Showing posts with label medicine. Show all posts
Showing posts with label medicine. Show all posts

5/18/2016

Why Skin Wrinkles In Water ?

If you’ve ever washed away your day with hours in a hot-tub, you might have asked yourself, “Why do my hands look like I’m 90 years old when they’re in the water?”

The full explanation of how and why our fingers wrinkle in wet environments is still the subject of some debate.  What we know is that the physiological mechanisms causing this phenomenon are the result of our veins constricting (vasoconstriction) in your hands and feet.  One might notice this occurs even in warm water, when we otherwise would assume blood vessels should dilate instead of constrict.  This suggests an evolutionary benefit to wrinkling digits.  One such advantaged recently demonstrated by two studies showed that wrinkled fingers provide us with better grip in wet environments.
To better understand what’s going on with our dish-pan-hands, let’s take a closer look at the anatomy and physiology involved.
It was once widely reported that water-immersion wrinkling was the result of osmosis.  Water being pulled into dead skin cells (keratin) on our epidermis would cause them to swell.  The swollen outer layer of skin, still tightly attached to the layers beneath, would then wrinkle due to the increased surface area.  A quick Google search will show you this idea is still widely circulated, even by some otherwise reputable sources.
While it might have some minor role, we now know osmosis resulting in skin swelling is not the main cause of finger wrinkling for several reasons.  The first is that only fingers, toes and the bottoms of your feet tend to wrinkle when wet.   If osmosis was the reason, all parts of your skin would wrinkle in response to wetness.  Some have suggested it’s because the outer layer of the skin is the thickest in these areas, as such, would be more subject to swelling and wrinkling.   The problem is that measurements have shown a decrease in finger volume when wrinkled, not an increase, as would be the case if swelling was the cause.
The most damning evidence that osmosis is not the cause of finger wrinkling is that if you cut the sympathetic nerve fibers (those that respond to your fight or flight response) to a person’s fingers, they will no longer wrinkle in water.
For those who don’t want to let go of an osmosis mediated answer, never fear.  Water diffusing into our porous skin is thought to cause the reaction by our sympathetic nervous system, leading to vasoconstriction.
It’s the vasoconstriction that is the cause of wrinkling digits.  In the 1930s, Dr.’s T. Lewis and GW Pickering, noticed patients with damaged median nerves (one of the main nerves in your arms that can affect the movement and sensation in the hands) did not have their skin wrinkle in areas connected to that nerve.  Since this observation, there have been several studies that have confirmed vasoconstriction as the main cause of water-immersion wrinkling.
The debate among researchers is exactly how the sympathetic nervous system gets stimulated by water.   The two leading theories revolve around electrolyte imbalances in your epidermis, and an overproduction of sweat by your sweat glands.
Several studies looking at using finger wrinkling as a test for how well your sympathetic nerves are functioning in your limbs, have cited electrolyte imbalances as the most likely cause of an increased fight-or-flight response to your extremities.
When water diffuses into the many sweat ducts of your hands and feet, the increased water volume creates an abnormal balance of electrolytes like sodium, potassium, calcium, magnesium, chloride, and bicarbonate. They state:
Altered epidermal electrolyte homeostasis would lead to a change in membrane stability of the surrounding dense network of nerve fibers and trigger increased vasomotor firing with subsequent vasoconstriction. Vasoconstriction, through loss of volume, leads to negative digit pulp pressure resulting in a downward pull on the overlying skin, which wrinkles as it is distorted. The degree of wrinkling would directly depend on the change in digit tip volume and implies any process inducing loss of digit volume will precipitate wrinkling.
Other researchers looking at a cause of the increased nerve firing have cited an equally plausible scenario- overproduction of sweat by your sweat glands.  Those who posit this cause agree that it’s your sympathetic nervous system trying to maintain homeostasis within the epidermis.  However, the cause in their view is a loss of the surface tension created by sweat droplets when outside water is introduced.
Normally your sweat glands at rest produce sweat at certain pressures.  That droplet is then evaporated depending on the environment you’re in.  In the water, evaporation is absent.  The result is a sweat droplet that continuously grows in size.
The researchers calculated all of the pressures involved and found the total pressure of the atmosphere and water, at depths of 10cm, was 767mmHg.  The total pressure exerted on the sweat droplet, by the sweat gland, was 1260mmHg.  The much higher pressures pushing on your sweat droplet caused a free-flow of sweat from the body.  In response to the excessive loss of sweat, they concluded:
To maintain homeostasis, the sympathetic nervous system triggers a reduction of blood flow to the hand, causing the vasoconstriction and eventual wrinkling of the skin.  Other factors, including the temperature and tonicity of both the sweat and water, as well as the depth of immersion, also influence the formation of wrinkles.
No matter the exact mechanism causing our sympathetic nervous system to fire off like were being chased by wolves, the result does give us a gripping advantage in wet conditions.
In 2011, Mark Changizi, an evolutionary neurobiologist, was the first to propose this idea. The hypothesis was confirmed by neurobiologists at Newcastle University in the UK in 2013.  Along with the advantages in wet environments, they found wrinkled fingers gave no disadvantage in dry conditions, suggesting a superiority in one situation while not diminishing our protection in others.
So next time you’re washing dishes, be thankful that your fingers wrinkle- it gives you a better grip!

