Wednesday, September 25, 2013

Brain Cancer Risk & Wireless Phone Use


New research indicates that brain cancer risk increases with more years of cell phone and cordless phone use and more hours of use.

Dr. Lennart Hardell and his colleagues in Sweden just published the third in a series of papers on the use of wireless phones, including cell phones and cordless phones, and the risk of malignant and non-malignant brain tumors. The latest paper describes a new case-control study that examines the association between mobile phone use and brain cancer risk. In these studies, the cases were diagnosed with brain tumors between 2007 and 2009.  (1)

The study updates earlier research from case-control studies conducted by the Hardell group and extends the prior research by examining the effects of wireless phone use, i.e., cell phone and cordless phone use, on brain tumor risk for people who have used these phones for up to 25 or more years.

Overall, the research found that people who used wireless phones for more than a year were at 70% greater risk of brain cancer as compared to those who used wireless phones for a year or less. Those who used wireless phones for more than 25 years were at greatest risk—300% greater risk of brain cancer than those who used wireless phones for a year or less.

The total number of hours of wireless phone use was as important as the number of years of use. A fourth of the sample used wireless phones for 2,376 or more hours in their lifetime which corresponds to about 40 minutes a day over ten years. These heavier users had 250% greater risk of brain tumors as compared to those who never used wireless phones or used them for less than 39 hours in their lifetime.   

A similar analysis reported in the 13-nation Interphone study funded partly by the World Health Organization found a 182% greater risk of brain cancer among those who used cell phones for 1,640 or more hours in their lifetime.

In the current study, for all types of wireless phone use, brain cancer risk was found to be greater in the part of the brain where the exposure to wireless phone radiation was highest—in the temporal or overlapping lobes of the brain on the side of the head were people predominantly used their phones.

Given consistent results from multiple case-control studies that long-term use of mobile phones (i.e., ten or more years)  is associated with brain cancer especially near where the phone is predominantly used, the International Agency for Research on Cancer should strengthen its 2011 assessment of radiofrequency energy from “possibly carcinogenic” to “probably carcinogenic” to humans.

More importantly, governments around the world should heed the results of these studies. The public must be educated about the need to take simple precautions whenever using wireless devices. Governments must strengthen regulatory standards for wireless radiation and must fund research independent of industry to develop safer technologies.

The paper was published online in the peer-reviewed journal, International Journal of Oncology. The abstract and a link to this paper appears below along with the abstracts for the Hardell group’s two prior papers from this study.  All three papers are open access. (1-3)


References

(1) Lennart Hardell, Michael Carlberg, Fredrik Söderqvist, Kjell Hansson Mild. Case-control study of the association between malignant brain tumours diagnosed between 2007 and 2009 and mobile and cordless phone use. International Journal of Oncology. Published online September 24, 2013.

Abstract

Previous studies have shown a consistent association between long-term use of mobile and cordless phones and glioma and acoustic neuroma, but not for meningioma. When used these phones emit radiofrequency electromagnetic fields (RF-EMFs) and the brain is the main target organ for the handheld phone. The International Agency for Research on Cancer (IARC) classified in May, 2011 RF-EMF as a group 2B, i.e. a ‘possible’ human carcinogen. The aim of this study was to further explore the relationship between especially long-term (>10 years) use of wireless phones and the development of malignant brain tumours.

We conducted a new case-control study of brain tumour cases of both genders aged 18-75 years and diagnosed during 2007-2009. One population-based control matched on gender and age (within 5 years) was used to each case. Here, we report on malignant cases including all available controls. Exposures on e.g. use of mobile phones and cordless phones were assessed by a self-administered questionnaire. Unconditional logistic regression analysis was performed, adjusting for age, gender, year of diagnosis and socio-economic index using the whole control sample.

