PEMF Therapy Benefits & Research Review Articles

 Pulsed Electromagnetic Field Therapy or PEMF Therapy is one of the most exciting and useful technologies in the history of wellness, longevity and rehabilitation tools. Learn what is PEMF therapy and it’s benefits. Access latest PEMF studies (automatically updated from Pubmed) and our in-depth clinical research reviews articles.

PEMF therapy - latest research articles and studies

What is PEMF therapy?

PEMF is the application of pulsating magnetic fields generated by electromagnets having particular frequencies, waveforms and intensities using specially designed apparatus for therapeutic, rejuvenative or performance enhancement uses.

​PEMF therapy devices are designed with varying configurations which allow to target specific areas of the body or provide whole body stimulation with electromagnetic fields.

What does PEMF therapy do?

PEMF treatment when applied optimally can enhance the body’s oxygen levels and improve neurological functions by triggering several cellular mechanisms.

Specially designed non-ionizing pulsed magnetic fields penetrate the body and transport charges.

Studies show that with optimal field intensity and frequency selection, PEMF treatment can provide many benefits to it’s users. It has been established that tissues including blood, muscle, ligaments, bone and cartilage respond to these biomagnetic fields.

We can see that the effects are on a neurological level while bone and tissue recovery also happens when PEMF treatments are applied according to research. This is truly a great advancement in natural healing and performance enhancement technology.

Today, PEMF therapy machines come in a variety of formats including whole-body PEMF mats, PEMF pillows, pads, and specially designed local application and clinical machines. 

Is PEMF therapy effective?

PEMF therapy has been under active research and development since more than 70 years and research trials and experiments have been conducted for treatment of various disorders as well as enhancing athletic performance and longevity.

The answer to this question lies in the fact that PEMF can be used to reduce oxidative stress. When oxidative stress is reduced, cellular repair soars and many pre-inflammatory conditions start seeing improvement.

You’ll find plenty of PEMF studies citing these aspects, especially in the earliest studies and trials.

As a subset of  electrotherapy, PEMF research and development evolved in the US mainly due to the efforts of institutions like NASA, Harvard Medical, Dr. Sandyk, Dr. Pawluk and several other lesser known but equally important universities, organizations, doctors and scientists from around the world.

PEMF has been gaining increased acceptance, in 2011, Dr. Oz show also had a episode on it for helping relieve chronic pain.

We now know that, PEMF treatment has the capability to provide both short-term and life-long benefits both physiologically and neurologically when applied with proper knowledge; and is safe to use when applied as per literature.

What are the benefits of PEMF therapy?

PEMF has been researched and applied for hundreds of conditions and it’s efficacy has been studied on several cellular and biological systems.

Some of the most noticeable effects with whole-body PEMF stimulation are:

  • Improved energy levels and physical performance
  • Reduced pain and inflammation
  • Reduced allergies and improved respiratory system
  • Improved sleep and mood
  • Reduced stress and enhanced mental performance

Getting benefits of PEMF therapy would also largely depend on physiological conditions and the efficacy and configuration of PEMF treatment for the particular condition.

The benefits can also vary between no effect 🙁 to WOW!,  based on the selection of the PEMF device used, duration and frequency of treatment as well as physiological, genetic and environmental factors. Users are advised to consult appropriate health professionals and be aware of the contraindications to be able to start PEMF therapy in a safe way.

PEMF Research Articles

The following research review articles should help you learn more about the benefits of PEMF therapy, and learn about the various clinical studies and trials. These have been written based on decades of research on PEMF & rTMS (repetitive Transcranial Magnetic Stimulation) and explore not only basic PEMF science but also it’s potential for use in a variety of conditions and improving well-being as we know it.

We hope you’ll find important benefits and insight in to using PEMF from these articles. They are based on leading and authoritative research studies and trials and our unique perspective after having reviewed and used several PEMF machines over the last decade, and having worked with hundreds of professionals and thousands of PEMF therapy users worldwide.

Facts about PEMF you may not know

Facts about PEMF you may not know

Technical and historical facts about PEMF. Pronunciation, different names, waveforms, whole-body pemf benefits, charging gemstones, neuroplasticity, fake PEMF products and more.

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PEMF therapy for Menopause

PEMF therapy for Menopause

Menopause is inevitable but is not a disease although it can seem that way! Learn how PEMF could provide support for menopausal symptoms and conditions such as osteoporosis, depression, sleep disorders, stress, pain and more!

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PEMF therapy for Depression & Anxiety

PEMF therapy for Depression & Anxiety

PEMF therapy for depression and anxiety is a novel anti-depression treatment as per available clinical research studies and trials. Let us learn more about depression and see how PEMF therapy works for treating depression and anxiety. Discover the available clinical...

