Showing posts with label Pesticides. Show all posts
Showing posts with label Pesticides. Show all posts

Monday, March 28, 2011

An Uncontrolled (& Out of Control) Experiment on American Children

Many people are intrigued by my home business. I love what I do . . . . my passion is to help de-tox households . . . .  one home at a time. I am also one heck of a great trainer in my field.
Many people have also asked me why I decided to work in this field of wellness. Here is part of an article from National Geographic Magazine that just may help answer that question.

Although many health statistics have been improving over the past few decades, a few illnesses are rising mysteriously.
  • From the early 1980s through the late 1990s, autism increased tenfold; from the early 1970s through the mid-1990s
  • one type of leukemia was up 62 percent
  • male birth defects doubled
  • childhood brain cancer was up 40 percent. 
Some experts suspect a link to the man-made chemicals that pervade our food, water, and air. There's little firm evidence. But over the years, one chemical after another that was thought to be harmless turned out otherwise once the facts were in. 

The classic example is lead.  This picture shows a lead paint Xray. 

In 1971 the U.S. Surgeon General declared that lead levels of 40 micrograms per deciliter of blood were safe. It's now known that any detectable lead can cause neurological damage in children, shaving off IQ points. 

From DDT to PCBs, the chemical industry has released compounds first and discovered damaging health effects later.

Regulators have often allowed a standard of innocent until proven guilty in what Leo Trasande, a pediatrician and environmental health specialist at Mount Sinai Hospital in New York City, calls "an uncontrolled experiment on America's children."
 A helpful resource and place to request more information.

Friday, August 6, 2010

15 Point Hit List (Neurotoxins and ADHD)


ADHD and Neurotoxins . . . . Connecting the Dots

My friend, Marie, used to rouse her three teenage children on Saturday mornings and begin the day by requiring everyone to help clean the house. I admired her determination to consistently teach this responsibility to her kids.

Interestingly enough, because Marie was so consistent I found that a curious pattern emerged.  Every Saturday afternoon, without fail, Marie's son exhibited hyperactive, "out of control" behavior after his cleaning chores.

Looking at the cause and effect of the son's behavior through my lens of awareness of how neurotoxic many cleaning chemicals are, I could see it would make sense that the son's central nervous system and brain could be reacting to these chemicals. Symptoms of neurotoxicity include lack of concentration, personality changes, depression, hyperactivity and the mimicking of psychiatric disorders.

Not being particularly "green," the cleaning products Sally bought for her kids to use were the standard store-bought fare readily available in supermarkets.
This brings to mind a couple of sad, but true, facts:
  1. Just because it is on the store shelf does not mean that it is safe.
     2.  The government has very limited power to regulate manufacturers.  In fact,
products that kill 50% of lab animals through ingestion or inhalation can still receive the federal regulatory designation "non-toxic".

To name a few examples of neurotoxins found in such products:

  1. VOCs  (furniture polish can contain VOCs) 
  2. neurotoxic disinfectants
  3.  petroleum distillates
  4. fragrances (scented products are notoriously neurotoxic)
  5.  and waxes (VOCs again in the solvents)
Pesticides take front seat in the arsenal of poisons that hurt the central nervous system and brain. After all, they are designed to kill. A new study reported in the June issue of Pediatrics, published online May 17, links organophosphate pesticide metabolites found in urine to a much higher incidence of Attention Deficit Hyperactivity Disorder (ADHD).

"Each 10-fold increase in urinary concentration of organophosphate metabolites was associated with a 55 percent to 72 percent increase in the odds of ADHD," study author Maryse F. Bouchard, PhD, of the Department of Environmental and Occupational Health, University of Montreal, told Medscape Psychiatry.

Another example of subtle neurotoxic exposure children suffer through that most adults miss is to the solvents in markers in art class. When my daughter was in school, one year the math class was the period after art class, and she said that the kids were always "off the walls" in math class. What a tragedy, and one that could so easily be avoided if schools stopped allowing neurotoxic art materials to be used. How many kids thought they were bad at math when the culprit was the colored markers?

