研究[J]. 高电压技术,2012,38(12):3357-3362. YAO Chenguo, GUO Fei, WANG Jian, et al . Long-term effects of nanosecond pulsed electric field on nude mouse model with human melanoma[J]. High Voltage Engineering, 2012, 38(12): 3357-3362.
[10]
姚陈果,孙才新,米 彦,等. 细胞膜电穿孔及其肿瘤治疗的研究[J]. 高电压技术,2004,30(1):45-51. YAO Chenguo, SUN Caixin, MI Yan, et al . Study on electroporation of cell membrance and tumor treatment[J]. High Voltage Engineering, 2004, 30(1): 45-51.
[11]
陈 锐,姚陈果,李成祥,等. 不可逆电穿孔时组织电导率变化对电场和温度的影响[J]. 高电压技术,2014,40(12):3860-3866. CHEN Rui, YAO Chenguo, LI Chengxiang, et al . Influence of change in tissure electricall conductivity on electric field and temperature with irreversible electroporation[J]. High Voltage Engineering, 2014, 40(12): 3860-3866.
[12]
姚陈果,赵亚军,李成祥,等. 不可逆电穿孔微创消融肿瘤技术的研究进展[J]. 高电压技术,2014,40(12):3725-3737. YAO Chenguo, ZHAO Yajun, LI Chengxiang, et al . Recent advances in tissue minimally invasive ablation with irreversible electropotation[J]. High Voltage Engineering, 2014, 40(12): 3725-3737.
[13]
Schoenbach K H, Joshi R P. Ultrashort electrical pulses open a new gateway into biological cells[J]. Proceedings of the IEEE, 2004, 92(7): 1122-1137.
[14]
Nuceitelli R L, Pliquett U, Chen X, et al . Nanosecond pulsed electric fields cause melanomas to self-destruct[J]. Biochemical and Biophysical Research Communications, 2006, 343: 351-360.
[15]
龙再全,姚陈果,孙才新,等. ps电场脉冲无创治疗肿瘤的方法及天线设计[J]. 高电压技术,2010,36(5):1275-1280. LONG Zaiquan, YAO Chenguo, SUN Caixin, et al . Non-invasive treatment of tumors by using picosecond electric pulse and antenna design[J]. High Voltage Engineering, 2010, 36(5): 1275-1280.
[16]
景 达,佟世超,瞿明明,等. 脉冲电磁场协同多孔钛合金对兔长骨缺损修复效果的微观结构分析[J]. 高电压技术,2014,40(12):3793-3798. JING Da, TONG Shichao, QU Mingming, et al . Microstructural analysis on repairing effects of synergetic application of pulsed electromagnetic fields and porous titanium alloy on rabbit long bone defects[J]. High Voltage Engineering, 2014, 40(12): 3793-3798.
[17]
Sharrard W. A double blind trial of pulsed electromagnetic fields for delayed union of tibial fractures[J]. Journal of Bone and Joint Surg, 1990, 72(3): 347-355.
[18]
Nicla G. Effect of electromagnetic fields on bone mineral density and biochemical marker soft bone turnover in osteoporosis: a single-blind, randomized pilot study[J]. Current Therapeutic Research, 2001, 62(3): 187-193.
[19]
Cane V, Botti P, Soana S. Pulsed magnetic fields improve osteoblast activity during the repaire of an experimental osseous defect [J]. Journal of Orthopaedic Research, 1993, 11(5): 664-670.
[20]
龙 英. 电磁场对成骨样细胞UMR-106生物活性的影响[D]. 北京:清华大学,1999. LONG Ying. Effects on bioactivity of UMR-106 by electromagnetic fields[D]. Beijing, China: Tsinghua University, 1999.
[21]
朱旭峰. 钬激光系统工作原理及保养维护[J]. 医疗装备,2013,26(3):85-86. ZHU Xufeng. Systematic work principles and maintenance of holmium laser[J]. Chinese Journal of Medical Device, 2013, 26(3): 85-86.
[22]
孙颖浩,杨 波. 钬激光在泌尿外科中的应用[J]. 中华泌尿外科杂志,2005,26(1):62-64. SUN Yinghao, YANG Bo. Application of holmium laser on urology surgery[J]. Chinese Journal of Urolog, 2005, 26(1): 62-64.
[23]
郏自明,孙凡中,杨文祥,等. 大功率医用钬激光治疗机治疗犬膀胱结石的组织安全性评价[J]. 高电压技术,2014,40(12):3799-3807. JIA Ziming, SUN Fanzhong, YANG Wenxiang, et al . Organize safety evaluation of high power medical holmium laser therapeutic machine on canine bladder lithotripsy[J]. High Voltage Engineering, 2014, 40(12): 3799-3807.