5/06/2016

Why Spicy Foods Can Cause Your Nose to Run ?

In most spicy foods, this is thanks to the same chemicals that cause the burning sensation on your tongue, namely capsaicin or allyl isothiocyanate.  Capsaicin is chemical found in fruits of the genus Capsicum, which includes peppers. It is present, usually in relatively high amounts, in the placental tissue that holds the seeds of the peppers, as well as in lower concentrations in other parts of the fruit.

The capsaicin works as a deterrent to stop various animals, particularly mammals that would crunch the seeds, from eating the fruits or otherwise harming the plants or seeds. It also functions as an anti-fungal agent, which further protects the plants.
Allyl isothiocyanate, on the other hand, is a colorless oil that can be found in things like mustard, radishes, and wasabi.   Like capsaicin, it serves as a defense for the plant against various animals, as well as works as an anti-fungal agent.
These chemicals end up not only causing a “hot” sensation on your tongue, but also irritate the mucous membranes in your nose, causing them to become inflamed.  This triggers those membranes to produce extra amounts of mucous as a defense mechanism to try to keep out whatever unwanted substance or particles are causing the irritation.
This same type of irritation is why your eyes may also become watery when you eat very spicy foods.  The capsaicin or allyl isothiocyanate can irritate the membranes in your eyes, causing your tear ducts to kick into overdrive trying to wash the irritant away.  This can make your nose even more runny as some of the tears drain into your sinuses.
Capsaicin and allyl isothiocyanate also irritate various tissues inside your body, such as your intestines.  This causes your body to react by trying to flush the irritant out.  This is why after eating spicy foods you sometimes have the dreaded “liquid fire” poop.

5/05/2016

What Causes “Eye Floaters” ?

For those who’ve never experienced this phenomenon, eye floaters are little oddly shaped objects that appear in your vision, often when one looks at bright light such as a blue sky.  Their shapes vary greatly, but will often appear as spots, cobwebs, or randomly shaped stringy objects.  These are not optical illusions, but rather something your eyes are actually perceiving.  There are a few different things that can cause this, but in most cases these eye floaters are caused by pieces of the gel-like vitreous breaking off from the back portion of your eye and then floating about in your eye ball.

The vitreous humor, or often just “vitreous”, is a clear gel that fills the gap between your retina and lens, helping maintain the round shape of your eye in the process.  This gel is about 99% water and 1% other elements; the latter of which consists mostly of a network of hyaluronic acid and collagen.  Hyaluronic acid ends up retaining water molecules.  Over time though, this network breaks down which results in the hyaluronic acid releasing its trapped water molecules.  When this happens, it forms a watery core in your vitreous body.
As you age then, pieces of the still gel-like collagen/hyaluronic acid network will break off and float around in this watery center.  When light passes through this area, it creates a shadow on your retina.  This shadow is actually what you are seeing when you see the eye floaters.
Children and teenagers almost never experience these types of eye floaters as there must first be some deterioration of the gel-like substance in their eye, creating the watery core, for these floaters to appear.  However, they do still sometimes experience a certain type of eye floater that often appears more like a crystallized web across their vision.  These floaters aren’t found in the vitreous humor like the above floaters.  Instead, they are found in the Premacular Bursa area, right on top of the retina.  These floaters are microscopic in size and only appear as big as they do because of their proximity to the retina.  Unfortunately, their microscopic nature makes them almost impossible to treat in most cases.

