152
Views
24
CrossRef citations to date
0
Altmetric
Original

Effects of Extremely Low-Frequency-Pulsed Electromagnetic Field on Different-Derived Osteoblast-Like Cells

, &
Pages 298-311 | Published online: 07 Jul 2009

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (3)

Anna-Maria Bique, Emilia Kaivosoja, Marko Mikkonen & Mervi Paulasto-Kröckel. (2016) Choice of osteoblast model critical for studying the effects of electromagnetic stimulation on osteogenesis in vitro. Electromagnetic Biology and Medicine 35:4, pages 353-364.
Read now
Mariella Caputo, Hylde Zirpoli, Maria Caterina De Rosa, Tania Rescigno, Francesco Chiadini, Antonio Scaglione, Claudia Stellato, Giorgio Giurato, Alessandro Weisz, Mario Felice Tecce & Bruno Bisceglia. (2014) Effect of low frequency (LF) electric fields on gene expression of a bone human cell line. Electromagnetic Biology and Medicine 33:4, pages 289-295.
Read now
Xinping Li, Mingsheng Zhang, Liming Bai, Wenfang Bai, Weicheng Xu & Hongxiang Zhu. (2012) Effects of 50 Hz pulsed electromagnetic fields on the growth and cell cycle arrest of mesenchymal stem cells: an in vitro study. Electromagnetic Biology and Medicine 31:4, pages 356-364.
Read now

Articles from other publishers (21)