I've often wondered why the dots haven't been connected by most people between neurotoxic chemicals and ADHD-type behavior. After all, if a neurotoxic chemical is known to cause depression, for example, and that chemical is being used, why do so few people (and almost no psychiatrists) say, oh my gosh, let's remove the neurotoxin?

At least one thing parents can do is to remove neurotoxins from the home. Here is the 15 Point Hit List. These are quick and easy solutions:
  • Yes to "green" dry cleaning using C02, no to dry cleaning with perchlorethelene (and NO hanging clothes in bedroom closets until they have first aired out -sans plastic dry cleaner bags- in another less "lived in" room. We use the garage unless it is boiling hot and in the summer we use the well ventilated  mud room)
  • Yes to vegetable-based Free and Clear detergents and cleaning products, no to cleaning products containing volatile organic chemicals (My company has great choices here).
  • Yes to natural furniture polishes like those made by my company - or simple jojoba oil (a natural wax), no to furniture polish made of volatile organic chemicals.
  • Yes to organic produce, no to highly processed foods.
  • Yes to safe integrated pest management, no to synthetic pesticides (Request information for @ least two replacement products in this category)
  • Yes to water-based markers, no to solvent-based markers.
  • Yes to food with natural food coloring, no to food with FD&C dyes
  • Yes to cedar and herbs for moths, no to moth balls.
  • Yes to natural essential oils for fragrance, no to synthetic perfumes and fragrances (Again my company hits a home run in this category!)
  • Yes to efficient heating systems, no to kerosene, open gas, or other systems that could leak carbon monoxide.
  • Yes to educating yourself about lead paint and other sources of lead, no to "hoping for the best"  if you live in a house built before 1978.
  • Take your shoes off in the house.
  • Filter your water - Brita works well (Also, have your tap water tested and do not be fooled into thinking bottled water is better).
  • Do not smoke and stay away from second hand smoke.
Simple steps such as these can make a big difference. Being away from neurotoxins helps you have more serene sleep, babies are less fussy, children concentration is improved, people are calmer and the lifestyle helps you have a better sense of well-being.

Article by, Anne B. Boyd (Huffington Post)
Edited by, Soutenus
Read more: 

Tuesday, September 8, 2009

“Monsanto Bill,” HR 875


Will the so-called “Monsanto bill,” HR 875 take away your access to healthy organic food? Find out the truth behind the Food Safety Modernization Act of 2009 and what YOU can do to protect your health.

The Organic Consumers Association (OCA) and the Alliance for Natural Health (ANH) agree that food safety needs to improve. However, both are concerned about whether new control measures would really be effective without severely hurting small, local agriculture.

In the meantime . . . .

Buy organic whenever possible. If you cannot buy organic, it’s important to know that some foods are more likely to be contaminated than others. Here’s a list of foods that are highest in pesticide residues and therefore, especially important to buy organic
  • Peaches – Considered the worst! Contain high residues of iprodione, classified as a probable human carcinogen by the Environmental Protection Agency (EPA) and methyl parathion, an insecticide and endocrine disrupter. 3
  • Apples
  • Bell peppers
  • Celery
  • Cherries
  • Spinach
  • Kale
  • Lettuce
  • Lemons – especially if zesting!
  • Green beans
  • Oats & Grains
  • Dairy and Eggs
  • Worth the read:
    We Don't Buy It

Monday, July 28, 2008

French Documentary

This is a must --- please take the time to watch this even if you do it in sections.
This is a documentary aired on French television - a documentary that Americans won’t ever see. The gigantic bio-tech corporation Monsanto is threatening to destroy the agricultural biodiversity which has served mankind for thousands of years



