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The science behind meditation, and why it makes you feel better
Meditation yields a surprising number of health benefits, including stress reduction, improved attention, better memory, and even increased creativity and feelings of compassion. But how can something as simple as focusing on a single object produce such dramatic results? Here’s what the growing body of scientific evidence is telling us about meditation and how it can change the way our brains function.
Before we get started it’s worth doing a quick review of what is actually meant by meditation. The practice can take on many different forms, but the one technique that appears most beneficial, and which also happens to be among the most traditional, is called mindfulness meditation, or focused attention.
By mindfulness, practitioners are asked to focus their thoughts on one thought and one thought alone. An overarching goal is to be firmly affixed to the present moment. This typically means concentrating on the breath — observing each inhalation and exhalation — and without consideration to other thoughts. When a “stray” thought arises, the practitioner must be quick to recognize it, and then turn back to the focus of their attention. And it doesn’t just have to be the breath; any single thought, like a mantra, will do.
Now, if you’ve ever tried it, you know how unbelievably difficult this is — particularly in this day in age when our attention spans are taxed to the limit. Our minds are notorious at wandering and moving from thought-to-thought; it’s hard sometimes to string just a few seconds of focused attention together.
And indeed, notions that meditation is simply about relaxation or cleansing the mind of allthoughts are common misconceptions. Meditation is hard work and it takes a lot of practice to get better. The more you do it, the easier it becomes to stay focused. Progress can be measured by how long a single thought can be focused upon without straying.
Remarkably, for something so exceedingly simple, it can produce an astounding number of health benefits. Eager to learn more, a growing number of scientists are looking into the cognitive effects of meditation, including studies on Buddhist monks. And they’re learning that meditation is a very powerful tool indeed.
As a quick aside, most of the studies cited here consider the benefits of focused attention. That’s not to suggest that other practices, like open attention, can’t yield positive results as well.
Changes to the Brain
Buddhists have meditated for literally thousands of years. They’re familiar with its positive effects, including the way it works to instill the inner strength and insight required for the overarching spiritual practice; meditation, or “sitting,” is to Buddhist monks what prayer is to Christians. But instead of trying to hack into the mind of God, Buddhists are trying to hack into their own mind to harness it under control.
But it has only been in recent times that neuroscientists have been able to peer directly into the brain to see what’s going on. The advent of fMRIs and other brain scanning techniques have largely paved the way.
For example, neuroscientists observing MRI scans have learned that meditation strengthens the brain by reinforcing the connections between brain cells. A 2012 study showed that people who meditate exhibit higher levels of gyrification — the “folding” of the cerebral cortex as a result of growth, which in turn may allow the brain to process information faster. Though the research did not prove this directly, scientists suspect that gyrification is responsible for making the brain better at processing information, making decisions, forming memories, and improving attention.
Indeed, as much of the research is showing, meditation causes the brain to undergo physical changes, many of which are beneficial. Other studies, for example, have shown that meditation is linked to cortical thickness, which can result in decreased sensitivity to pain.
Or take the 2009 study with the descriptive title, “Long-term meditation is associated with increased gray matter density in the brain stem.” Neuroscientists used MRIs to compare the brains of meditators with non-meditators. The structural differences observed led the scientists to speculate that certain benefits, like improved cognitive, emotional, and immune responses, can be tied to this growth and its positive effects on breathing and heart rate (cardiorespiratory control).
The integrity of gray matter, which is a major player in the central nervous system, certainly appears to benefit. Meditation has been linked to larger hippocampal and frontal volumes of gray matter, resulting in more positive emotions, the retention of emotional stability, and more mindful behavior (heightened focus during day-to-day living). Meditation has also been shown to have neuroprotective attributes; it can diminish age-related effects on gray matter and reduce cognitive decline.
A study from earlier this year showed that meditators have a different expression of brain metabolites than healthy non-meditators, specifically those metabolites linked to anxiety and depression.
But it’s not just the physical and chemical components of the brain that’s affected by meditation. Neuroscientists have documented the way it impacts on brain activity itself. For example, meditation has been associated with decreased activity in default mode network activity and connectivity — those undesirable brain functions responsible for lapses of attention and disorders such as anxiety, ADHD — and even the buildup of beta amyloid plaques in Alzheimer’s disease.
And finally, meditation has been linked to dramatic changes in electrical brain activity, namely increased Theta and Alpha EEG activity, which is associated with wakeful and relaxed attention.