[24]
管 军,朱文海,诸 伟,等. 钬激光治疗尿道狭窄合并膀胱结石22例分析[J]. 现代医学,2011,39(4):457-458. GUAN Jun, ZHU Wenhai, ZHU Wei, et al . Holmium laser for treatment of 22 cases of urethral stricture complicated with bladder stones[J]. Modern Medical Journal, 2011, 39(4): 457-458.
[25]
袁武雄,樊皓明,向 旻,等. 微创经皮肾镜下钬激光碎石术治疗上尿路结石242例[J]. 中国微创外科杂志,2007,7(5):468-469. YUAN Wuxiong, FAN Haoming, XIANG Min, et al . Treatment of upper urinary tract calculi with 242 cases of upper urinary tract calculi with minimally invasive percutaneous holmium laser lithotripsy[J]. Chinese Journal of Minimally Invasive Surgery, 2007, 7(5): 468-469.
[26]
王美玲,黄 平,梁媛媛,等. 正极性驻极体对胰岛素降糖效果影响的动物实验研究[J]. 高电压技术,2014,40(12):3816-3821. WANG Meiling, HUANG Ping, LIANG Yuanyuan, et al . Animal experimental studies of influence of positive electrets on hypoglycemic effect of insulin[J]. High Voltage Engineering, 2014, 40(12): 3816-3821.
[27]
梁媛媛,王美玲,崔黎丽,等. 驻极体产生的静电场与胰岛素的相互作用及其药效学初探[J]. 高电压技术,2014,40(6):1909-1915. LIANG Yuanyuan, WANG Meiling, CUI Lili, et al . Interaction between electrostatic field generated by electret with insulin and its pharmacodynamics exploration[J]. High Voltage Engineering, 2014, 40(6): 1909-1915.
[28]
Ciszak E, Beals J M, Frank B H, et al . Role of C-terminal B-chain residues in insulin assembly: the structure of hexameric LysB28ProB29-human insulin[J]. Structure, 1995, 3(6): 615-622.
[29]
Brang J, Ribel U, Hansen J F, et al . Monomeric insulins obtained by protein engineering and their medical implications[J]. Nature, 1988, 333(6174): 679-682.
[30]
Zoete V, Meuwly M, Karplus M. A comparison of the dynamic behavior of monomeric and dimeric insulin shows structural rearrangements in the active monomer[J]. Journal of Molecular Biology, 2004, 342(3): 913-929.
[31]
Wang X W, Li Y X, He X, et al . Effect of strong electric field on the conformational integrity of insulin[J]. Journal of Physical Chemistry, 2014, 118(39): 8942-8952.
[32]
郭 鑫,崔黎丽,梁媛媛,等. 负极性驻极体环孢菌素 A贴剂的压电性[J]. 高电压技术,2014,40(6):1916-1920. GUO Xin, CUI Lili, LIANG Yuanyuan, et al . Piezoelectric properties of negative electret cyclosporine A patch[J]. High Voltage Engineering, 2014, 40(6): 1916-1920.
[33]
包家立,王鑫磊,黄本康,等. 双源推挽功率技术和电磁隔离技术在经皮给药中的应用[J]. 高电压技术,2013,39(1):103-108. BAO Jiali, WANG Xinlei, HUANG Benkang, et al . Application of a dual-source push-pull power amplifier and electromagnetic isolation in transdermal drug delivery[J]. High Voltage Engineering, 2013, 39(1): 103-108.
[34]
Cui L L, Liu H Y, Ma L, et al . Enhanced transdermal delivery of cyclosporin A by electret and ethyloleate[J]. IEEE Transactions on Dielectrics and Electrical Insulation, 2012, 19(4): 1191-1194.
[35]
Jiang J, Liang Y Y, Dong F J, et al . Study of electret effect of rat skin by thermally stimulated discharge analysis[J]. Journal of Electrostatics, 2012, 70(3): 258-263.
[36]
Cui L L, Liang Y Y, Dong F J, et al . Structure of rat skin after application of electret characterized by DSC[J]. Journal of Physics, 2011,301(1): 12027-12030.
[37]
Cui L L, Liang Y, Dong F, et al . Thermal analysis for studies of electret states of rat skin[C]∥Proceedings of 14 th International Symposium on Electrets. Montpellier, France: [s.n.], 2011: 193-194.
[38]
Vecchia P,Ziegelberger G, Lin J , et al . Exposure to high frequency electromagetic fields, biologicla effects and health consequences (100 kHz~300 GHz)[R]. [S.l.]: International Commission on Non-ionizing Radiation Protection (ICNIRP), 2009.