H/T: Nicene Truth

Saturday, March 8, 2008

Exterminating


I talk to people every day who hire exterminators to spray their houses & apartments.
The side effects of pesticides make looking at alternatives very important.
For example, did you realize that
  • Lindane, which is a cream given to people suffering from different insect bites, has been banned in California and many 3rd world countries.
  • The US Environmental Protection Agency has classified permethrin as a carcinogen because it causes lung tumors in lab rats. This is a cream that is used for insects.
  • Some bugs have grown resistant to pesticides and insecticides.
  • Pesticides are poisons that do not know when to stop killing.
Pesticides and insecticides do some serious collateral damage. They kill many animals that are good for the environment. These pesticides and insecticides are adversely affecting the health of people, too. Those affected first and most seriously are:
  • babies
  • babies in utero
  • pregnant women
  • children
  • older folks
  • people with allergies
  • people with asthma
  • people who get headaches and migraines
  • people with immune system problems
  • people with eczema and psoriasis
Melaleuca has some wonderful alternatives -- call Melaleuca ( 800 282 3000 ) and find out what you can use to replace the toxic poisons that you may using. AND! Spread the word -- let others know there is a solution!
logontop.jpg




Friday, September 7, 2007

Do You Exterminate?

I talk to people every day who hire exterminators to spray their houses & apartments.
The side effects of pesticides make looking at alternatives very important.

Did you know that:
~~> Lindane, which is given to people suffering from different insect bites and as a treatment for lice, has been banned in California and many 3rd world countries.
~~> The US Environmental Protection Agency has classified permethrin as a carcinogen because it causes lung tumors in lab rats. This is a cream that is used for insects.
~~> Some bugs have grown resistant to pesticides and insecticides.
AND, keep in mind that:

~~> Pesticides are poisons that do not know when to stop killing.
~~> Pesticides and insecticides do some serious collateral damage. They kill many animals that are good for the environment.
~~> These pesticides and insecticides are adversely affecting the health of people, too.
Those affected first and most seriously are:
  • babies
  • babies in utero
  • pregnant women
  • children
  • older folks
  • people with allergies
  • people with asthma
  • people who get headaches and migraines
  • people with immune system problems
  • people with eczema and psoriasis

Melaleuca has some wonderful alternatives -- go to http://www.5678.fourpointwellness.com/ and request inormation! Ask what you can use to replace the toxic poisons that you may using. AND! Spread the word -- let others know there is a solution!

Saturday, August 4, 2007

5Q&As on Pesticides

The Questions


1)What was the most dangerous pesticides ever used that was mostly used in the 1950's?

2) Can pesticides effect bodies of water such as lakes, streams, rivers, cricks, or even privately owned wells? How?

3) What are the different types of pesticides?

4) How many people are poisoned and become sick because of exposure to pesticides a year?

5) The United States has banned many kinds of pesticides from our country but hasn't banned them from producing dangerous pesticides and exporting them to other countries. How much do you think the United States exports every hour?

6) About how many people die a year because of pesticides?


The Answers:
1) DDT

2) Yes, pesticides can leak into the water or leak into the soil and go through the soil into the water.

3) SEE LIST BELOW

4) 25 million people mainly in the southern hemisphere

5) 25 tons

6) about 220,000 people


#3)

Algicides: Control algae in lakes, canals, swimming pools, water tanks, and other sites.

Antifouling agents: Kill or repel organisms that attach to underwater surfaces, such as boat bottoms.

Antimircobials - kill microrganisms

Attractants : Attract pests (for example, to lure an insect or rodent to a trap). (However, food is not considered a pesticide when used as an attractant.)

Biopesticides: Biopesticides are certain types of pesticides derived from such natural materials as animals, plants, bacteria, and certain minerals.

Biocides: Kill microorganisms.

Disinfectants and sanitizers: Kill or inactivate disease-producing microorganisms on inanimate objects.

Fungicides: Kill fungi (including blights, mildews, molds, and rusts).

Fumigants: Produce gas or vapor intended to destroy pests in buildings or soil.

Herbicides: Kill weeds and other plants that grow where they are not wanted.


Insecticides: Kill insects and other arthropods.

Miticides (also called acaricides): Kill mites that feed on plants and animals.

Microbial pesticides: Microorganisms that kill, inhibit, or out compete pests, including insects or other microorganisms.

Molluscicides: Kill snails and slugs.

Nematicides: Kill nematodes (microscopic, worm-like organisms that feed on plant roots).

Ovicides: Kill eggs of insects and mites.

Pheromones: Biochemicals used to disrupt the mating behavior of insects.