Health Benefits
While most of the studies listed above addressed the neuro-cognitive aspects of meditation, other studies have correlated meditation with many of the health benefits already described.
Perhaps the most significant benefit of meditation is its ability to improve attention. In 2010, researchers looked at participants who practiced focused attention meditation for about five hours each day over the course of three months (which is a lot!). After conducting concentration tests, the participants were shown to have an easier time sustaining voluntary attention. Which makes sense; if you can concentrate for extended periods of time during meditation, it should carry over to daily life. Focused attention is very much like a muscle, one that needs to be strengthened through exercise.
As an aside, five hours of meditation per day is a bit excessive. Other studies show that 20 minutes a day is all that’s required to get beneficial results, like stress reduction.
Indeed, other research has shown that even a little bit of meditation can help. Studies indicate that, after 10 intensive days of meditation (pdf), people can experience significant improvements in mindfulness and contemplative thoughts, the alleviation of depressive symptoms, and boosts to working memory and sustained attention.
A not-so-surprising study from last year showed that meditation can significantly reduce stress after just eight weeks of training (pdf; more here). Participants who meditated, as compared to those who did not, performed better on stressful multitasking tests. This may have something to do with reduced levels of cortisol, which is a stress hormone. And interestingly, meditatingbefore a stressful situation may help reduce feelings of stress during the event.
For you creative types, open-monitoring (OM) meditation can promote idea generation. OM meditation is basically the polar opposite of focused attention meditation, requiring practitioners to non-reactively monitor the content of experience from moment to moment.
And lastly, meditation has also been shown to increase levels of empathy, but it has to come from a specific practice known as loving-kindness-compassion meditation. It’s a kind of focused attention meditation, but the practitioner is asked to concentrate on feelings of love, compassion, and understanding. By comparing fMRI scans of novices to those of expert Buddhist monks (each with more than 10,000 hours of practice), researchers watched as emotional stimuli (sounds of people in distress) caused those areas of the brain linked to empathy light up; the monks exhibited greater degrees of empathetic response than the novices. In turn, the scientists speculate that compassion meditation can make a person more empathetic.
So what are you waiting for? Start sitting, and transform your brain!
Image: “Theologue” by Alex Grey.
Trametes Versicolor: Turkey Tail Mushrooms Help Immune System Fight Cancer
A promising clinical study shows that the turkey tail mushroom (Trametes versicolor) improves the immune systems of breast cancer patients. The multiyear study, funded by the National Institutes of Health (NIH), tracked whether or not turkey tails could positively affect the immune system of patients rebound after they ended their radiation therapy.
Immunity — as measured by the number of lymphocyte cells and natural killer cell activity — usually declines dramatically after radiotherapy. Natural killer (NK) cells protect us from tumors and viruses. Researchers at the University of Minnesota Medical School and Bastyr University Research Institute hypothesized that breast cancer patients’ health can be improved after radiation treatment if NK cell counts increased quickly to attack remaining cancerous cells.
The study titled “Phase I Clinical Trial of Trametes versicolor in Women with Breast Cancer,” recently published in the ISRN Oncology Journal, shows that turkey tail mushrooms can augment conventional therapies for treating breast cancer by increasing NK and CD8+T cell activity. This study suggests that turkey tail mushrooms are an effective adjunct to conventional chemotherapeutic medicines and radiation therapy. The authors concluded:
… research by our center continues to indicate that Trametes versicolor represents a novel immune therapy with significant applications in cancer treatment … The CD8+ T cell counts over the 9-week dose escalation study were enhanced in the 9 gm Tv dose cohort compared to both the 3 g or 6 g group. One-way ANOVA was used to analyze the overall difference between dosage groups over the treatment period (2-4-6 weeks). It showed the statistically significant increase in the CD8+ cytotoxic T cells for the 9 g group compared to both the 3 g and 6 g group (F(2, 6) = 42.04, P = 0.0003).
Due to its long history of therapeutic use, however, turkey tail prepared and packaged as an immune therapy drug is unlikely to be patentable, deterring big pharmas from conducting costly clinical studies. Typically, the longer the historical use of natural medicines for treating an ailment, the less likely derivatized drugs from these natural products will be patentable. To fill this research gap, the NIH established The National Center for Complementary and Alternative Medicine (www.nccam.nih.gov), which funded and oversaw this study. NIH’s interest is not surprising — more than 70 percent of new drugs are estimated to originate from natural sources.