[39]
韩毓旺,侯亚义,都有为. 生物电磁特性与电磁生物学效应的概述及最新进展[J]. 自然杂志,2010,32(6):02539608. HAN Yuwang, HOU Yayi, DU Youwei. Overview and development of characteristic of bio-electromagnetic fields[J]. Nature Magazine, 2010, 32(6): 02539608.
[40]
张 璐. 工频磁场对皮层神经元离子通道的影响[D]. 天津:天津大学,2009. ZHANG Lu. Effects of power frequency magnetic field on ion channels of cortical neurons[D]. Tianjin, China: Tianjin University, 2009.
[41]
刘童童. 工频磁场慢性暴露对大鼠神经行为的影响[J]. 北京大学学报:医学版,2010(3):351-355. LIU Tongtong. Effects of chonic exposure of power frequency magnetic field on neurobehavior in rats[J]. Journal of Peking University: Health Sciences, 2010(3): 351-355.
[42]
李 妮,邬 雄,裴春明. 工频电磁场长期曝露健康风险的预防性政策分析[J]. 高电压技术,2011,37(12):2930-2936. LI Ni, WU Xiong, PEI Chunming. Analysis of electromagnetic field of long-term exposure to health risk prevention policy[J]. High Voltage Engineering, 2011, 37(12): 2930-2936.
[43]
李 丽,张丹英,周永言,等. 500 kV变电站工频磁场对作业人员抗氧化水平的影响[J]. 高电压技术,2011,37(10):2607-2611. LI Li, ZHANG Danying, ZHOU Yongyan, et al . Effects of power frequency magnetic field exposure from 500 kV substation on antioxdiant defence systems of workers[J]. High Voltage Engineering, 2011, 37(10): 2607-2611.
[44]
赵新元,方文攀,林 晨,等. 极低频电磁场暴露与不良妊娠结局风险关联研究进展[J]. 高电压技术,2015,41(4):1383-1389. ZHAO Xinyuan, FANG Wenpan, LIN Chen, et al . Recent advances in association of exposure to extremely low frequency electromagnetic fields with adverse birth outcomes[J]. High Voltage Engineering, 2015, 41(4): 1383-1389.
[45]
王 琴,苏海峰,包家立,等. 高压输电线环境电磁场暴露健康效应的原初作用[J]. 高电压技术,2013,39(1):193-200. WANG Qin, SU Haifeng, BAO Jiali, et al . Primary reaction for the environmental electric and magnetic fields exposure around high voltage transmission line on health effects[J]. High Voltage Engineering, 2013, 39(1): 193-200.
[46]
王 顺,包家立,朱朝阳. 实时电磁场细胞暴露系统的研制[J]. 高电压技术,2015,41(4):1409-1416. WANG Shun, BAO Jiali, ZHU Chaoyang. Development of real-time electromagnetic field exposure system for cell[J]. High Voltage Engineering, 2015, 41(4): 1409-1416.
[47]
Pool R. Is there an EME-cancer connection [J]. Science, 1990, 249(Sep 7): 1096-1098.
[48]
Wertheimer N, Leeper E. Electrical wiring configuratioans and childhood ancer[J].American Journal of Epidemiology,1979, 109(3): 273-284.
[49]
Draper G, Vincent T, Kroll M, et al . Childhood cancer in relation to distance from high voltage power lines in England and Wales: a case-control study[J]. British Medical Journal, 2005, 330(7503): 1290-1294.
[50]
Federal-Provincial-Territorial Radiation Protection Committee-Canada. Response statement to the issue of power-frequency magnetic fields and childhood leukemia[R]. [S.l.]: Federal-Provincial-Territorial Radiation Protection Committee-Canada, 2005.
[51]
Sermage-Faure C, Demoury C, Rudant J, et al . Childhood leukaemia close to high-voltage power lines: the geocap study, 2002—2007[J]. British Journal of Cancer, 2013, 108(9): 1899-1906.
[52]
Slusky D A, Does M, Metayer C, et al . Potential role of selection bias in the association between childhood leukemia and residential magnetic fields exposure: a population-based assessment [J]. Cancer Epidemiology, 2014, 38(3): 307-313.
[53]
Bunch K J, Keegan T J, Swanson J, et al . Residential distance at birth from overhead high-voltage powerlines: childhood cancer risk in Britain 1962—2008 [J]. British Journal of Cancer, 2014, 110(5): 1402-1408.
[54]
Salvan A, Ranucci A, Lagorio S, et al . Childhood leukemia and 50 Hz magnetic fields: findings from the Italian SETIL case-control study [J]. International Journal of Environment Research Public Health, 2015, 12(2): 2184-2204.