Fateme Amirahmadi, Maryam Haji Ghasem Kashani, Meysam Nasiri, Seyyed Ahmad Nabavi Amri, Vahideh Assadollahi & Azita Alasvand Zarasvand. (2022) Osteogenic effect of electromagnetic fields on stem cells derived from rat bone marrow cultured in osteogenic medium versus conditioned medium in vitro. Cell and Tissue Banking 24:2, pages 317-328.
Crossref
Ali Galip ÖNAL & Yusuf Ziya GÜZEY. (2023) Effects of exposure to 2G/3G cell phone radiation on in vitro fertilization, subsequent development and sex distribution of bovine embryosSığır embriyolarında 2G/3G cep telefonu sinyallerinin in vitro fertilizasyon, embriyo gelişimi ve cinsiyet dağılımı üzerine etkileri. Mustafa Kemal Üniversitesi Tarım Bilimleri Dergisi 28:2, pages 427-437.
Crossref
Yuan-yuan Fang, Qian Tu, Yu-ting Zhang, Jian Liu, Hui-guo Liu, Zhi-hua Zhao, Hua Wu & Tie-jun Yin. (2022) Effect of Occupational Extremely Low-Frequency Electromagnetic Field Exposure on the Thyroid Gland of Workers: A Prospective Study. Current Medical Science 42:4, pages 817-823.
Crossref
Gregorio Hernandez Zendejas, Marek K. Dobke, Andrew Phelps, Gabriel Planas & Marco Sanchez. (2021) Osteogenesis Modulation: Induction of Mandibular Bone Growth in Adults by Electrical Field for Aesthetic Purposes. Aesthetic Plastic Surgery 46:1, pages 197-206.
Crossref
Aditya Kumar SharmaShrutika SahSuresh Kumar SinglaManmohan Singh ChauhanRadhey Shyam ManikPrabhat Palta. (2021) Exposure to Pulsed Electromagnetic Fields Improves the Developmental Competence and Quality of Somatic Cell Nuclear Transfer Buffalo ( Bubalus bubalis ) Embryos Produced Using Fibroblast Cells and Alters Their Epigenetic Status and Gene Expression . Cellular Reprogramming 23:5, pages 304-315.
Crossref
Mohadeseh Shayeghan, Flora Forouzesh, Alireza Madjid Ansari & Mohammad Amin Javidi. (2021) DNMT1 and miRNAs: possible epigenetics footprints in electromagnetic fields utilization in oncology. Medical Oncology 38:10.
Crossref
Mahsa Mansourian & Ahmad Shanei. (2021) Evaluation of Pulsed Electromagnetic Field Effects: A Systematic Review and Meta-Analysis on Highlights of Two Decades of Research In Vitro Studies. BioMed Research International 2021, pages 1-22.
Crossref
Bin Zhang, Yangli Xie, Zhenhong Ni & Lin Chen. (2020) Effects and Mechanisms of Exogenous Electromagnetic Field on Bone Cells: A Review. Bioelectromagnetics 41:4, pages 263-278.
Crossref
Hanry Yu, Seow Khoon Chong, Ammar Mansoor Hassanbhai, Yao Teng, Gowri Balachander, Padmalosini Muthukumaran, Feng Wen & Swee Hin Teoh. 2020. Principles of Tissue Engineering. Principles of Tissue Engineering 179 203 .
Sabrina Ehnert, Steffen Schröter, Romina H. Aspera-Werz, Wiebke Eisler, Karsten Falldorf, Michael Ronniger & Andreas K. Nussler. (2019) Translational Insights into Extremely Low Frequency Pulsed Electromagnetic Fields (ELF-PEMFs) for Bone Regeneration after Trauma and Orthopedic Surgery. Journal of Clinical Medicine 8:12, pages 2028.
Crossref
Hironori Miyamoto, Yasunobu Sawaji, Takahiro Iwaki, Toshinori Masaoka, Eiichi Fukada, Munehiro Date & Kengo Yamamoto. (2019) Intermittent pulsed electromagnetic field stimulation activates the mTOR pathway and stimulates the proliferation of osteoblast‐like cells. Bioelectromagnetics 40:6, pages 412-421.
Crossref
Erica Costantini, Bruna Sinjari, Chiara D’Angelo, Giovanna Murmura, Marcella Reale & Sergio Caputi. (2019) Human Gingival Fibroblasts Exposed to Extremely Low-Frequency Electromagnetic Fields: In Vitro Model of Wound-Healing Improvement. International Journal of Molecular Sciences 20:9, pages 2108.
Crossref
Hongli Jia, Pingping Wang & Tao Song. (2015) The Influence of Extremely Low-Frequency Magnetic Field and Magnetic Nanoparticle on <inline-formula> <tex-math notation="LaTeX">$\text{A}{\boldsymbol \beta }_{\boldsymbol {40}}$ </tex-math></inline-formula> Aggregation <italic>In Vitro</italic>. IEEE Transactions on Magnetics 51:11, pages 1-5.
Crossref
Lei Zhang, Kai Zhu, Qingshui Gu & Ruiqing Wu. (2015) Research and application of control system of magnetic-vibrant-thermal therapy apparatus based on WinCE. Research and application of control system of magnetic-vibrant-thermal therapy apparatus based on WinCE.
Christoph Handschin, Ashkan Mortezavi, Jan Plock & Daniel Eberli. (2015) External physical and biochemical stimulation to enhance skeletal muscle bioengineering. Advanced Drug Delivery Reviews 82-83, pages 168-175.
Crossref
C. D?Angelo, E. Costantini, M.A. Kamal & M. Reale. (2015) Experimental model for ELF-EMF exposure: Concern for human health. Saudi Journal of Biological Sciences 22:1, pages 75-84.
Crossref
Jian Zhou, Jia-Qi Wang, Bao-Feng Ge, Xiao-Ni Ma, Hui-Ping Ma, Cory J. Xian & Ke-Ming Chen. (2014) Different electromagnetic field waveforms have different effects on proliferation, differentiation and mineralization of osteoblasts in vitro. Bioelectromagnetics 35:1, pages 30-38.
Crossref
Ivo Cap & Jan Barabas. (2011) Low Frequency Electromagnetic Fields: Friend or Foe?. Communications - Scientific letters of the University of Zilina 13:1, pages 13-17.
Crossref
Bruno Bisceglia, Hylde Zirpoli, Mariella Caputo, Francesco Chiadini, Antonio Scaglione & Mario Felice Tecce. (2011) Induction of alkaline phosphatase activity by exposure of human cell lines to a low-frequency electric field from apparatuses used in clinical therapies. Bioelectromagnetics 32:2, pages 113-119.
Crossref
Sergio Salerno, Carmela La Mendola, Marco Pio La Manna, Antonio Lo Casto, Nadia Caccamo & Alfredo Salerno. (2009) Reversible Effect of Magnetic Fields on Human Lymphocyte Activation Patterns: Different Sensitivity of Naive and Memory Lymphocyte Subsets. Radiation Research 172:4, pages 444-450.
Crossref
Katerina K. Papachroni, Demetrios N. Karatzas, Kostas A. Papavassiliou, Efthimia K. Basdra & Athanasios G. Papavassiliou. (2009) Mechanotransduction in osteoblast regulation and bone disease. Trends in Molecular Medicine 15:5, pages 208-216.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.