How Not To Die – by Dr. Michael Greger
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We previously reviewed this book some years ago, but we’re revisiting it now because:
- It really is a book that should be in every healthspan-enjoyer’s collection
- Our book reviews back then were not as comprehensive as now (though we still generally try to fit into the “it takes about one minute to read this review” idea, sometimes we’ll spend a little extra time).
Dr. Greger (of “Dr. Greger’s Daily Dozen” fame) outlines for us in cold hard facts and stats what’s most likely to be our cause of death. While this is not a cheery premise for a book, he then sets out to work back from there—what could have prevented those specific things?
Thus, while the book doesn’t confer immortality (the title is not “how to not die”, after all), it does teach us how not to die—i.e, from heart disease, lung diseases, brain diseases, digestive cancers, infections, diabetes, high blood pressure, liver disease, blood cancers, kidney disease, breast cancer, suicidal depression, prostate cancer, Parkinson’s disease, and even iatrogenic causes.
This it does with a lot of solid science, explained for the layperson, and/but without holding back when it comes to big words, and a lot of them, at that. If you want to add in daily exercises, just lifting the book could be a start; weighing in at 678 pages, it’s an information-dense tome that’s more likely to be sifted through than read cover-to-cover.
The style is thus dense science somewhat editorialized for lay readability, and well-evidenced with around 3,000 citations. That’s not a typo; there are 178 pages of bibliography at the back with about 15–20 scientific references per page.
In terms of practical use, he does also devote chapters to that, it’s not just all textbook. Indeed, he discusses the reasonings behind the items, portion sizes, and quantities of his “daily dozen” foods, so that the reader will understand how much bang-for-buck they deliver, and then it’ll seem a lot less like an arbitrary list, and more likely to be adopted and maintained.
Bottom line: if you care about not getting life-threatening illnesses (which at the end of the day, come to most people at some point), then this book is a must-read.
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Hate salad or veggies? Just keep eating them. Here’s how our tastebuds adapt to what we eat
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Do you hate salad? It’s OK if you do, there are plenty of foods in the world, and lots of different ways to prepare them.
But given almost all of us don’t eat enough vegetables, even though most of us (81%) know eating more vegetables is a simple way to improve our health, you might want to try.
If this idea makes you miserable, fear not, with time and a little effort you can make friends with salad.
Why don’t I like salads?
It’s an unfortunate quirk of evolution that vegetables are so good for us but they aren’t all immediately tasty to all of us. We have evolved to enjoy the sweet or umami (savoury) taste of higher energy foods, because starvation is a more immediate risk than long-term health.
Vegetables aren’t particularly high energy but they are jam-packed with dietary fibre, vitamins and minerals, and health-promoting compounds called bioactives.
Those bioactives are part of the reason vegetables taste bitter. Plant bioactives, also called phytonutrients, are made by plants to protect themselves against environmental stress and predators. The very things that make plant foods bitter, are the things that make them good for us.
Unfortunately, bitter taste evolved to protect us from poisons, and possibly from over-eating one single plant food. So in a way, plant foods can taste like poison.
For some of us, this bitter sensing is particularly acute, and for others it isn’t so bad. This is partly due to our genes. Humans have at least 25 different receptors that detect bitterness, and we each have our own genetic combinations. So some people really, really taste some bitter compounds while others can barely detect them.
This means we don’t all have the same starting point when it comes to interacting with salads and veggies. So be patient with yourself. But the steps toward learning to like salads and veggies are the same regardless of your starting point.
It takes time
We can train our tastes because our genes and our receptors aren’t the end of the story. Repeat exposures to bitter foods can help us adapt over time. Repeat exposures help our brain learn that bitter vegetables aren’t posions.
And as we change what we eat, the enzymes and other proteins in our saliva change too. This changes how different compounds in food are broken down and detected by our taste buds. How exactly this works isn’t clear, but it’s similar to other behavioural cognitive training.
Add masking ingredients
The good news is we can use lots of great strategies to mask the bitterness of vegetables, and this positively reinforces our taste training.
Salt and fat can reduce the perception of bitterness, so adding seasoning and dressing can help make salads taste better instantly. You are probably thinking, “but don’t we need to reduce our salt and fat intake?” – yes, but you will get more nutritional bang-for-buck by reducing those in discretionary foods like cakes, biscuits, chips and desserts, not by trying to avoid them with your vegetables.