4/05/2016

Why Asparagus Makes Pee Smell

The smell comes from the way certain chemical compounds in asparagus break down inside people’s bodies.  This is why cooking asparagus in various ways does not result in the same smelly byproduct; the specific digestive enzymes that break down the compounds in the asparagus to produce the smell aren’t present until you eat the asparagus.

As to this specific resulting chemical compound that ends up causing the smell, it has long been thought that it is from methanethiol.  Methanethiol is a colorless gas which smells a bit like rotting cabbage. It is composed primarily of sulfur, but also includes hydrogen and carbon.
More recent research by Robert H. White from the University of California proposes an alternative theory.  White used gas chromatography-mass spectrometry to try to identify the cause of the smell and he concluded that it was actually from the s-methyl thioesters- specifically s-methyl thioacrylate and s-methyl thiopropionate.  Thioesters, like methanethiol, are primarily sulfur based except are formed from sulfur bonding with an acyl group.
In either case, the ability of a particular person to produce the necessary smelly compound in their urine after digesting asparagus was thought to be a genetic trait unique to only some humans until relatively recently.  Recent research done in France, China, and Israel, all independently showed this is not the case.  Rather, all humans appear to produce the smelly compound, but only some humans can detect the smell; the ability to detect the smell or not is a genetic trait.  Further, according to the study done in Israel, only about 22% of people have that genetic ability to smell the odor from the urine of people who have recently eaten asparagus.

Why You Get Goose Bumps When it’s Cold or as Result of a Strong Emotion

It turns out, goose bumps are an involuntary reflex of mammals called piloerection, usually triggered by a hormone released on certain situations that causes their body hair to stand. With time, humans have evolved to have less body hair, so what we see during certain situations such as a temperature drop or strong emotions are goose bumps on the skin rather than standing hair.

So how are goose bumps formed? The reflex brought on by stimulus such as cold, fright or strong emotions – fear, admiration, sexual arousal, awe, etc. causes an involuntary discharge from the sympathetic nervous system which responds to stimulus we may not be consciously aware of, and in turn triggers contraction of the little arrectores pilorum muscles (the arrector pili are extremely small muscle fibers that are attached to each hair follicle on your body).

This discharge causes contraction of the hair erector muscles (arrector pili). Each contracting muscle creates a shallow depression on the skin surface so the surrounding area protrudes. That is why the hair follicles elevate above the rest of the skin and goose bumps appear.
The reflex of goose bumps is known as the piloerection or horripilation and occurs in many other mammals. The main reason though for goose bumps is the subconscious release of a stress hormone adrenaline. While in animals ,  this hormone is released as a fight-or-flight reaction to cold or stressful situation, in humans adrenaline may be also be released during strong emotional reactions such as excitement.

3/31/2016

A Man Goes To Doctor And Discovers That He's Actually A Woman

A 44-year-old marries man got the shock of his life as the stomach pain and blood in his urine that he is experiencing led to an unexpected revelation. Chen visited his doctor to have his checkup, but his world was turned upside down when it was discovered that he is actually a woman and the stomach pain and blood in his urine was due to his menstruation.


The doctors at the hospital was also shocked with the result of Chen's checkup. As they examined Chen further, they discovered that he actually had a uterus and ovaries. Though he has a penis, it was axtually deformed but that didn't stop him from having a wife for ten years.

“He had short hair and was dressed in man's clothes,We did not realize he was a female at first." - Dr. Zhao

A blood test was also done, the blood test confirmed that Chen was chromosomally female. The doctors concluded that Chen is actually called adrenogenital syndrome. The adrenogenital syndrome is usually treatable with hormone therapy only if it is detected earlier. Unfortunately for Chen, he only have discovered it when he's 44 years old.

Ebola Survivors May Sexually Transmit Virus After Recovery

There's even more reasons for people to avoid having risky and unprotected sex. We all have witnessed how much danger Ebola had manifested and reached world wide news and attention through its rapid spread. And now, Health officials considers that Ebola survivors may spread the disease through unprotected sex nearly twice as long as it was previously believed. 


