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5G Radiation: Does Study Suggest A Hidden Contributor to the COVID-19 Pandemic?

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This study proposes a possible link between exposure to radiofrequency radiation from wireless communication systems, including 5G, and the severity of the COVID-19 pandemic. The authors suggest that radiofrequency radiation may have negative effects on various biological systems, including the immune system and circulation, and may contribute to adverse health outcomes in patients infected with SARS-CoV-2. However, it is important to note that the study is based on a review of the scientific literature and more research is needed to clarify the effects of chronic exposure to radiofrequency radiation on human health.

http://www.ncbi.nlm.nih.gov/pmc/articles/pmc8580522/

Introduction

The COVID-19 pandemic has brought the world to a standstill, with millions of confirmed deaths worldwide. While the focus of public health policy has been on the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) virus and its effects on human health, other environmental factors that may contribute to the spread and severity of the disease have been largely ignored.   This is evident as we now know the important role Vitamin D plays in combating COV viruses.   We also have studies pointing to the role Vitamin D plays in the recovery from the effects on the immune system from RFR exposure in 2017.

One possible environmental factor that may be contributing to the COVID-19 pandemic is ambient radiofrequency radiation from wireless communication systems, including microwaves and millimeter waves, particularly the recently implemented 5G network. In this article, we examine the peer-reviewed scientific literature on the detrimental bioeffects of wireless communication radiation (WCR) and present evidence that WCR may have contributed to the COVID-19 pandemic as a toxic environmental cofactor.

The Epidemiological Triad and the Role of Environmental Factors in Disease

The epidemiological triad, which consists of the agent, host, and environment, is a fundamental concept in the study of disease. The agent refers to the causative agent, such as a virus or bacterium, the host refers to the individual who is infected, and the environment refers to the physical, biological, and social factors that influence the spread and severity of the disease.

In the case of the COVID-19 pandemic, the agent is the SARS-CoV-2 virus and the host is the infected individual. However, the role of the environment in the spread and severity of the disease has received less attention. By examining the peer-reviewed scientific literature on the detrimental bioeffects of WCR, we aim to shed light on the possible role of WCR as a toxic environmental cofactor in the COVID-19 pandemic.

Detrimental Bioeffects of WCR

WCR has been shown to have several detrimental bioeffects, which we outline in detail below:

  1. Morphologic Changes in Erythrocytes: WCR has been shown to cause morphologic changes in erythrocytes, including echinocyte and rouleaux formation, that can contribute to hypercoagulation.
  2. Impairment of Microcirculation: WCR can also impair microcirculation and reduce erythrocyte and hemoglobin levels, exacerbating hypoxia.
  3. Amplification of Immune System Dysfunction: WCR has been shown to amplify immune system dysfunction, including immunosuppression, autoimmunity, and hyperinflammation.
  4. Increased Cellular Oxidative Stress: WCR has also been shown to increase cellular oxidative stress and the production of free radicals, resulting in vascular injury and organ damage.
  5. Increase in Intracellular Ca2+: WCR has been shown to increase intracellular Ca2+, which is essential for viral entry, replication, and release, in addition to promoting pro-inflammatory pathways.
  6. Worsening of Heart Arrhythmias and Cardiac Disorders: Finally, WCR has been shown to worsen heart arrhythmias and cardiac disorders.

Relevance for Patients

In light of the above evidence, WCR has become a ubiquitous environmental stressor that we propose may have contributed to adverse health outcomes of patients infected with SARS-CoV-2 and increased the severity of the COVID-19 pandemic. Therefore, we recommend that all people, particularly those suffering from SARS-CoV-2 infection, reduce their exposure to WCR as much as reasonably achievable until further research better clarifies the systemic health effects associated with chronic WCR exposure.

FAQs on 5G Radiation and COVID-19

Q1. What is the connection between 5G Radiation and COVID-19?

A: There is growing evidence that suggests a possible connection between ambient radiofrequency radiation from 5G networks and the severity of the COVID-19 pandemic. The study of the peer-reviewed scientific literature has identified several mechanisms by which 5G radiation may have contributed to the COVID-19 pandemic as a toxic environmental cofactor, including morphologic changes in erythrocytes, impaired microcirculation, immune system dysfunction, cellular oxidative stress, and heart arrhythmias.

Q2. How does 5G Radiation affect human health?

A: 5G Radiation has been shown to cause several detrimental effects on human health, including morphologic changes in erythrocytes, impaired microcirculation, immune system dysfunction, cellular oxidative stress, increased intracellular Ca2+, and heart arrhythmias.

Q3. What are the dangers of 5G Radiation exposure?

A: The dangers of 5G Radiation exposure include morphologic changes in erythrocytes, impaired microcirculation, immune system dysfunction, cellular oxidative stress, increased intracellular Ca2+, and heart arrhythmias, which can contribute to adverse health outcomes and increase the severity of the COVID-19 pandemic.

Q4. Should reduce exposure to 5G Radiation?

A: Yes, reducing exposure to 5G Radiation is recommended, particularly for those suffering from SARS-CoV-2 infection. Further research is needed to better understand the systemic health effects associated with chronic 5G Radiation exposure, but reducing exposure is a reasonable precaution until more information is available.

Conclusion:

In conclusion, the COVID-19 pandemic has brought to light the importance of considering environmental factors in public health policy. There is growing evidence that suggests a connection between ambient radiofrequency radiation from 5G networks and the severity of the COVID-19 pandemic. The peer-reviewed scientific literature has identified several mechanisms by which 5G radiation may have contributed to the COVID-19 pandemic as a toxic environmental cofactor, including morphologic changes in erythrocytes, impaired microcirculation, immune system dysfunction, cellular oxidative stress, and heart arrhythmias. To mitigate the dangers of 5G Radiation exposure, it is recommended to reduce exposure to 5G Radiation as much as reasonably achievable until further research clarifies the systemic health effects associated with chronic 5G Radiation exposure.

The abstracts for 290 studies published between 1997 and 2021 that assessed the effects of radiofrequency radiation (RFR) exposure on free radical-related cellular processes have been compiled by Dr. Henry Lai, Professor Emeritus at the University of Washington. 91% (263 studies) of these studies reported statistically significant effects of RFR on free radical-related cellular processes, while only 9% (27 studies) found no significant effects. Change in cellular free radical status was found to be a consistent effect of RFR exposure, even at low specific absorption rates (SAR) or power density.

 

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