Adding heat with chillies or pepper can also help by acting as a decoy to the bitterness. Adding fruits to salads adds sweetness and juiciness, this can help improve the overall flavour and texture balance, increasing enjoyment.
Pairing foods you are learning to like with foods you already like can also help.
The options for salads are almost endless, if you don’t like the standard garden salad you were raised on, that’s OK, keep experimenting.
Experimenting with texture (for example chopping vegetables smaller or chunkier) can also help in finding your salad loves.
Challenge your biases
Challenging your biases can also help the salad situation. A phenomenon called the “unhealthy-tasty intuition” makes us assume tasty foods aren’t good for us, and that healthy foods will taste bad. Shaking that assumption off can help you enjoy your vegetables more.
When researchers labelled vegetables with taste-focused labels, priming subjects for an enjoyable taste, they were more likely to enjoy them compared to when they were told how healthy they were.
The bottom line
Vegetables are good for us, but we need to be patient and kind with ourselves when we start trying to eat more.
Try working with biology and brain, and not against them.
And hold back from judging yourself or other people if they don’t like the salads you do. We are all on a different point of our taste-training journey.
Emma Beckett, Senior Lecturer (Food Science and Human Nutrition), School of Environmental and Life Sciences, University of Newcastle
This article is republished from The Conversation under a Creative Commons license. Read the original article.
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The Joy of Movement – by Dr. Kelly McGonigal
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We know that exercise is good for us. Obviously. We know that that exercise will make us feel good. In principle.
So why is that exercise bike wearing the laundry instead, or the weights bench gathering dust?
Dr. Kelly McGonigal explores our relationship with exercise, both the formal (organized, planned, exercise that looks like exercise) and the informal (ad hoc, casual, exercise that looks like just having a nice time).
Moreover: she starts with the why, and moves to the how. The trick she plays on us here is to get us very fired up on the many tangible benefits that will make a big difference in all areas of our lives… And then shows us how easy it can be to unlock those, and how we can make it even easier.
And as to making it stick? Exercise can be addictive, and/but it’s one of the few addictions that is almost always healthful rather than deleterious. And, there are tricks we can use to heighten that, thresholds that once we pass, we just keep going.
She also looks at the evolutionary tendency of exercise to be connection-building, as part of a community, friend group, or couple.
And, yes, she gives attention also to undertaking exercise when circumstances aren’t ideal, or our bodies simply won’t allow certain things.
In short: if any book can get you shaking off the cobwebs, this is the one.
Click here to check out The Joy Of Movement on Amazon today, and get your body moving!
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Are Supplements Worth Taking?
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It’s Q&A Day at 10almonds!
Have a question or a request? We love to hear from you!
In cases where we’ve already covered something, we might link to what we wrote before, but will always be happy to revisit any of our topics again in the future too—there’s always more to say!
As ever: if the question/request can be answered briefly, we’ll do it here in our Q&A Thursday edition. If not, we’ll make a main feature of it shortly afterwards!
So, no question/request too big or small 😎
❝There seems to be a lot of suggestions to take supplements for every thing, from your head to your toes. I know it’s up to the individual but what are the facts or stats to support taking them versus not?❞
Short answer:
- supplementary vitamins and minerals are probably neither needed nor beneficial for most (more on this later) people, with the exception of vitamin D which most people over a certain age need unless they are white and getting a lot of sun.
- other kinds of supplement can be very beneficial or useless, depending on what they are, of course, and also your own personal physiology.
With regard to vitamins and minerals, in most cases they should be covered by a healthy balanced diet, and the bioavailability is usually better from food anyway (bearing in mind, we say vitamin such-and-such, or name an elemental mineral, but there are usually multiple, often many, forms of each—and supplements will usually use whatever is cheapest to produce and most chemically stable).
However! It is also quite common for food to be grown in whatever way is cheapest and produces the greatest visible yield, rather than for micronutrient coverage.
This goes for most if not all plants, and it goes extra for animals (because of the greater costs and inefficiencies involved in rearing animals).
We wrote about this a while back in a mythbusting edition of 10almonds, covering:
- Food is less nutritious now than it used to be: True or False?
- Supplements aren’t absorbed properly and thus are a waste of money: True or False?
- We can get everything we need from our diet: True or False?
You can read the answers and explanations, and see the science that we presented, here:
Do We Need Supplements, And Do They Work?