Through a study, Scientists thought that the Ebola virus could still remain in semen for about three months. But when a recent case in West Africa points out that the infection through sex can also happen more than five months later. According on the recent case, officials are now warning male Ebola survivors to avoid unprotected sex indefinitely since infection may still happen through sex more than five months after recovery. 
To prove this claim, A recent case of a 44-year-old Liberian woman whose infection likely came from a 46-year-old man who had Ebola symptoms last September. The woman fell ill in March, a week after sex with him, and later died. But another woman he had sex with around the same time tested negative for the deadly virus. 
" In Guinea, Dr. Sakoba Keita, the national coordinator for Ebola response, said a woman in the southeastern town of Macenta contracted Ebola after having unprotected sex with her husband. For the past month, officials have recommended all survivors use condoms until more is known. " - NY times 

Will this news create additional stigma for those who survive the virus? We hope not. 

3/29/2016

What Causes Ice Cream Headaches?

While many theories on what exactly causes ice cream headaches or “brain freezes” have existed for some time, it has only been very recently that it was discovered exactly what is going on here.  It turns out, ice cream headaches are a result of a rapid change in the size of blood vessels as a response to an extreme shift in temperature in the roof of the mouth, particularly the back of the roof of the mouth.

Specifically, what is happening here is that when you stick something extremely cold in your mouth and eat it quickly, such as drinking an ice cold beverage or eating ice cream rapidly, it rapidly cools the palate of your mouth.  Why this is significant is that there is a nerve center located just above the back of the roof of your mouth.  This nerve center includes nerve clusters that send signals to the brain about changes in body temperature.  When these nerve clusters are rapidly cooled by what you are consuming, they are over stimulated and send the message to the brain that the body just lost a severe amount of heat.  This ends up resulting in the rapid contraction of blood vessels in your head.
Shortly thereafter, the temperature at the palate of your mouth goes back to normal and the nerve centers signal everything is fine and the blood vessels end up rapidly dilating.  This all can happen in a matter of a few seconds, but the end result of this rapid contraction and dilation of blood vessels is an extreme, sharp pain, often in your temples, forehead, or sometimes even in your face itself.
This ends up creating a very similar pulsing sensation that many people experience when they get true migraine headaches.  Migraine headaches can even be induced by cold temperatures in some people, leading some researches to believe there is a close connection between what is happening during certain types of migraine headaches and what is happening during an ice-cream headache.

Sugar Does Not Make Kids Hyper

In fact, it has been proven in numerous studies that it doesn’t affect their behavior at all.
In one such study, it was found that mothers who think their kids have been given sugar (even though their kids haven’t been given any), will almost always say their kids are acting hyper.  On the flip-side, if they think their kids haven’t been given sugar (even if they have in actuality), they will almost always say their kids are acting normal; even though in both cases there is no actual discernible difference of behavior being observed between the two.  It’s almost all in the parent’s head. :-)

“Almost”, you say?  Interestingly, if the child believes they have been given sugar and they believe that sugar will make them hyper, some children will act more hyper.  But this again is all in their head.  If they believe they haven’t been given sugar, even though they’ve been given loads, these kids will report no change in how they feel and will act normal.  If they are given no sugar, but they think they’ve been given lots of sugar, they will often report feeling a “sugar rush” and act hyper.  This is more or less just the mysterious placebo effect in action on a small percentage of these kids.

On the other hand, caffeine will absolutely make a good percentage of kids hyper.  So while many parents attribute the hyperactivity in kids that often follows drinking a lot of soda as being caused by sugar, it is actually generally the caffeine doing the work.
In the end though, excessive amounts of processed sugars is bad for kids (and adults too!), in a variety of ways.  Best to stay away from them as much as possible outside of natural sugars found in fruits and the like; pro-tip: corn syrup = bad too. 😉  Although, according to recent medical studies, it’s not entirely clear yet whether corn syrup is worse for you than sugar, but it is clear that both are pretty bad for you at the levels most people eat on a daily basis, moderation of course being the key for healthy in-take in both cases.
On the other hand, maybe it’s best to just not eat anything at all; probably the best way to avoid eating unhealthy things :-)

How The Completely Blind Dream?!

It turns out that if they went completely blind before around the age of 5-7 years old, they will typically dream without any visual experiences.  In the very few cases where some report having visual experiences in their dreams, these experiences are more in the abstract sense where they feel like they were seeing something, even though they couldn’t actually recollect or describe when they woke up what the thing looked liked that they saw.  