Repellents: Repel pests, including insects (such as mosquitoes) and birds.

Rodenticides: Control mice and other rodents



SOURCE: Wisconsin CyberEnglish9 Student

Sunday, June 17, 2007

In Harm's Way: Toxic Threats to Child Development

This report examines the contribution of toxic chemicals to neurodevelop-mental, learning, and behavioral disabilities in children. These disabilities are clearly the result of complex interactions among genetic, environmental and social factors that impact children during vulnerable periods of development. Toxic exposures deserve special scrutiny because they are preventable causes of harm.

1. An epidemic of developmental, learning, and behavioral disabilities has become evident among children.
It is estimated that nearly 12 million children (17%) in the United States under age 18 suffer from one or more learning, developmental, or behavioral disabilities.
Attention deficit hyperactivity disorder (ADHD), according to conservative estimates, affects 3 to 6% of all school children, though recent evidence suggests the prevalence may be as high as 17%. The number of children taking the drug Ritalin for this disorder has roughly doubled every 4-7 years since 1971 to reach its current estimate of about 1.5 million.
Learning disabilities alone may affect approximately 5-10% of children in public schools.
The number of children in special education programs classified with learning disabilities increased 191% from 1977-1994.
Approximately 1% of all children are mentally retarded.
The incidence of autism may be as high as 2 per 1000 children. One study of autism prevalence between 1966 and 1997 showed a doubling of rates over that time frame. Within the state of California, the number of children entered into the autism registry increased by 210% between 1987 and 1998. These trends may reflect true increases, improved detection, reporting or record keeping, or some combination of these factors. Whether new or newly recognized, these statistics suggest a problem of epidemic proportion.

2. Animal and human studies demonstrate that a variety of chemicals commonly encountered in industry and the home can contribute to developmental, learning, and behavioral disabilities.
Developmental neurotoxicants are chemicals that are toxic to the developing brain. They include the metals lead, mercury, cadmium, and manganese; nicotine; pesticides such as organophosphates and others that are widely used in homes and schools; dioxin and PCBs that bioaccumu-late in the food chain; and solvents, including ethanol and others used in paints, glues and cleaning solutions. These chemicals may be directly toxic to cells or interfere with hormones (endocrine disruptors), neurotransmitters, or other growth factors.
Lead
Increases in blood lead levels during infancy and childhood are associated with attention deficits, increased impulsiveness, reduced school performance, aggression, and delinquent behavior.
Effects on learning are seen at blood lead levels below those currently considered "safe."
Mercury
Large fetal exposures to methylmercury cause mental retardation, gait and visual disturbances.
Smaller fetal exposures, such as those resulting from regular maternal fish consumption, have been implicated in language, attention, and memory impairments that appear to be permanent.
Manganese
Unlike many other metals, some manganese is essential as a catalyst in several critically important enzymatic processes. However, several studies report a relationship between excessive childhood levels of manganese exposure and hyperactivity or learning disabilities.
Nicotine
Children born to women who smoke during pregnancy are at risk for IQ deficits, learning disorders, and attention deficits.
Children born to women who are passively exposed to cigarette smoke are also at risk for impaired speech, language skills, and intelligence.
Dioxins and PCBs
Monkeys exposed to dioxin as fetuses show evidence of learning disabilities.
Humans and animals exposed to low levels of PCBs as fetuses have learning disabilities.
Children exposed to PCBs during fetal life show IQ deficits, hyperactivity, and attention deficits when tested years later.
Pesticides
Animal tests of pesticides belonging to the commonly-used organophosphate class of chemicals show that small single doses on a critical day of development can cause hyperactivity and permanent changes in neurotransmitter receptor levels in the brain.
One of the most commonly used organophosphates, chlorpyrifos (Dursban), decreases DNA synthesis in the developing brain, resulting in deficits in cell numbers.
Some pyrethroids, another commonly used class of pesticides, also cause permanent hyperactivity in animals exposed to small doses on a single critical day of development.
Children exposed to a variety of pesticides in an agricultural community in Mexico show impaired stamina, coordination, memory, and capacity to represent familiar subjects in drawings.