Turkey tail mushrooms have been used to treat various maladies for hundreds of years in Asia, Europe, and by indigenous peoples in North America. Records of turkey tail brewed as medicinal tea date from the early 15th century, during the Ming Dynasty in China. Our ancestors certainly encountered them and most likely explored their uses long before written history. Since the late 1960s, researchers in Japan have focused on how turkey tail benefits human health and how extracts of turkey tail can boost the immune system.
What are turkey tail mushrooms?
This super-abundant colorful mushroom grows on dead trees, logs, branches, and stumps. Turkey tail mushrooms are called bracket fungi, meaning that they form thin, leather-like and leaf-like structures in concentric circles. Rather than gills underneath, as in shiitake mushrooms, their undersides have tiny pores, which emit spores, placing them in the polypore family. These mushrooms grow throughout the world, practically wherever trees can be found. In fact, turkey tails are some of most common mushrooms found on wood on the planet.
They are commonly called “turkey tail” because their various colors: brown, orange, maroon, blue and green — reminiscent of the plume of feathers in turkeys. In China, their common name is yun zhi. In Japan, this mushroom is known as kawaritake or “cloud mushrooms,” invoking an image of swirling clouds overhead. In many Asian cultures, turkey tails’ incurving cloud forms symbolize longevity and health, spiritual attunement and infinity.
What are the medicinal properties and how is it used?
Traditionally, our ancestors boiled mushrooms in water to make a soothing tea. Boiling served several purposes: killing contaminants, softening the flesh, and extracting the rich soluble polysaccharides. The mushrooms — called fruiting bodies by mycologists — are made of densely-compacted cobwebby cells called mycelium. With modern laboratory methods of cell tissue culture, the large-scale production of mycelium brought to light a whole new array of medicinal preparations. Nowadays, the commercial production of mycelium enables a cleaner and more digestible product than traditional mushroom preparations. Surprisingly, novel compounds are continually being discovered, which are not available using traditional preparations of the fruiting bodies, but are detectable within, and excreted from the rapidly growing mycelium.
The natural killer cells promoted by ingesting turkey tails also target virally-infected cells. Moreover, turkey tail mycelium excretes strong antiviral compounds, specifically active against Human papillomavirus (HPV), which causes cervical cancer, and hepatitis C virus (HEP-C), which causes liver cancer. Viruses that induce cancer are called “oncoviruses.” The virus-to-cancer connection is where medicinal mushrooms offer unique opportunities for medical research. The current thinking amongst many researchers is that turkey tails and other medicinal mushrooms lessen the odds of getting cancer by reducing causal co-factors such as oncoviruses.
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Sea Urchins Key to Carbon Capture The discovery that sea urchins use nickel particles to harness carbon dioxide from the sea could be the key to capturing tons of CO2 from the atmosphere. Experts at Newcastle Univ. have discovered that in the presence of a nickel catalyst, CO2 can be converted rapidly and cheaply into the harmless, solid mineral, calcium carbonate. This discovery, which is published today in the academic journal Catalysis Science & Technology, has the potential to revolutionize the way we capture and store carbon enabling us to significantly reduce CO2 emissions – the key greenhouse gas responsible for climate change. Read more: http://www.laboratoryequipment.com/news/2013/02/sea-urchins-key-carbon-capture
Sea Urchins Key to Carbon Capture The discovery that sea urchins use nickel particles to harness carbon dioxide from the sea could be the key to capturing tons of CO2 from the atmosphere. Experts at Newcastle Univ. have discovered that in the presence of a nickel catalyst, CO2 can be converted rapidly and cheaply into the harmless, solid mineral, calcium carbonate. This discovery, which is published today in the academic journal Catalysis Science & Technology, has the potential to revolutionize the way we capture and store carbon enabling us to significantly reduce CO2 emissions – the key greenhouse gas responsible for climate change. Read more: http://www.laboratoryequipment.com/news/2013/02/sea-urchins-key-carbon-capture
Scientists coax bacteria to produce pure gold nuggets Researchers have discovered bacteria with a Midas touch, capable of transforming toxic chemicals into pure 24-karat gold.
Problem~Arete Dream at The Wall, Oswego NY
Un-named purple problem at The Red Barn Rochester NY
Think I will start posting my bouldering problems and see if there are any other climbers out there
Curious george is curious
The curried carrot soup I just made is sooo good. I have missed this stuff.
Saw Zeus's erection yesterday
HUNGY
Watched Iron Chef and now I am craving some real good food, how much would it cost to get bobby flay to come cook me some ritzy food??
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