This is similar to how occasionally in dreams you can just “know” something, even though there is nothing specifically that you are experiencing in the dream which should indicate what you know. For instance, in a dream where when you wake up, you remember feeling like you were in danger in the dream, even though nothing you can recall in the dream indicated any danger.  There was just some abstract sense of it.
Outside of the interesting “around the age of 5-7” cutoff for visual dream experiences, the dreams of those who are completely blind before this age tend to be principally auditory in nature.  However, what is also fascinating is that, compared to those who can see and hear, the blind report drastically increased taste/smell/touch sensations in their dreams, not just auditory sensations taking over for the lack of visual sensations.
Now if they go completely blind after around the age of 5-7, the vast majority of completely blind people will at first dream very similar dreams to those who are not blind, albeit, once again, with more non-visual sensory experiences than is reported by those who can see and hear.  But nevertheless, their visual experiences in their dreams tend to be quite similar to those who can see.  If they had diminished vision early on in life though, perhaps only seeing colors, then their visual experiences in their dreams tend to be similarly diminished based on those visual experiences.   As time passes, they typically will report more and more prevalence of experiences from the other senses and less and less visual experiences in dreams.  Often the visual experiences will become more vague and “blurry” as time passes, but they do seem to remain to some extent throughout the blind person’s entire life.

3/23/2016

Weird Human Mutations

Human Mutations are seen as birth defects that a person has to live throughout their life with. Some are very visible to the eye while others can be hidden. There are some that can be so bad that as the person’s age increases the mutation gets worse. Some can even cause a person to die before their time. Then, there are those mutations that fascinate the world. Stories will be posted about these mutations and cameras will interfere with that person’s life. But, yet, the world still wants to know and in today’s society I am surprised that the people with some of these mutations don’t have a reality TV series.
1.

CYCLOPIA

This birth defect doesn’t allow the orbits of the eyes to separate into two cavities. These occurrences happen in every 1 in 250 babies. The face will be missing or the nose will be non-functioning and that nose will either be above the eye or on the back of the head. Most babies will not make it to birth or they are still born. There are two cases of children with Down Syndrome that have been born with one eye. This is often caused by genetic problems or toxins ingested by the mother.
cyclopia

2.

TREE MAN

This man has hands and feet that look like contorted tree branches. For 20 years, he has lived like this. He has warts all over his body that look like the moss that forms on trees out in the forest. The growths on his body make up over twelve pounds of his weight and he only weighs 100 pounds. After only a few steps he would become tired because of the density of the growths. It is believed that this defect was caused by an HPV virus. There are two types of HPV. The first one can cause cervical cancer and the other can cause warts on the skin. This is what the doctor’s feel he has. The warts started to appear after he received a cut on his skin as a teenager. It has become out of control since then. The skin has infections happening and bugs living in his skin. He has a weak immune system and the virus took over because of it.
tree man

3.

MERMAID SYNDROME

This is when a child is born with his or her legs fused together and it gives the impression of a mermaid’s tail. One out of every 100,000 births are said to have this birth defect. The babies born with this defect will die within a day or two because of complications in the development of their bladders and kidneys. There are only a handful of births that did not have the complications that came along with this condition. Three of the most well know cases are Milagros Cerron, Tiffany Yorks and Shiloh Pepin.


4.

WEREWOLF SYNDROME

This birth defect or genetic mutation has to do with the hair on the person’s body growing to a substantial amount over every inch. This can be seen at birth, when the child is born covered in hair. If the infant is tested and does not suffer from hypertrichosis, then the hair will be shed over the next few years. The acquired type of gene forms over the years and can refer to extra hair growing in places that hair hasn’t grown before. The congenital form of this disease is more commonly used as the werewolf syndrome because of thickness and the amount of hair formed over the person’s body. These are the type of people that get used in the circuses as sideshow “freaks” as the wolf-man.
warewolf syndrome

3/22/2016

There Was Once a Woman Who Had Immortal Cells

There was once a woman who had immortal cells.   These immortal cells have multiplied to the point that if you were to weigh all of them that live today, they’d weigh about 50 million metric tons, which is about as much as 100 Empire State Buildings.