Of the cases with a malignant brain tumour, 87% (n=593) participated, and 85% (n=1,368) of controls in the whole study answered the questionnaire. The odds ratio (OR) for mobile phone use of the analogue type was 1.8, 95% confidence interval (CI)=1.04‑3.3, increasing with >25 years of latency (time since first exposure) to an OR=3.3, 95% CI=1.6-6.9. Digital 2G mobile phone use rendered an OR=1.6, 95% CI=0.996-2.7, increasing with latency >15-20 years to an OR=2.1, 95% CI=1.2-3.6. The results for cordless phone use were OR=1.7, 95% CI=1.1-2.9, and, for latency of 15-20 years, the OR=2.1, 95% CI=1.2-3.8. Few participants had used a cordless phone for >20-25 years. Digital type of wireless phones (2G and 3G mobile phones, cordless phones) gave increased risk with latency >1-5 years, then a lower risk in the following latency groups, but again increasing risk with latency >15-20 years. Ipsilateral use resulted in a higher risk than contralateral mobile and cordless phone use. Higher ORs were calculated for tumours in the temporal and overlapping lobes. Using the meningioma cases in the same study as reference entity gave somewhat higher ORs indicating that the results were unlikely to be explained by recall or observational bias.

This study confirmed previous results of an association between mobile and cordless phone use and malignant brain tumours. These findings provide support for the hypothesis that RF-EMFs play a role both in the initiation and promotion stages of carcinogenesis.

http://www.spandidos-publications.com/10.3892/ijo.2013.2111

 
(2) Lennart Hardell, Michael Carlberg, Fredrik Söderqvist, Kjell Hansson Mild. Pooled analysis of case-control studies on acoustic neuroma diagnosed 1997-2003 and 2007-2009 and use of mobile and cordless phones. International Journal of Oncology. 43(4):1036-1044. October 2013.

Abstract

We previously conducted a case-control study of acoustic neuroma. Subjects of both genders aged 20-80 years, diagnosed during 1997-2003 in parts of Sweden, were included, and the results were published. We have since made a further study for the time period 2007-2009 including both men and women aged 18-75 years selected from throughout the country. These new results for acoustic neuroma have not been published to date.

Similar methods were used for both study periods. In each, one population-based control, matched on gender and age (within five years), was identified from the Swedish Population Registry. Exposures were assessed by a self-administered questionnaire supplemented by a phone interview. Since the number of acoustic neuroma cases in the new study was low we now present pooled results from both study periods based on 316 participating cases and 3,530 controls. Unconditional logistic regression analysis was performed, adjusting for age, gender, year of diagnosis and socio-economic index (SEI).

Use of mobile phones of the analogue type gave odds ratio (OR) = 2.9, 95% confidence interval (CI) = 2.0-4.3, increasing with >20 years latency (time since first exposure) to OR = 7.7, 95% CI = 2.8-21. Digital 2G mobile phone use gave OR = 1.5, 95% CI = 1.1-2.1, increasing with latency >15 years to an OR = 1.8, 95% CI = 0.8-4.2. The results for cordless phone use were OR = 1.5, 95% CI = 1.1-2.1, and, for latency of >20 years, OR = 6.5, 95% CI = 1.7-26. Digital type wireless phones (2G and 3G mobile phones and cordless phones) gave OR = 1.5, 95% CI = 1.1-2.0 increasing to OR = 8.1, 95% CI = 2.0-32 with latency >20 years. For total wireless phone use, the highest risk was calculated for the longest latency time >20 years: OR = 4.4, 95% CI = 2.2-9.0. Several of the calculations in the long latency category were based on low numbers of exposed cases. Ipsilateral use resulted in a higher risk than contralateral for both mobile and cordless phones. OR increased per 100 h cumulative use and per year of latency for mobile phones and cordless phones, though the increase was not statistically significant for cordless phones. The percentage tumour volume increased per year of latency and per 100 h of cumulative use, statistically significant for analogue phones. This study confirmed previous results demonstrating an association between mobile and cordless phone use and acoustic neuroma.