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Stroke Rehabilitation with PEMF therapy

Stroke Rehabilitation with PEMF therapy

PEMF therapy can potentially improve stroke outcomes & support neurorehabilitation. Learn about the benefits of pulsed electromagnetic fields for stroke rehabilitation based on clinical research.

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PEMF therapy for Multiple Sclerosis (MS)

PEMF therapy for Multiple Sclerosis (MS)

PEMF) therapy for multiple sclerosis (MS) has been clinically researched & has been found to be effective in reducing symptoms such as fatigue and pain. Let us learn how PEMF therapy benefits multiple sclerosis based on clinical research.

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PEMF therapy for Pets and Animals

PEMF therapy for Pets and Animals

Learn about the benefits of PEMF therapy for animals including pets such as dogs, cats and horses based on published research. Both small and large animal veterinary practices as well as holistic veterinary practices should find PEMF as a great regenerative technology in the evolving animal care landscape. Pet owners and animal caretakers would also prefer non-invasive, non-toxic, at-home treatments such as PEMF that is effective and well-tolerated as well.

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PEMF therapy boosts immunity

PEMF therapy boosts immunity

Pulsed electromagnetic fields (PEMF) therapy can be a valuable tool to boost immunity and can be used in as an immunity booster in immunotherapy. PEMF for boosting the immune system is a natural, non-invasive, and safe approach. This research review provides evidence supported by published clinical research and cell science to show how PEMF therapy boosts immunity.

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PEMF therapy for Traumatic Brain Injury

PEMF therapy for Traumatic Brain Injury

Pulsed electromagnetic field (PEMF) therapy for Traumatic Brain Injury (TBI) has regenerative effects that allow healing the injury and concussions faster. Read this research review on PEMF for TBI shows that it can indeed greatly enhance the healing possibilities.

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PEMF therapy for Osteoporosis

PEMF therapy for Osteoporosis

PEMF therapy for osteoporosis is a viable treatment as per available research and feedback. Let us learn about Osteoporosis and see how Pulsed Electromagnetic Field (PEMF) therapy benefits osteo.

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PEMF Therapy for Arthritis

PEMF Therapy for Arthritis

Learn how PEMF Devices can easily help mitigate effects of degenerative conditions that are bone and tissue related, including all types of Arthritis.

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Who can use PEMF Therapy?

Who can use PEMF Therapy?

PEMF Therapy benefits all living beings. Sportsmen, Fitness Pros, Seniors or anyone seeking better physical & mental performance can use PEMF devices. Learn about how to choose your PEMF device.

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How do PEMF Devices work?

How do PEMF Devices work?

Learn how PEMF devices work to provide nerve regeneration, enhanced muscle repair, cellular oxygenation, enhanced mental clarity, improvement in stamina and a number of other effects.

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Latest PubMed Scientific & Medical Journals Abstracts/Citations for keyword, “PEMF therapy”

When conducting PEMF therapy research for any specific use-case, its advisable to refer everything possible by combining the search on “PEMF therapy” with physiological conditions. You may also want to read articles and studies using TMS (Transcranial Magnetic Stimulation), rTMS (repetitive TMS) and even Electrotherapy applications like tDCS (transcranial Direct Current Stimulation) and Electrical Stimulation, as all these technologies primarily provide magnetic stimulation to the target area.

Use search pubmed see latest publications about Pulsed electromagnetic field therapy on PubMed. Plenty of new PEMF scientists here though, so all data should be reviewed knowing more about PEMF therapy by reading the articles presented above first.