So who was this woman and why are scientists keeping about 50 million metric tons of her cells supplied with fresh nutrients so they can live on?  The woman was Henrietta Lacks and her immortal cells have been essential in curing polio; gene mapping; learning how cells work; developing drugs to treat cancer, herpes, leukemia, influenza, hemophilia, Parkinson’s disease, AIDS… The list goes on and on and on.  If it deals with the human body and has been studied by scientists, odds are, they needed and used Henrietta’s immortal cells somewhere along the way.  Her cells were even sent up to space on an unmanned satellite to determine whether or not human tissue could survive in zero gravity.
Go to just about any cell culture lab in the world and you’ll find billions of Henrietta’s cells stored there.  What’s unique about her cells is that, not only do they never die, in contrast to normal human cells which will die after a few replications, but her cells can also live and replicate just fine outside of the human body, which is also unique among humans.  Give her cells the nutrients they need to survive and they will live and replicate along forever, apparently (almost 60 years and counting since the first culture was taken). They can even be frozen for literally decades and later thawed and they will go right on replicating.
Before her cells were discovered and widely cultured, it was nearly impossible for scientists to reliably experiment on cells and get meaningful results.  Cell cultures that scientists would try to study would weaken and die very quickly outside the human body.  Her cells gave scientists, for the first time, a “standard” that they could use to test things on.  Even better, her cells can survive being shipped in the mail just fine, so scientists across the globe can all use the same standard from which to test against.
Henrietta Lacks herself was an impoverished black woman who died on October 4, 1951 of cervical cancer at the age of just 31 years old.  It was during getting her cancer treated that a doctor at Johns Hopkins took a sample of her tumor without her knowledge or consent and sent it over to a colleague of his, Dr. George Gey; Dr. Gey  had been trying for 20 years, unsuccessfully, to grow human tissues from cultures.   A lab assistant there, Mary Kubicek, discovered that Henrietta’s cells, unlike normal human cells, could live and replicate outside the body.
Henrietta died of uremic poisoning, in the segregated hospital ward for blacks, about eight months after being diagnosed with cervical cancer; never knowing that her cells would become one of the most vital tools in modern medicine and would spawn a multi-billion dollar industry where her replicated cells would be bought and sold by the billions.
She was survived by her husband and five children, the surviving members of which still to this day live in poverty (one who is homeless on the streets of Baltimore) and were long ignorant of the importance of Henrietta’s cells to modern medicine.

3/21/2016

How The Heart Works ?!

I know what you’re thinking; I hope by the end of this article I can find out if it really is true that I can MacGyver an electrical cord together and shock my heart into restarting should it stop!  Quick answer….. maybe, if you’re an electrical engineer with all the appropriate gear, or go buy an automatic external defibrillator  (they’re really not that expensive).  Before you budding electricians all rush on out to RadioShack for all the equipment, let’s find out how this beast of an organ works.
The heart is a two part pump, one part mechanical and one part electrical.  The mechanical function of the heart is governed by the electrical system within the heart.  That electrical system, in turn, can be affected by neurotransmitters from the brain (or fancy pacemakers created by the Dr. Frankenstein-like minds of the world).  But since we’re only talking about the heart today, we will only focus on the ability of the electrical system of the heart.  Should you want to know how the brain governs it, I direct you to the many medical schools around the country!

The heart is a four chambered pump.  The top two chambers are called Atria, the bottom two are called Ventricles.  They are separated from top to bottom by valves; the right and left sides are separated by a septum.  So what makes the pump squeeze?  Well the heart is a muscle, and like all muscles, when it gets shocked by electricity, it contracts.  If you don’t believe me, just stick a fork in the nearest electrical socket and see if anything tenses up! (DISCLAIMER: Due to our lawyers incessant need to justify themselves, they advised us to say, “Don’t do that. It could cause you harm”). When the hearts muscle gets “shocked”, they contract and force the blood down its path.  The valves I just spoke of are one way, and will not allow blood to flow back through the system.  If it does, see your nearest physician cause death could be imminent!
The blood’s path through the heart starts in a vein called the Superior Vena Cava.  Then it enters the right atrium, flows through the tricuspid valve into the right ventricle.  From there it travels through the pulmonic valve into pulmonary arteries, then the lungs.  Take a deep breath. Awe…… the sweet feeling of oxygen entering the blood! Now let it out, OOUU….. the halitosis laden Co2 leaving the body!  Now back to the heart and into the left atrium, through the mitral valve and Walla!  The blood is now in the “strongest” chamber of the heart, the left ventricle.  From there it gets pumped through the aortic valve and into the aorta and out to the rest of the body!

3/02/2016

Why Your Stomach Growls When You Are Hungry


Generally speaking stomach growling, or as the Greeks named it and Doctors call it today “borborygmi” (which is an onomatopoeia), is the noise created during rhythmic muscle contractions in your stomach and intestines.