(3) Michael Carlberg, Fredrik Söderqvist, Kjell Hansson Mild, and Lennart Hardell. Meningioma patients diagnosed 2007–2009 and the association with use of mobile and cordless phones: a case–control study. Environmental Health 2013, 12:60. Published online Jul 19, 2013.

Abstract

Background  To study the association between use of wireless phones and meningioma.

Methods  We performed a case–control study on brain tumour cases of both genders aged 18–75 years and diagnosed during 2007–2009. One population-based control matched on gender and age was used to each case. Here we report on meningioma cases including all available controls. Exposures were assessed by a questionnaire. Unconditional logistic regression analysis was performed.

Results  In total 709 meningioma cases and 1,368 control subjects answered the questionnaire. Mobile phone use in total produced odds ratio (OR)=1.0, 95% confidence interval (CI)=0.7-1.4 and cordless phone use gave OR=1.1, 95% CI=0.8-1.5. The risk increased statistically significant per 100 h of cumulative use and highest OR was found in the fourth quartile (>2,376 hours) of cumulative use for all studied phone types. There was no statistically significant increased risk for ipsilateral mobile or cordless phone use, for meningioma in the temporal lobe or per year of latency. Tumour volume was not related to latency or cumulative use in hours of wireless phones.

Conclusions  No conclusive evidence of an association between use of mobile and cordless phones and meningioma was found. An indication of increased risk was seen in the group with highest cumulative use but was not supported by statistically significant increasing risk with latency. Results for even longer latency periods of wireless phone use than in this study are desirable.



Thursday, September 12, 2013

American Academy of Pediatrics: Protect Children from Cell Phone & Wireless Radiation







Letter from the American Academy of Pediatrics to the FCC 
Regarding Radiofrequency Electromagnetic Radiation Standards
 

The American Academy of Pediatrics submitted the following letter to the Federal Communications Commission (FCC). 

The letter "urges the FCC to adopt radiation standards" that 1) protect children's health and well-being from radiation emitted by cell phones and other wireless devices; 2) reflect how people actually use their cell phones; and 3)  provide sufficient information that enables consumers to make informed decisions when they purchase mobile phones.

The letter is also  available on the FCC's web site at http://bit.ly/17tQclg.


August 29, 2013

The Honorable Mignon L. Clyburn
Acting Commissioner 
Federal Communications Commission 
445 12th Street SW 
Washington, DC 20054

The Honorable Dr. Margaret A. Hamburg
Commissioner 
U.S. Food and Drug Administration 
10903 New Hampshire Avenue 
Silver Spring, MD 20993
 


Dear Acting Chairwoman Clyburn and Commissioner Hamburg:

The American Academy of Pediatrics (AAP), a non-profit professional organization of 60,000 primary care pediatricians, pediatric medical subspecialists, and pediatric surgical specialists dedicated to the health, safety and well-being of infants, children, adolescents, and young adults appreciates this opportunity to comment on the Proposed Rule “Reassessment of Exposure to Radiofrequency Electromagnetic Fields Limits and Policies” published in the Federal Register on June 4, 2013.
 
In the past few years, a number of American and international health and scientific bodies have contributed to the debate over cell phone radiation and its possible link to cancer. The International Agency for Research on Cancer (IARC), part of the United Nations’ World Health Organization, said in June 2011 that a family of frequencies that includes mobile-phone emissions is “possibly carcinogenic to humans.” The National Cancer Institute has stated that although studies have not demonstrated that RF energy from cell phones definitively causes cancer, more research is needed because cell phone technology and cell phone use are changing rapidly. These studies and others clearly demonstrate the need for further research into this area and highlight the importance of reassessing current policy to determine if it is adequately protective of human health. 