Solvents
Exposure to organic solvents during development may cause a spectrum of disorders including structural birth defects, hyperactivity, attention deficits, reduced IQ, learning and memory deficiencies.
As little as one alcoholic drink a day by a mother during pregnancy may cause her offspring to exhibit impulsive behavior and lasting deficits in memory, IQ, school performance, and social adaptability.
Animal and limited human studies show that exposures to common chemicals like toluene, trichloroethylene, xylene, and styrene during pregnancy can also cause learning deficiencies and altered behavior in offspring, particularly after fairly large exposures.

3. A deluge of highly technical information has created communication gaps within the field of child development.
The recent explosion of research in the many sciences related to child development has produced a glut of highly technical information not readily understood by those outside the field in which the research was performed.
A communication gap has resulted, dividing fields of research and separating the domains of research, clinical practice, and the public.
Behavior and cognition can be described using clinical disorders, such as ADHD or Asperger's syndrome, which are categorical and qualitative. Alternatively, behavior and cognition can be described using abilities/traits, such as attention and memory, which are continuous and quantitative. Abilities/traits cluster into disorders in various ways and are emerging as an important bridge among the scientific disciplines focusing on child development.

4. Although genetic factors are important, they should not be viewed in isolation.
Certain genes may be susceptible to or cause individuals to be more susceptible to environmental "triggers." Particular vulnerability to a chemical exposure may be the result of a single or multiple interacting genes.

For example:
Gene-coding for certain enzymes can influence how chemicals are metabolized or stored in the body, or increase a person's susceptibility to a chemical. For example, a gene coding for the enzyme, delta aminolevulinic acid dehydratase (ALA-D), can influence lead metabolism, bone storage of lead, and blood lead levels.
Two genes increase susceptibility to organophosphate pesticides. One, carried by 4% of the population, results in lower levels of acetylcholinesterase, the target enzyme of organophosphates. The other, carried by 30-40% of the population, results in reductions in paroxonase, an enzyme that plays an important role in breaking down organophosphate pesticides.
Antibody reactions to infections is another important gene-environment interaction. For example, studies suggest that "PANDAS" (pediatric autoimmune neuropsychiatric disorders associated with streptococcal infection), that may affect patients with obsessive compulsive disorder, Tourette's syndrome and tics, result from streptococcal antibodies that cross react with critical brain structures in genetically susceptible children.

5. Neurotoxicants are not merely a potential threat to children. In some instances, adverse impacts are seen at current exposure levels.
According to EPA estimates, about 1.16 million women in the U.S. of childbearing years eat sufficient amounts of mercury-contaminated fish to risk damaging brain development of their children.
Breast-fed infants are exposed to levels of dioxin that exceed adult exposures by as much as a factor of 50. Dioxin exposures of this magnitude have been shown to cause abnormal social behavior in monkeys exposed before birth through the maternal diet. (While breast milk contaminants may compromise some of the cognitive benefits of breast feeding, breast milk remains strongly preferred over infant formula due to numerous important benefits to infant health.)
Prenatal exposure to PCBs at ambient environmental levels adversely affects brain development, causing attention and IQ deficits, which remain detectable years later and may be permanent.
Neurotoxicants that appear to have trivial effects on an individual have profound impacts when applied across populations. For example, a loss of 5 points in IQ is of minimal significance in a person with an average IQ. However a shift of 5 IQ points in the average IQ of a population of 260 million increases the number of functionally disabled by over 50% (from 6 to 9.4 million), and decreases the number of gifted by over 50% (from 6 to 2.6 million).

6. Vast quantities of neurotoxic chemicals are released into the environment each year.
Of the top 20 chemicals reported by the Toxics Release Inventory as released in the largest quantities into the environment in 1997, nearly three-quarters are known or suspected neurotoxicants. They include methanol, ammonia, manganese compounds, toluene, phosphoric acid, xylene, n-hexane, chlorine, methyl ethyl ketone, carbon disulfide, dichloromethane, styrene, lead compounds, and glycol ethers.