Your digestive system is one big long tube that goes from your mouth to your butt, with a lot of interesting biological machinery in-between.  How the body gets food through this long tube is accomplished via waves of muscle contractions, called peristalsis, that run a few inches at a time all down your digestive track.  These waves of muscle contractions also serve to mix and churn foods, liquids, and digestive juices together.  The resulting cocktail is called chyme.
The contractions themselves are really not too dissimilar to how your heart beat works– fluctuation of electrical potential in the smooth muscle cells which causes the muscle to contract in a rhythmic fashion, in this case called the “Basic Electrical Rhythm” or BER.  This rhythm is about three times per minute in the stomach, and 12 times per minute in the small intestines.  The sound you are hearing when your stomach and intestines make noise is the result of these muscular contractions mixing and moving the chyme along, as well as pushing any resultant air through your system.
So why does your stomach seem to growl more when you are hungry?   When your stomach and intestines are empty, it triggers a reflexive generation of contraction waves, even though there isn’t really much of anything in your stomach that needs moved along.  These are meant to clear out all of your stomach contents, including the mucus, any remaining food, bacteria, etc.  It’s your body’s way of doing a little house cleaning, making sure no food or other matter is accumulating anywhere along your stomach or intestines.  It’s typically this that you are hearing when you’re hungry.
You might be asking yourself, “Well if my stomach is doing these contractions even when I’m full, moving food along, why don’t I hear them all the time?”  To answer that, think of the stomach as hot water bottle.  When it is full and you slosh the contents around, there is little to no noise, depending on just how full it is.  The less you have in it, the more noise the sloshing makes.  This is pretty much exactly what is going on with the stomach, except the muscles lining the walls of your stomach and intestines are doing the sloshing as they push the contents of your stomach and intestines towards your derriere.
So how does one avoid stomach growling when, say, you are in a quiet classroom taking a test in school or a quiet open office space?  The best tip, of course, is to eat something.  But to do this relatively continually without over eating, one needs to eat a series of small meals throughout the day instead of a few large ones.
For those of us who stick to the few “big meals” way of eating, though, in order to avoid the sometimes embarrassing growling, I’ll share two tricks of my own device; though I’m sure many others out there have discovered these. Both tricks basically accomplish the same thing, but in two different ways.
The first trick is that, when you feel a growl coming on, take something like a pencil and quite literally push it hard into your stomach area (eraser end first of course).  If you push it hard enough, it will literally compress a part of your stomach, giving it much less space to slosh or even stopping it from being able to slosh at all temporarily.  I’ve found just pushing on the stomach area with your hand tends to not work as well.  Something small and thin like your finger or a pencil seems to work better; this is probably to do with focusing on a small surface area and specifically on your actual stomach instead of just pushing your upper belly with your hand which also pushes some of your other organs, so less effective.
The second trick is, when you feel a stomach growl coming on about 10 or 15 seconds before, take a really, really deep breath- as deep as you can.  Then hold your breath until you feel the growl sensation pass.  This effectively does the same thing as the previous method, but from the inside with your lungs expanded pushing down on your stomach and compressing it so that it can’t slosh things about as much.  The “pencil method” works better, but this is a pretty reliable backup and is hands free.

What Causes People to Have Red Hair ?

          What causes people to have red hair.  It turns out, it is not because they are the spawn of Satan or otherwise evil at heart (Well, supposedly.  Everyone knows a group of red-heads known as “The Fire of Rankin”, lead by the Septi Caput Capitis counsel, secretly rules the world in Edinburgh, Scotland; coincidentally this is where most of the “Red Head’s Aren’t Evil” research comes from.  Wake Up Sheeple!!!).