As radiation standards are reassessed, the AAP urges the FCC to adopt radiation standards that: 
  • Protect children’s health and well-being. Children are not little adults and are disproportionately impacted by all environmental exposures, including cell phone radiation. Current FCC standards do not account for the unique vulnerability and use patterns specific to pregnant women and children. It is essential that any new standard for cell phones or other wireless devices be based on protecting the youngest and most vulnerable populations to ensure they are safeguarded throughout their lifetimes. 
  • Reflect current use patterns. The FCC has not assessed the standard for cell phone radiation since 1996. Approximately 44 million people had mobile phones when the standard was set; today, there are more than 300 million mobile phones in use in the United States. While the prevalence of wireless phones and other devices has skyrocketed, the behaviors around cell phone uses have changed as well. The number of mobile phone calls per day, the length of each call, and the amount of time people use mobile phones has increased, while cell phone and wireless technology has undergone substantial changes. Many children, adolescents and young adults, now use cell phones as their only phone line and they begin using wireless phones at much younger ages. Pregnant women may carry their phones for many hours per day in a pocket that keeps the phone close to their uterus. Children born today will experience a longer period of exposure to radio-frequency fields from cellular phone use than will adults, because they start using cellular phones at earlier ages and will have longer lifetime exposures. FCC regulations should reflect how people are using their phones today. 
  • Provide meaningful consumer disclosure. The FCC has noted that it does not provide consumers with sufficient information about the RF exposure profile of individual phones to allow consumers to make informed purchasing decisions. The current metric of RF exposure available to consumers, the Specific Absorption Rate, is not an accurate predictor of actual exposure. AAP is supportive of FCC developing standards that provide consumers with the information they need to make informed choices in selecting mobile phone purchases, and to help parents to better understand any potential risks for their children. To that end, we support the use of metrics that are specific to the exposure children will experience. 

The AAP supports the reassessment of radiation standards for cell phones and other wireless products and the adoption of standards that are protective of children and reflect current use patterns. If you have questions, please contact Clara Filice in the AAP’s Washington Office at 202/347-8600.

Sincerely, 


Thomas K. McInerny, MD FAAP
President

Friday, July 19, 2013

FCC: Radiofrequency Radiation Exposure

July 19, 2013

The Federal Communications Commission (FCC) is considering changes to the exposure policy for radiofrequency (RF) radiation in the United States. The agency has requested comments be submitted by September 3, 2013.

We need to deliver scientific information to policy makers in a credible and understandable fashion to protect the future health and safety of our children and grandchildren.

Grassroots Environmental Education has launched a comments web site to help scientists, medical and public health professionals, and technical and policy experts from around the world to submit comments and peer-reviewed publications to the FCC.  

RF Rad Comments is a cooperative project bringing together individuals and organizations concerned about reducing human exposure to RF radiation (e.g., cell phones and cordless phones, Wi-Fi and Smart Meters).

The site describes two options for submitting comments: (1) through the RF Rad web site, or (2) directly to the FCC.

The site contains a list of key issues and reference documents. Since the site is a work in progress, your comments on the web site are appreciated. Please send them to gee@grassrootsinfo.org.

Please feel free to forward this message. We greatly appreciate your assistance in this effort.
 

Sincerely,

Joel M. Moskowitz, Ph.D.
School of Public Health
University of California, Berkeley

Electromagnetic Radiation Safety

Website:               http://saferemr.blogspot.com
Facebook:            http://www.facebook.com/SaferEMR
News Releases:   http://pressroom.prlog.org/jmm716
Twitter:                   @berkeleyprc

Wednesday, June 19, 2013

Electromagnetic Biology & Medicine: New Papers

Electromagnetic Biology and Medicine
Papers posted online June 19, 2013 

I added a sentence (or two)  to summarize the key conclusions of each study based upon the abstracts as I don't have access to the papers.  Many of these papers explore potential therapeutic applications of electromagnetic radiation.

The abstracts are available at:  http://informahealthcare.com/toc/ebm/0/0
 

Evidence that dirty electricity is causing the worldwide epidemics of obesity and diabetes  Diesel generator sets are a major source of dirty electricity. They are used to electrify small islands and places unreachable by the conventional electric grid. This accounts for the fact that diabetes prevalence, fasting plasma glucose and obesity are highest on small islands and other places and lowest in places with low levels of electrification.
 