Over a billion pounds of these neurotoxic chemicals were released directly on-site by large, industrial facilities into the air, water, and land.
Vast quantities of neurotoxic chemicals are also used in industrial processes and incorporated into products. For example, according to 1997 data from the Massachusetts Toxics Use Reduction Act, over half of the top twenty chemicals in use (over 500 million pounds), and half of those incorporated into products in Massachusetts, are known or suspected neurotoxicants.
Use of lead in manufacturing increased 77% in Massachusetts between 1990-1997.
An additional 1.2 billion pounds of registered pesticide products are intentionally and legally released each year in the United States.
Mercury contamination of our waterways is so widespread that 40 states have issued one or more health advisories warning pregnant women or women of reproductive age to avoid or limit fish consumption. Ten states have issued advisories for every lake and river within the state's borders.

7. Environmental releases often lead to human exposures with potential for harm. Dispersion of these chemicals is global.
One million children in the US exceed the currently accepted threshold for blood lead level exposure that affects behavior and cognition (10 micrograms/dl). Updating the toxic threshold in keeping with the results of the most recent studies would further lower this threshold, resulting in the addition of millions children to the roles of those impaired by lead exposure.
A metabolite of the pesticide chlorpyrifos is present in the urine of over 80% of adults and 90% of children from representative population samples.
Inuit mothers in the Arctic, far from sources of industrial pollution, have some of the highest levels of PCBs in their breast milk as a result of a diet rich in marine mammal fat.

8. The historical record clearly reveals that our scientific understanding of the effects of toxic exposures is not sufficiently developed to accurately predict the impact of toxicants, and that our regulatory regime has failed to protect children.
a. As testing procedures advance, we learn that lower and lower doses are harmful.
The historical record shows that "safe thresholds" for known neurotoxicants have been continuously revised downward as scientific knowledge advances. For example, the initial "safe" blood lead level was set at 60 micrograms/deciliter (ug/dl) in 1960. This was revised down to 10 ug/dl in 1990. Current studies suggest that lead may have no identifiable exposure level that is "safe." The estimated "toxic threshold" for mercury has also relentlessly fallen, and like lead, any level of exposure may be harmful. Such results raise serious questions about the adequacy of the current regulatory regime, which, by design, permits children to be exposed up to "toxic thresholds" that rapidly become obsolete.
b. Most chemicals are not tested for their general toxicity in animals or humans, not to mention toxicity to a child's developing brain specifically.
Nearly 75% of the top high production and volume chemicals have undergone little or no toxicity testing. However, the EPA estimates that up to 28% of all chemicals in the current inventory of about 80,000 have neurotoxic potential. In addition:
Complete tests for developmental neurotoxicity have been submitted to EPA for only 12 chemicals - nine pesticides and three solvents Ð as of December 1998.
Testing for developmental neurotoxicity is not required even in the registration or re-registration of pesticides, one of the strictest areas of chemical regulation
c. Even when regulated, the risks from chemical exposure are estimated for one chemical at a time, while children are exposed to many toxicants in complex mixtures throughout development. Multiple chemical exposures often interact to magnify damaging effects or cause new types of harm.
With the exception of pesticides used on the food supply, current regimes regulate only one chemical at a time and do not take into account the potential for interactions. Since real world exposures are to multiple chemicals, current regulatory standards, based on single chemical exposures, are inherently incapable of providing adequate margins of safety.
New studies in humans and in the laboratory show that PCBs and mercury interact to cause harm at lower thresholds than either substance acting alone.
A recent 5-year pesticide study suggests that combinations of commonly used agricultural chemicals, in levels typically found in groundwater, can significantly influence immune and endocrine systems, as well as neurological function, in laboratory animals.
d. Animal studies generally underestimate human vulnerability to neurotoxicants.
Animal studies of lead, mercury and PCBs each underestimated the levels of exposures that cause effects in humans by 100-10,000-fold.
Regulatory decisions that rely largely on toxicity testing in genetically similar animals under controlled laboratory conditions will continue to fail to reflect threats to the capacities and complexity of the human brain as well as important gene-environment interactions.