You may be wondering: what was that about “most (more on this later) people”?
Sometimes someone will have a nutrient deficiency that can’t be easily remedied with diet. Often this occurs when their body:
- has trouble absorbing that nutrient, or
- does something inconvenient with it that makes a lot of it unusable when it gets it.
…which is why calcium, iron, vitamin B12, and vitamin D are quite common supplements to get prescribed by doctors after a certain age.
Still, it’s best to try getting things from one’s diet first all of all, of course.
Things we can’t (reasonably) get from food
This is another category entirely. There are many supplements that are convenient forms of things readily found in a lot of food, such as vitamins and minerals, or phytochemicals like quercetin, fisetin, and lycopene (to name just a few of very many).
Then there are things not readily found in food, or at least, not in food that’s readily available in supermarkets.
For example, if you go to your local supermarket and ask where the mimosa is, they’ll try to sell you a cocktail mix instead of the roots, bark, or leaves of a tropical tree. It is also unlikely they’ll stock lion’s mane mushroom, or reishi.
If perchance you do get the chance to acquire fresh lion’s mane mushroom, by the way, give it a try! It’s delicious shallow-fried in a little olive oil with black pepper and garlic.
In short, this last category, the things most of us can’t reasonably get from food without going far out of our way, are the kind of thing whereby supplements actually can be helpful.
And yet, still, not every supplement has evidence to support the claims made by its sellers, so it’s good to do your research beforehand. We do that on Mondays, with our “Research Review Monday” editions, of which you can find in our searchable research review archive ← we also review some drugs that can’t be classified as supplements, but mostly, it’s supplements.
Take care!
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Make Your Saliva Better For Your Teeth
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A new study has highlighted the importance of lifestyle factors in shaping the oral microbiome—that is to say, how the things we do affect the bacteria that live in our mouths:
Nepali oral microbiomes reflect a gradient of lifestyles from traditional to industrialized
Neither the study title nor the abstract elucidate how, exactly, one impacts the other, but the study itself does (of course) contain that information; we read it, and the short version is:
In terms of the extremes of “most traditional” to “most industrialized”, foragers have the most diverse oral microbiomes (that’s good), and people with an American industrialized lifestyle had the least diverse oral microbiomes (that’s bad). Between the two extremes, we see the gradient promised by the title.
If you do feel like checking it out, Figure 3 in the paper illustrates this nicely.
Also illustrated in the above-linked Figure 3 is oral microbiome composition. In other words (and to oversimplify it rather), how good or bad our mouth bacteria are for us, independent of diversity (so for example, are there more of this or that kind of bacteria).
Once again, there is a gradient, only this time, the ends of it are even more polarized: foragers have a diverse oral microbiome rich with healthy-for-humans bacteria, while people with an American industrialized lifestyle might not have the diversity, but do have a large number of bad-for-humans bacteria.
While many lifestyle factors are dietary or quasi-dietary, e.g. what kinds of foods people eat, whether they drink alcohol, whether they smoke or use gum, etc, many lifestyle factors were examined, including everything from medications and exercise, to things like kitchen location and what fuel is predominantly used, to education and sexual activity and many other things that we don’t have room for here.
You can see how each lifestyle factor stacked up, in Figure 5.
Why it matters
Our oral microbiome affects many aspects of health, including:
- Locally: caries, periodontal diseases, mucosal diseases, oral cancer, and more
- Systemically: gastrointestinal diseases in general, IBS in particular, nervous system diseases, Alzheimer’s disease, endocrine diseases, all manner of immune/autoimmune diseases, and more
Nor are the effects it has mild; oral microbiome health can be a huge factor, statistically, for many of the above. You can see information and data pertaining to all of the above and more, here:
Oral microbiomes: more and more importance in oral cavity and whole body
What to do about it
Take care of your oral microbiome, to help it to take care of you. As well as the above-mentioned lifestyle factors, it’s worth noting that when it comes to oral hygiene, not all oral hygiene products are created equal:
Toothpastes & Mouthwashes: Which Kinds Help, And Which Kinds Harm?
Additionally, you might want to consider gentler options, but if you do, take care to opt for things that science actually backs., rather than things that merely trended on social media.
This writer (hi, it’s me) is particularly excited about the science and use of the miswak stick, which comes from the Saladora persica tree, and has phytochemical properties that (amongst many other health-giving effects) improve the quality of saliva (i.e., improve its pH and microbiome composition). In essence, your own saliva gets biochemically nudged into being the safest, most effective mouthwash.