Health effects of living near mobile phone base transceiver station (BTS) antennae: a report from Isfahan, Iran  Most of the symptoms such as nausea, headache, dizziness, irritability, discomfort, nervousness, depression, sleep disturbance, memory loss and lowering of libido were statistically significant in inhabitants living near the BTS antenna (<300 m distances) compared to those living far from it. Cellular phone BTS antenna should not be sited closer than 300 m to populations to minimize exposure of neighbors.

Long-term exposure to a pulsed magnetic field (1.5 mT, 25 Hz) increases genomic DNA spontaneous degradation  Long-term exposure to a pulsed MF induces an increment in the DNA spontaneous degradation of yeast genomic DNA.

Reactive oxygen species elevation and recovery in Drosophila bodies and ovaries following short-term and long-term exposure to DECT base EMF The pulsed idle state of the DECT radiation induced free radical formation despite very low SAR, leading to accumulation of reactive oxygen species under continuous exposure, and in a recovery manner after interruption of radiation, possibly due to activation of the antioxidant machinery of the organism.
 
Assessing of plasma protein denaturation induced by exposure to cadmium, electromagnetic fields and their combined actions on rat  Combined exposure to cadmium and EMFs might increase the risk of plasma damage via enhancing free radical generation and protein oxidation.
 
Assessment of oxidant/antioxidant status in saliva of cell phone users  No relationship between exposure to radio frequency radiation and changes in the salivary oxidant/antioxidant profile were found.
  
Effect of long-term 50 Hz magnetic field exposure on the micronucleated polychromatic erythrocytes of mice   Administration of antioxidant substances with radioprotective capacities known to act through the elimination of free radicals did not diminish the genotoxic effect induced by ELM-MF.
  
Influence of pulsed electromagnetic and pulsed vector magnetic potential field on the growth of tumor cells  A pulsed EMF of 125 and 625 Hz for 24-48 hours increased proliferation activity in 2 types of cancer cell lines. In contrast, no method created a significant inhibitory effect of hypothetic pulsed vector magnetic potential field on tumor cells.
 
Comparison of the outcomes of repetitive transcranial magnetic stimulation (RTMS) to the ipsilateral and contralateral auditory cortex in unilateral tinnitus  Daily treatment with 1 Hz rTMS ipsilaterally and contralaterally to the side of tinnitus both had significant beneficial effects. The laterality of stimulation does not matter.
 
Variable spatial magnetic field influences peripheral nerve regeneration in rats   Strong spatial alternating magnetic field exerts positive effect on peripheral nerve regeneration.  This application could be developed for therapy of injured peripheral nerves.

The influence of spatial pulsed magnetic field application on neuropathic pain after tibial nerve transection in rat  Extremely low-frequency magnetic fields may be useful in neuropathic pain therapy.

A static magnetic field attenuates lipopolysaccharide-induced neuro-inflammatory response via IL-6-mediated pathway  A static magnetic field had positive effects on survival rate and histological outcomes of LPS-treated mice and decreased IL-6 expression in BV-2 cells by a phenomenon similar to endotoxin tolerance. SMF has potential for controlling LPS-induced excess neuro-inflammatory response.

Natural static magnetic field-induced apoptosis in liver cancer cell   Different cell types require different factors like rotary frequency and treatment time to induce apoptosis.

EMOST: elimination of chronic constipation and diarrhea by low-frequency and intensity electromagnetic fields  Reports on effectiveness of the EMOST (Electro-Magnetic-Own-Signal-Treatment) for chronic constipation and diarrhea in two cases. 

The effects of pulsed magnetic field exposure on the permeability of leukemia cancer cells  Pulsed magnetic field can increase permeability. The system gives optimal permeabilization when cells are exposed to 28 pulses with 1 Hz frequency. 