9. Protecting our children from preventable and potentially harmful exposures requires a precautionary policy that can only occur with basic changes in the regulatory process.
The inability of the current regulatory system to protect public health is not surprising, considering the disproportionate influence of special interests in the regulatory process. When there is evidence for serious, widespread and irreversible harm, as described in this report, residual scientific uncertainties should not be used to delay precautionary actions. Actions should include reduction and or elimination of exposures as well as further scientific investigation of developmental neurotoxicity.

Framework for Understanding Learning, behavior, and developmental disabilities in children are clearly the result of complex interactions among chemical, genetic and social-environmental factors that influence children during vulnerable periods of development. This report focuses on the role of toxic exposures since they are a preventable cause of harm. The cognitive and behavioral characteristics that result from these interacting influences can be described as traits or abilities, such as attention or memory, which can be measured quantitatively using a variety of neuropsychological tests. Aggregates of these traits are often described using diagnostic labels that identify clinical syndromes, such as attention deficit/hyperactivity disorder, autism or learning disability. Such labels are useful for the purpose of providing clinical interventions. However, traits are generally better suited to research since they can be readily defined, quantitatively measured, and are more amenable to animal models. As a result, a large body of scientific data has begun to describe the effects of chemicals or other influences on neurodevelopment in terms of effects on traits, rather than on clinical syndromes associated with diagnostic labels. In addition, traits provide a common denominator between different fields of research, and allow us to acknowledge influences on the neurocognitive function of "normal" populations, as well as on those with diagnostic labels.
To go directly to the full 115 page report: http://www.preventingharm.org/pdf/IHWcomplete.pdf.
Originating website:
http://www.preventingharm.org/.

Pesticides and Flawed Frogs

Raising new questions about the environmental risks of some widely used farm chemicals, scientists are reporting today the first evidence linking agricultural runoff to grotesque hind-limb deformities in frogs.

Two frogs (upper left and upper right) have normal limbs, while the other four have deformities.
Penn State University photo by Joseph Kiesecker via Associated Press

Researchers said frogs appear to be made more vulnerable to a common parasite when exposed to the pesticides atrazine and malathion. The parasite, a burrowing trematode worm, tends to infect the hindquarters of developing tadpoles.

Atrazine is part of a family of chemicals that rank among the world's most widely used weed killers.
Malathion is commonly applied to control mosquitoes and other insects, and pharmaceutical grades are approved for killing head lice.

Both products are controversial but considered safe for commercial use in the United States.
Now, effects of these and other chemicals on the environment are coming under new scrutiny. This is most certainly an early warning of health problems affecting humans.

At last count, wild frogs with missing or extra hind limbs have been observed in at least 43 states and five Canadian provinces.
It is important to know that for malathion and atrazine; significant effects were seen even at concentrations considered safe for drinking water by the Environmental Protection Agency.

original article by: CARL T HALL / SF Chronicle 9jul02
You can read the whole ariticle at:

Friday, June 15, 2007

Pesticides Linked to Brain Tumors

French research suggests that farm workers who are exposed to high levels of pesticides have an increased risk of developing brain tumors, and it also showed a higher risk potential among people who used the chemicals on houseplants.

An Occupational and Environmental Medicine study suggested that the risk to agricultural workers exposed to the highest levels of pesticides was more than doubled than for people who used lower levels.

The research was conducted in the Bordeaux wine-growing region of France, where the majority of the pesticides used are fungicides, and the findings of the study were based on an analysis of 221 cases of brain tumors by the French Institute of Public Health, Epidemiology and Development. The research scientists were, however, unable to get sufficient specific data to prove without any doubt, what types of pesticide were likely to cause brain tumors. Pesticide exposure has also been linked with Parkinson’s disease in another study.
Tuesday, 05 June 2007

Wednesday, June 13, 2007

9th Grade Student's Essay Rocks!

Pesticides do not know when to stop killing!

It is simple. With some basic research anyone can easily learn enough facts to make some important changes.


This comic comes from a student's website.
I loved his online essay -- please check it out. This link will take you directly to the "Table of Contents" for his pesticides essay.



Blog Widget by LinkWithin