There’s a lot of science for the use of S. persica, and we’ve discussed it before in more detail than we have room to rehash today, here:
Less Common Oral Hygiene Options
If you’d like to enjoy these benefits (and also have the equivalent of a toothbrush that you can carry with you at all times and does not require water*), then here’s an example product on Amazon 😎
*don’t worry, it won’t feel like dry-brushing your teeth. Remember what we said about what it does to your saliva. Basically, you chomp it once, and your saliva a) increases and b) becomes biological tooth-cleaning fluid. The stick itself is fibrous, so the end of it frays in a way that makes a natural little brush. Each stick is about 5”×¼” and you can carry it in a little carrying case (you’ll get a couple with each pack of miswak sticks), so you can easily use it in, say, the restroom of a restaurant or before your appointment somewhere, just as easily as you could use a toothpick, but with much better results. You may be wondering how long a stick lasts; well, that depends on how much you use it, but in this writer’s experience, each stick lasts about a month maybe, using it at least 2–3 times per day, probably rather more since I use it after each meal/snack and upon awakening.
(the above may read like an ad, but we promise you it’s not sponsored and this writer’s just enthusiastic, and when you read the science, you will be too)
Enjoy!
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The voice in your head may help you recall and process words. But what if you don’t have one?
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Can you imagine hearing yourself speak? A voice inside your head – perhaps reciting a shopping list or a phone number? What would life be like if you couldn’t?
Some people, including me, cannot have imagined visual experiences. We cannot close our eyes and conjure an experience of seeing a loved one’s face, or imagine our lounge room layout – to consider if a new piece of furniture might fit in it. This is called “aphantasia”, from a Greek phrase where the “a” means without, and “phantasia” refers to an image. Colloquially, people like myself are often referred to as having a “blind mind”.
While most attention has been given to the inability to have imagined visual sensations, aphantasics can lack other imagined experiences. We might be unable to experience imagined tastes or smells. Some people cannot imagine hearing themselves speak.
A recent study has advanced our understanding of people who cannot imagine hearing their own internal monologue. Importantly, the authors have identified some tasks that such people are more likely to find challenging.
fizkes/Shutterstock What the study found
Researchers at the University of Copenhagen in Denmark and at the University of Wisconsin-Madison in the United States recruited 93 volunteers. They included 46 adults who reported low levels of inner speech and 47 who reported high levels.
Both groups were given challenging tasks: judging if the names of objects they had seen would rhyme and recalling words. The group without an inner monologue performed worse. But differences disappeared when everyone could say words aloud.
Importantly, people who reported less inner speech were not worse at all tasks. They could recall similar numbers of words when the words had a different appearance to one another. This negates any suggestion that aphants (people with aphantasia) simply weren’t trying or were less capable.
Hearing our own imagined voice may play an important role in word processing. sutadimages/Shutterstock A welcome validation
The study provides some welcome evidence for the lived experiences of some aphants, who are still often told their experiences are not different, but rather that they cannot describe their imagined experiences. Some people feel anxiety when they realise other people can have imagined experiences that they cannot. These feelings may be deepened when others assert they are merely confused or inarticulate.
In my own aphantasia research I have often quizzed crowds of people on their capacity to have imagined experiences.
Questions about the capacity to have imagined visual or audio sensations tend to be excitedly endorsed by a vast majority, but questions about imagined experiences of taste or smell seem to cause more confusion. Some people are adamant they can do this, including a colleague who says he can imagine what combinations of ingredients will taste like when cooked together. But other responses suggest subtypes of aphantasia may prove to be more common than we realise.
The authors of the recent study suggest the inability to imagine hearing yourself speak should be referred to as “anendophasia”, meaning without inner speech. Other authors had suggested anauralia (meaning without auditory imagery). Still other researchers have referred to all types of imagined sensation as being different types of “imagery”.
Having consistent names is important. It can help scientists “talk” to one another to compare findings. If different authors use different names, important evidence can be missed.
We’re starting to broaden our understanding of the senses and how we imagine them. Napat Chaichanasiri/Shutterstock We have more than 5 senses
Debate continues about how many senses humans have, but some scientists reasonably argue for a number greater than 20.