Long-term effects of 900 MHz radiofrequency radiation emitted from mobile phone on testicular tissue and epididymal semen quality   Long-term exposure of 900 MHz GSM RF radiation altered some reproductive parameters; however, the results were inconsistent and more research is needed

Extremely low-frequency magnetic fields can impair spermatogenesis recovery after reversible testicular damage induced by heat   Extremely low-frequency magnetic field may be harmful to fertility recovery in males affected by reversible testicular damage. 

Investigating short-term exposure to electromagnetic fields on reproductive capacity of invertebrates in the field situation   No impact on reproductive capacity was observed.
 
Reduction of laser-induced retinal injury applying the combination of the 3D variable electric and magnetic fields in “vivo”  Eye retina damaged by YAG laser radiation can be rehabilitated via Oscillating Low Frequency Electro-Magnetic Fields.
 
Effect of insulating layer material on RF-induced heating for external fixation system in 1.5 T MRI system 

The abstracts are available at:  http://informahealthcare.com/toc/ebm/0/0


Monday, June 3, 2013

San Francisco: Cell Phone Safety Warnings


San Francisco updated its cell phone safety recommendations on the city’s web site following the settlement of a lawsuit filed by the CTIA—The Wireless Association that blocked implementation of the cell phone “right to know” law adopted by the city in 2010.

After a three-year battle, the city decided to disband with its cell phone law rather than continue to fight the CTIA and risk having to pay the industry’s legal fees. The case was settled “in exchange for a waiver of attorneys' fees” even though the city believes the “Ninth Circuit’s opinion is deeply flawed.” (1)

Meanwhile, the CTIA has been citing the Ninth Circuit’s opinion around the country in an effort to deter state and local policy makers from adopting cell phone “right to know” laws.

However, the city’s web site points out that because the court’s decision is unpublished, it only applies to San Francisco. Furthermore, the decision cannot serve as a precedent in any future litigation (1). Thus it is inappropriate for the industry to cite this case as a precedent for other jurisdictions.

The city reminds visitors to its web site that “the World Health Organization classified cell phone radiation as ‘possibly carcinogenic to humans (Group 2B)’ based on increased risk for glioma, a malignant type of brain cancer, associated with wireless phone use.” (1) 

In addition to increased risk for glioma, the World Health Organization included increased risk for acoustic neuroma, a tumor on the nerve from the ear to the brain, in its newly published monograph about cell phone radiation and cancer. (2)

San Francisco recommends on its web site the following strategies to reduce exposure to RF energy from cell phones. The goal is to increase the distance between your body and your cell phone whenever using and carrying the device.  (3)
  • “Limit cell phone use by children: Developing brains and thinner skulls lead to higher absorption in children.
  • Use a headset, speakerphone, or text instead: Exposure decreases rapidly with increasing distance from phone.
  • Use a belt clip or keep your phone in a knapsack, briefcase, or handbag to keep some distance between your phone and body: Do not carry your phone directly on your body or at least maintain the recommended safe distance specified in your phones’ user manual.
  • Avoid using your cell phone in areas with a weak signal (in elevators, on transit, or when indicated by your phone): Using a cell phone in areas of good reception decreases exposure by allowing the phone to transmit at reduced power.
  • Reduce the number and length of calls.
  • Turn off your cell phone when not in use.”  (3)

References

(1) SF Environment. Using Cell Phones Safely. URL: http://www.sfenvironment.org/article/safer-practices/using-cell-phones-safely.

(2) Non-ionizing radiation, Part II: Radiofrequency electromagnetic fields / IARC Working Group on the Evaluation of Carcinogenic Risks to Humans (2011: Lyon, France).  Vol. 102 (2013). URL: http://monographs.iarc.fr/ENG/Monographs/vol102/index.php.

(3) SF Environment. How can I reduce my exposure to radiofrequency-energy from cell phones? URL: http://www.sfenvironment.org/solution/how-can-i-reduce-my-exposure-to-radiofrequency-energy-from-cell-phones.