[55]
IARC. IARC monographs on the evaluation of carcinogenic risk to humans: non-ionizing radiation, part 1: static and extremely low-frequency (ELF) electric and magnetic fields [R]. Lyon, France: IARC Press, 2002.
[56]
Jadidi M,Firoozabadi S M,Rashidy P A, et al . Acute exposureto a 50 Hz magnetic field impairs consolidation of spatial memory in rats[J]. Neurobiology of Learning and Memory, 2007, 88(4): 387-392.
[57]
Foroozandeh E, Ahadi H, Askari P, et al . Effects of single,brief exposure to an 8 mT electromagnetic field on avoidancelearning in male and female mice[J]. Psychology & Neuro-science, 2011, 4(1): 143-148.
[58]
Balassa T, Szemerszky R, Bdrdos G. Effect of short-term 50 Hz electromagnetic field exposure on the behavior of rats[J].Acta Physiologica Hungarica, 2009, 96(4): 437-448.
[59]
Szemerszkya R, Zelenab D, Barnab I, et al . Stress-related en-docrinological and psychopathological effects of short- and long-term 50 Hz electromagnetic field exposure in rats[J]. Brain Research Bulletin, 2010, 81(1): 92-99.
[60]
刘 肖,左红艳,王德文,等. 极低频电磁场暴露对大鼠认知功能和海马形态结构的影响[J]. 高电压技术,2013,39(1):156-162. LIU Xiao, ZUO Hongyan, WANG Dewen, et al . Effects of extremely low frequency electromagnetic fields exposture on cognitive function and hippocampal morphology of rats[J]. High Voltage Engineering, 2013, 39(1): 156-162.
[61]
Korenstein-Ilan A, Barbul A, Hasin P, et al . Terahertz radiation increases genomic instability in human lymphocytes[J]. Radiation Research, 2008, 170(2): 226-234.
[62]
Homenko A, Kapilevich B, Kornstein R. Effects of 100 GHz radiation on alkaline phosphatase activity and antigen-antibody interaction[J]. Bioelectromagnetics, 2009, 30(3): 167-175.
[63]
Alexandrov B S, Gelev V, Bishop A R, et al . DNA breathing dynamics in the presence of a terahertz field[J]. Physics Letters A, 2010,374(10):1214-1217.
[64]
徐灿华,董秀珍. 生物电阻抗断层成像技术及其临床研究进展[J]. 高电压技术,2014,40(12):3738-3745. XU Canhua, DONG Xiuzhen. Advancements in electrical impedance tomography and its clinical applications[J]. High Voltage Engineering, 2014, 40(12): 3738-3745.
[65]
吴 昭. 基于功能核磁共振成像技术的阿尔茨海默症研究[J]. 河北医学,2012,18(11):1665-1666. WU Zhao. Alzheimer disease research based on functional magnetic resonance imaging[J]. Hebei Medicine, 2012, 18(11): 1665-1666.
[66]
乔志敏,姜 涛,林雅明,等. 试论磁共振检查的安全性问题[J]. 中国中西医结合影像学杂志,2009,7(2):152-154. QIAO Zhimin, JIANG Tao, LIN Yaming, et al . Discussion on the safety of magnetic resonance imaging[J]. Chinese Imaging Journal of Integrated Traditional and Western Medicine, 2009, 7(2): 152-154.
[67]
梁晔鑫,王维霞. 浅谈磁共振检查的安全性[J]. 现代医药卫生,2013,27(10):13-15. LIANG Yexin, WANG Weixia. On the safety of magnetic resonance imaging[J]. Journal of Modern Medicine and Health, 2013, 27(10): 13-15.
[68]
Schenck J F. Safety of strong, static magnetic fields[J]. Journal of Magnetic Resonance, 2000, 12(1): 2-19.
[69]
Goetz A A, Duff J F, Bernstein J E. Health risk appraisal: the estimation of risk[J]. Public Health Reports, 1980, 95(2): 119-126.
[70]
Defriese G H, Fielding J E. Health risk appraisal in the 1990s: opportunities, challenges, and expectations[J]. Annual Review of Public Health, 1990, 11: 401-418.
[71]
ICNIRP-International Commission on Non-ionizing Radiation Protection 1998. Guidlines for limiting exposure to time-varying electric, magnetic, and electromagnetic fields (up to 300 GHz)[J]. Health Physics, 1998, 74(4): 494-522.
[72]
IEEE Std C 95.6-2002 IEEE standard for safety levels with respect to human exposure to electromagnetic fields, 0~3 kHz[S], 2002.