  1. Van Hoornweder, S, Meesen, RLJ, Caulfield, KA. Accurate tissue segmentation from including both T1-weighted and T2-weighted MRI scans significantly affect electric field simulations of prefrontal but not motor TMS. Brain Stimul. 2022; :. doi: 10.1016/j.brs.2022.06.008. PubMed PMID:35779855 .
  2. Gill, G, Forman, DA, Reeves, JE, Taylor, JL, Bent, LR. Location-specific cutaneous electrical stimulation of the footsole modulates corticospinal excitability to the plantarflexors and dorsiflexors during standing. Physiol Rep. 2022;10 (13):e15240. doi: 10.14814/phy2.15240. PubMed PMID:35778836 .
  3. Shirakawa, Y, Yamazaki, R, Kita, Y, Kitamura, Y, Okumura, Y, Inoue, Y et al.. Repetitive transcranial magnetic stimulation decreased effortful frontal activity for shifting in patients with major depressive disorder. Neuroreport. 2022;33 (11):. doi: 10.1097/WNR.0000000000001806. PubMed PMID:35776940 .
  4. Cleland, BT, Madhavan, S. Motor overflow in the lower limb after stroke: insights into mechanisms. Eur J Neurosci. 2022; :. doi: 10.1111/ejn.15753. PubMed PMID:35775788 .
  5. Shirakawa, Y, Yamazaki, R, Kita, Y, Kitamura, Y, Okumura, Y, Inoue, Y et al.. Repetitive transcranial magnetic stimulation decreased effortful frontal activity for shifting in patients with major depressive disorder. Neuroreport. 2022;33 (11):470-475. doi: 10.1097/WNR.0000000000001806. PubMed PMID:35775324 .
  6. Ferrarelli, F. Is Neuroplasticity Key to Treatment Response in Depression? Maybe So. Am J Psychiatry. 2022;179 (7):451-453. doi: 10.1176/appi.ajp.20220432. PubMed PMID:35775160 .
  7. Moretti, J, Marinovic, W, Harvey, AR, Rodger, J, Visser, TAW. Offline Parietal Intermittent Theta Burst Stimulation or Alpha Frequency Transcranial Alternating Current Stimulation Has No Effect on Visuospatial or Temporal Attention. Front Neurosci. 2022;16 :903977. doi: 10.3389/fnins.2022.903977. PubMed PMID:35774555 PubMed Central PMC9237453.
  8. Li, P, Chen, C, Huang, B, Jiang, Z, Wei, J, Zeng, J et al.. Altered excitability of motor neuron pathways after stroke: more than upper motor neuron impairments. Stroke Vasc Neurol. 2022; :. doi: 10.1136/svn-2022-001568. PubMed PMID:35772811 .
  9. Zengin, G, Topak, OZ, Atesci, O, Culha Atesci, F. The Efficacy and Safety of Transcranial Magnetic Stimulation in Treatment-Resistant Bipolar Depression. Psychiatr Danub. 2022;34 (2):236-244. doi: 10.24869/psyd.2022.236. PubMed PMID:35772133 .
  10. Alashram, AR, Padua, E, Annino, G. Noninvasive brain stimulation for cognitive rehabilitation following traumatic brain injury: a systematic review. Appl Neuropsychol Adult. 2022; :1-16. doi: 10.1080/23279095.2022.2091440. PubMed PMID:35771044 .
  11. Ross, JM, Sarkar, M, Keller, CJ. Experimental suppression of transcranial magnetic stimulation-electroencephalography sensory potentials. Hum Brain Mapp. 2022; :. doi: 10.1002/hbm.25990. PubMed PMID:35770956 .
  12. Sotille, R, Singh, H, Weisman, A, Vida, T. Unraveling the Mysteries of Mental Illness With Psilocybin. Cureus. 2022;14 (5):e25414. doi: 10.7759/cureus.25414. PubMed PMID:35769681 PubMed Central PMC9233936.
  13. Wu, Y, Tang, L, Shi, X, Zhou, Z, Li, Y, Shan, C et al.. Effects of tDCS on Depression and Comorbid Generalized Anxiety Disorder: A Brain Function Imaging Case Report. Front Neurol. 2022;13 :879339. doi: 10.3389/fneur.2022.879339. PubMed PMID:35769365 PubMed Central PMC9234299.
  14. Wang, SN, Li, SR, Song, PH, Wu, XY, Lin, H. [Contribution of central motion conduction time to the assessment of corticospinal tract lesions and its clinical significance]. Zhonghua Yi Xue Za Zhi. 2022;102 (25):1918-1923. doi: 10.3760/cma.j.cn112137-20220405-00702. PubMed PMID:35768391 .
  15. Zhang, M, Wei, J, Wu, X. Effects of whole-body vibration training on lower limb motor function and neural plasticity in patients with stroke: protocol for a randomised controlled clinical trial. BMJ Open. 2022;12 (6):e060796. doi: 10.1136/bmjopen-2022-060796. PubMed PMID:35768103 .
  16. Azcona Ganuza, G, Alegre, M. Static magnetic stimulation of human auditory cortex: a feasibility study. Neuroreport. 2022;33 (11):487-494. doi: 10.1097/WNR.0000000000001809. PubMed PMID:35767229 .
