Effects of pulsed magnetic field on healing of tibial bone lesion in rabbits

Authors

T Haghdoost abarguy1, F Tabeie,*, F Sahebjam2, Abbas Piryaei3, F Fadaei Fathabadi3, A Aminiafshar3, MR Jallili3
1Shahid beheshti university of medical sciences
2Ophtalmic research center
3Shahid Beheshti university of medical sciences
*Corresponding Author: Email: [email protected]

Journal of Inflammatory Diseases:Vol. 19, issue 3; 11-17
Published online:Sep 17, 2015
Article type:Research Article
How to Cite:Haghdoost abarguy T, Tabeie F, Sahebjam F, Piryaei A, Fadaei Fathabadi F, et al. Effects of pulsed magnetic field on healing of tibial bone lesion in rabbits. J Inflamm Dis. 2024;19(3):e155907. doi:

Abstract

  Background: The effects of non-invasive physical agents on wound and bone fracture healing have been considered by investigators of different medical fields. Several studies have been conducted about the effects of magnetic field on bone fracture healing.   Objective: The purpose of this study was to investigate the effects of pulsed magnetic fields on healing of tibial bone lesion in rabbits.   Methods: This experimental study was performed in Shahid Beheshti University of medical sciences in 2014. Eight New Zealand male rabbits were divided into control (with bone lesion) and experimental (with bone lesion and under pulsed magnetic field therapy) groups. A 4×10 cm bone lesion with 2 mm depth was made by surgery on both tibias of each rabbit. One month after surgery, the rabbits in the experimental group underwent 75 Hz pulsed magnetic field therapy with 4 mT intensity in lesion site for 30 days and 4 hours a day. Forty, 50 and 60 days after surgery, bone healing was evaluated with digital radiographs and bone density was measured in lesion sites. Data were analyzed using T- test.   Findings: Mean relative bone density in lesion sites was 138.50, 150.73 and 168.30 for 8 bit grey scale in the experimental group during three consecutive imaging and showed %17.89, %15.46 and %16.59 increase in comparison with the control group.   Conclusion: With regards to the results, it seems that pulsed magnetic field therapy improves healing of bone fracture through increasing bone density in fracture site and can be used after orthopedic surgeries.     Citation: Haghdoost Abargouei T, Tabeie F, Sahebjam F, Piriaei A, Fadaei Fathabadi F, Amini Afshar A, Jallili MR. Effects of pulsed magnetic field on healing of tibial bone lesion in rabbits. J Qazvin Univ Med Sci. 2015 19 (3): 11-17.

Copyright

© 2024, Journal of Inflammatory Diseases. This open-access article is available under the Creative Commons Attribution-NonCommercial 4.0 (CC BY-NC 4.0) International License (https://creativecommons.org/licenses/by-nc/4.0/), which allows for the copying and redistribution of the material only for noncommercial purposes, provided that the original work is properly cited.

Similar Articles

7
Mar
2022
Effect of Magnetohydrodynamic on Cutaneous Wound Healing in Rat Model

Effect of Magnetohydrodynamic on Cutaneous Wound Healing in Rat Model

Mohammad Reza Safari,
Mani Karimkhan-Zand,
Nahid Fakhraei,
Fatemeh Mohammadi,
Fatemeh Nili,
Faranak Eivazi
,et al.

Safari MR, Karimkhan-Zand M, Fakhraei N, Mohammadi F, Nili F, et al. Effect of Magnetohydrodynamic on Cutaneous Wound Healing in Rat Model. Arch Neurosci. 2022;9(1):e118387. doi: https://doi.org/10.5812/ans.118387

24
Sep
2016

Evaluation of Low Intensity Pulsed Ultrasound Effects on the Osteogenesis Potential of Demineralized Bone Matrix in Experimental Tibial Defect in Rabbits

Maryam Ezzati Givi,
Ali Baniadam,
Saleh Esmaeilzadeh,
Alireza Ghadiri,
Shahin Gohar Pey

Ezzati Givi M, Baniadam A, Esmaeilzadeh S, Ghadiri A, Gohar Pey S. Evaluation of Low Intensity Pulsed Ultrasound Effects on the Osteogenesis Potential of Demineralized Bone Matrix in Experimental Tibial Defect in Rabbits. Jentashapir J Cell Mol Biol. 2016;7(5):e34125. doi: https://doi.org/10.17795/jjhr-34125

8
Aug
2017

Does applying pulsed electromagnetic field on the lumbopelvic area of postmenopausal women with osteoporosis affect the motoneuron activities of soleus and gastrocnemius muscles? An emphasis on the H-reflex recruitment curve changes

Mohammad Gilani,
Giti torkaman,
Noshin Bayat

Gilani M, torkaman G, Bayat N. Does applying pulsed electromagnetic field on the lumbopelvic area of postmenopausal women with osteoporosis affect the motoneuron activities of soleus and gastrocnemius muscles? An emphasis on the H-reflex recruitment curve changes. koomesh. 2017;19(3):e152915. doi:

28
Dec
2015

Beneficial effects of mesenchymal stem cells treated with low frequency magnetic fields in a rat model of Parkinson’s disease: Evaluation of rotation test and serum BDNF levels

Manochehr Safari,
Majid Jadidi,
Hamid Reza Sameni,
S. am Zarbakhsh,
Ahmad Reza Bandegi,
Abbas Ali Vafaei
,et al.

Safari M, Jadidi M, Sameni HR, Zarbakhsh SA, Bandegi AR, et al. Beneficial effects of mesenchymal stem cells treated with low frequency magnetic fields in a rat model of Parkinson’s disease: Evaluation of rotation test and serum BDNF levels. koomesh. 2015;17(1):e150795. doi:

9
Jan
2018
Delayed Union of Scaphoid Fracture and Effectiveness of Pulsed Electromagnetic Fields: A Case Report and Review of the Literature

Delayed Union of Scaphoid Fracture and Effectiveness of Pulsed Electromagnetic Fields: A Case Report and Review of the Literature

Marcos Edgar Fernandez-Cuadros,
Olga Susana Perez-Moro,
Maria Jesus Albaladejo-Florin,
Carmen Ramos-Gonzalez,
Laura Cabrera-Rodriguez,
Ruben Algarra-Lopez

Fernandez-Cuadros ME, Perez-Moro OS, Albaladejo-Florin MJ, Ramos-Gonzalez C, Cabrera-Rodriguez L, et al. Delayed Union of Scaphoid Fracture and Effectiveness of Pulsed Electromagnetic Fields: A Case Report and Review of the Literature. Middle East J Rehabil Health Stud. 2018;5(1):e63850. doi: https://doi.org/10.5812/mejrh.63850

More by these authors

T Haghdoost abarguyPubMedScholar
F SahebjamPubMedScholar
Abbas PiryaeiPubMedScholar
F Fadaei FathabadiPubMedScholar
A AminiafsharPubMedScholar
MR JalliliPubMedScholar
Share
Cited by
Metrics