In addition to the five senses of sight, smell, taste, touch and hearing, lesser known senses include thermoception (our sense of heat) and proprioception (awareness of the positions of our body parts). Thanks to proprioception, most of us can close our eyes and touch the tip of our index finger to our nose. Thanks to our vestibular sense, we typically have a good idea of which way is up and can maintain balance.
It may be tempting to give a new name to each inability to have a given type of imagined sensation. But this could lead to confusion. Another approach would be to adapt phrases that are already widely used. People who are unable to have imagined sensations commonly refer to ourselves as “aphants”. This could be adapted with a prefix, such as “audio aphant”. Time will tell which approach is adopted by most researchers.
Why we should keep investigating
Regardless of the names we use, the study of multiple types of inability to have an imagined sensation is important. These investigations could reveal the essential processes in human brains that bring about a conscious experience of an imagined sensation.
In time, this will not only lead to a better understanding of the diversity of humans, but may help uncover how human brains can create any conscious sensation. This question – how and where our conscious feelings are generated – remains one of the great mysteries of science.
Derek Arnold, Professor, School of Psychology, The University of Queensland
This article is republished from The Conversation under a Creative Commons license. Read the original article.
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Body Language (In The Real World)
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Forget What You Think You Know About Body Language
…unless it’s about a specific person whose habits and mannerisms you know intimately, in which case, you probably have enough personal data stored up to actually recognize patterns à la “when my spouse does this, then…”, and probably do know what’s going on.
For everyone else… our body language can be as unique as our idiolect
What’s an idiolect? It’s any one given person’s way of speaking/writing, in their natural state (i.e. without having to adjust their style for some reason, for example in a public-facing role at work, where style often becomes much narrower and more consciously-chosen).
Extreme example first
To give an extreme example of how non-verbal communication can be very different than a person thinks, there’s an anecdote floating around the web of someone whose non-verbal autistic kid would, when he liked someone who was visiting the house, hide their shoes when they were about to leave, to cause them to stay longer. Then one day some relative visited and when she suggested that she “should be going sometime soon”, he hurried to bring her her shoes. She left, happy that the kid liked her (he did not).
The above misunderstanding happened because the visitor had the previous life experience of “a person who brings me things is being helpful, and if they do it of their own free will, it’s because they like me”.
In other words…
Generalizations are often sound… In general
…which does not help us when dealing with individuals, which as it turns out, everyone is.
Clenched fists = tense and angry… Except when it’s just what’s comfortable for someone, or they have circulation issues, or this, or that, or the other.
Pacing = agitated… Except when it’s just someone who finds the body in motion more comfortable
Relaxed arms and hands = at ease and unthreatening… Unless it’s a practitioner of various martial arts for whom that is their default ready-for-action state.
Folded arms = closed-off, cold, distant… Or it was just somewhere to put one’s hands.
Lack of eye contact = deceitful, hiding something… Unless it’s actually for any one of a wide number of reasons, which brings us to our next section:
A liar’s “tells”
Again, if you know someone intimately and know what signs are associated with deceit in them, then great, that’s a thing you know. But for people in general…
A lot of what is repeated about “how to know if someone is lying” has seeped into public consciousness from “what police use to justify their belief that someone is lying”.
This is why many of the traditional “this person is lying” signs are based around behaviors that show up when in fact “this person is afraid, under pressure, and talking to an authority figure who has the power to ruin their life”:
Research on Non-verbal Signs of Lies and Deceit: A Blind Alley
But what about eye-accessing cues? They have science to them, right?
For any unfamiliar: this is about the theory that when we are accessing different parts of our mind (such as memory or creativity, thus truthfulness or lying), our eyes move one way or another according to what faculty we’re accessing.
Does it work? No
But, if you carefully calibrate it for a specific person, such as by asking them questions along the lines of “describe your front door” or “describe your ideal holiday”, to see which ways they look for recall or creativity… Then also no:
The Eyes Don’t Have It: Lie Detection and Neuro-Linguistic Programming
How can we know what non-verbal communication means, then?
With strangers? We can’t, simply. It’s on us to be open-minded, with a healthy balance of optimism and wariness.
With people we know? We can build up a picture over time, learn the person’s patterns. Best of all, we can ask them. In the moment, and in general.
For more on optimizing interpersonal communication, check out:
Save Time With Better Communication
…and the flipside of that:
The Problem With Active Listening (And How To Do It Better)
Take care!
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