  17. Zemplényi, A, Józwiak-Hagymásy, J, Kovács, S, Erdősi, D, Boncz, I, Tényi, T et al.. Repetitive transcranial magnetic stimulation may be a cost-effective alternative to antidepressant therapy after two treatment failures in patients with major depressive disorder. BMC Psychiatry. 2022;22 (1):437. doi: 10.1186/s12888-022-04078-9. PubMed PMID:35764989 .
  18. Zeng, S, Tang, C, Su, M, Luo, X, Liang, H, Yang, L et al.. Infralow-frequency transcranial magnetic stimulation as a therapy for generalized anxiety disorder: A randomized clinical trial. Compr Psychiatry. 2022;117 :152332. doi: 10.1016/j.comppsych.2022.152332. PubMed PMID:35763873 .
  19. Hsiao, MY, Choo, YJ, Liu, IC, Boudier-Revéret, M, Chang, MC. Effect of Repetitive Transcranial Magnetic Stimulation on Post-stroke Dysphagia: A Meta-analysis of Stimulation Frequency, Stimulation Site, and Timing of Outcome Measurement. Dysphagia. 2022; :. doi: 10.1007/s00455-022-10483-9. PubMed PMID:35763122 .
  20. Chowdhury, NS, Rogasch, NC, Chiang, AKI, Millard, SK, Skippen, P, Chang, WJ et al.. The influence of sensory potentials on transcranial magnetic stimulation - Electroencephalography recordings. Clin Neurophysiol. 2022;140 :98-109. doi: 10.1016/j.clinph.2022.05.015. PubMed PMID:35760007 .
  21. Sheffield, JG, Ramerpresad, S, Brem, AK, Mansfield, K, Orhan, U, Dillard, M et al.. Blinding efficacy and adverse events following repeated transcranial alternating current, direct current, and random noise stimulation. Cortex. 2022;154 :77-88. doi: 10.1016/j.cortex.2022.05.015. PubMed PMID:35759817 .
  22. King, EM, Edwards, LL, Borich, MR. Short-term arm immobilization modulates excitability of inhibitory circuits within, and between, primary motor cortices. Physiol Rep. 2022;10 (12):e15359. doi: 10.14814/phy2.15359. PubMed PMID:35757848 .
  23. Starnes, K, Britton, JW, Burkholder, DB, Suchita, IA, Gregg, NM, Klassen, BT et al.. Case Report: Prolonged Effects of Short-Term Transcranial Magnetic Stimulation on EEG Biomarkers, Spectral Power, and Seizure Frequency. Front Neurosci. 2022;16 :866212. doi: 10.3389/fnins.2022.866212. PubMed PMID:35757550 PubMed Central PMC9232187.
  24. De Witte, S, De Smet, S, Pulopulos, MM, Baeken, C. Double the dose, double the impact? Effects of iTBS on salivary cortisol in stressed healthy volunteers. Compr Psychoneuroendocrinol. 2022;10 :100127. doi: 10.1016/j.cpnec.2022.100127. PubMed PMID:35755208 PubMed Central PMC9216409.
  25. Longpré-Poirier, C, Juster, RP, Miron, JP, Kerr, P, Cipriani, E, Desbeaumes Jodoin, V et al.. Allostatic load as a predictor of response to repetitive transcranial magnetic stimulation in treatment resistant depression: Research protocol and hypotheses. Compr Psychoneuroendocrinol. 2022;10 :100133. doi: 10.1016/j.cpnec.2022.100133. PubMed PMID:35755203 PubMed Central PMC9216427.
  26. Cummings, M, Pradhan, S, Madhavan, S. Understanding factors contributing to participant satisfaction in stroke walking recovery clinical trials. Contemp Clin Trials Commun. 2022;28 :100945. doi: 10.1016/j.conctc.2022.100945. PubMed PMID:35754974 PubMed Central PMC9213227.
  27. Cheng, S, Qiu, X, Li, S, Mo, L, Xu, F, Zhang, D et al.. Different Roles of the Left and Right Ventrolateral Prefrontal Cortex in Cognitive Reappraisal: An Online Transcranial Magnetic Stimulation Study. Front Hum Neurosci. 2022;16 :928077. doi: 10.3389/fnhum.2022.928077. PubMed PMID:35754771 PubMed Central PMC9226322.
  28. Radia, S, Vallence, AM, Fujiyama, H, Fitzpatrick, R, Etherington, S, Scott, BR et al.. Effects of acute intermittent hypoxia on corticospinal excitability within the primary motor cortex. Eur J Appl Physiol. 2022; :. doi: 10.1007/s00421-022-04982-8. PubMed PMID:35752660 .
  29. Cao, N, Pi, Y, Qiu, F, Wang, Y, Xia, X, Liu, Y et al.. Plasticity changes in dorsolateral prefrontal cortex associated with procedural sequence learning are hemisphere-specific. Neuroimage. 2022;259 :119406. doi: 10.1016/j.neuroimage.2022.119406. PubMed PMID:35752417 .
  30. Kuo, HC, Ferre, CL, Chin, KY, Friel, KM, Gordon, AM. Mirror movements and brain pathology in children with unilateral cerebral palsy. Dev Med Child Neurol. 2022; :. doi: 10.1111/dmcn.15322. PubMed PMID:35751166 .
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