In any event,  red heads get their distinctive hair color and inability to survive when sunlight hits their skin from being bitten by a vampire, but not having their blood all sucked dry… Or if you want to believe the Septi Caput Capitis funded Edinburgh researchers, it’s because of a little thing called the “Melancortin 1 Receptor” or MC1R for short.  Everyone has Melancortin 1 Receptors, but in red heads this is mutated (The cause of this is from their MC1R’s being twisted by dark arts and evil rights, which I shall not speak of here).
This mutation in the MC1R also causes them to have light skin from having less eumelanin pigmentation and more phaeomelanin pigmentation.  This is a genetic advantage for people living in parts of the world where there is little sunlight.  Having lighter skin lets more sunlight through, which stimulates the production of Vitamin D, which in turn is useful for preventing things like rickets and for fending off the holy hordes of heaven as they seek to destroy the black hearted gingers and rid us of their evil.
As anyone who’s been around a redhead knows though, having skin that won’t tan has decided disadvantages when the sun is out.  Putting a true redhead (as opposed to all those brown haired girls who like to call themselves redheads) in the sun for any length of time, tends to have the same effect as putting a fork in the microwave;  entertaining to watch, but not too pleasant for the fork.  This tends to lead to much higher rates of skin cancer and birth defects due to the sun destroying the levels of folic acid in their skin in addition to the normal number of birth defects you’d expect to see when a spawn of Satan breeds with their unholy brethren.
Most redheads carry two mutated MC1R genes, one from their demonic father and one from their unholy mother.  In the case where someone only carries one copy of the mutated MC1R, they tend to end up having brown hair with light skin, though when female they will insist on telling everyone they are a redhead because when they apply their hair directly to the sun it has a minuscule reddish hue before it inevitably bursts into flames.  Seriously ladies, you have brown hair.  Accept it.  You likely only carry one of the two needed MC1R mutated genes.  Be happy about it.  Perhaps you won’t be cursed with the inevitable damnation that awaits all redheads when they die.
This mutated MC1R gene also happens to be recessive.  What this means is that you can carry one of the unholy genes, but be a more natural blond or brunette.  People who carry only one copy are known as “carriers” (like with a disease).  This is why a redhead can be born from two parents that aren’t redheads themselves.  Both parents have a functioning MC1R gene and a mutated evil version.  In this case, there is roughly a 25% chance that a child born from these two will be a spawn of Satan.    Other variations can also happen.  For instance, if one parent caries two copies of the mutated MC1R (and has therefore likely sold their soul to Satan) and another is only half evil, with one mutated MC1R and one normal, then there would be about a 50% chance that their child would be a redhead.
Interestingly, contrary to popular belief, redheads weren’t just located in Northern Europe throughout history.  In fact, there were pockets of peoples all over the world that had red hair.  From Russia to China to certain groups of Jews and many others; there are even references to indicate there were indigenous peoples of Africa with bright red hair.
Today though, Scotland has the highest proportional population of redheads at about 13% (primarily due to being the headquarters of the Fire of Rankin and the location of the Septi Caput Capitis counsel).  The most redheads in any nation though, is the United States (USA! USA! USA!) with about 15 million gingers.
So if the world used to have pockets of redheaded people all over the place, but not so much now, what happened?  Well, the Archangel Michael and his angels managed to defeat most of the Fire of Rankin in the great battle of Feuergabelung on the northern borders of Germany at a time when the gingers were massing in order to try to take over the world openly, instead of just running things in the shadows as they’ve done for centuries.
Another reason is that now-a-days people are much more mobile than we were before.  We move around a lot.  Because of this and the fact that the redhead gene is recessive, even though the mutated gene itself is still being passed along, getting the two mutated copies necessary to produce a redheaded child is becoming much less likely.   Before this increased mobility, groups that had excessive amounts of people with this gene mutation, tended to stay in one spot; so inevitably pockets of redheads would pop up making it more likely that they’d in turn mate with other redheads as nobody moved around, thus perpetuating their particular brand of evil through the generations.
According to a 2007 study done by the Oxford Hair Foundation and funded by the hair dye maker Procter and Gamble who was trying to boost the sale of red hair dye, redheads will very soon become extinct.  This however has since been proved completely false for two reasons.  One, because there will always be new people in the world with only evil in their hearts, and two because the mutated gene itself is still being passed on, even when a redhead is not produced (often producing brown haired women who insist on telling everyone they are redheads).  So, while the numbers may continue to diminish by diffusification, the potential for a “redheaded step child” will remain for the foreseeable future.



Around 85% of Humans Only Breathe Out of One Nostril at a Time

Around 85% of humans only breathe out of one nostril at a time.  Even more interesting is that the pattern of switching from breathing out of one nostril to the other happens in a cyclical fashion, with about four hours or so between each switch typically; although, this can vary from person to person and vary based on your body position or nasal congestion.


The first known instance of someone studying this “nasal cycle” was German nose specialist, Richard Kayser in 1895.  How your nose accomplishes this switch is via erectile tissue in your nose, which is very similar to the erectile tissue in a penis or clitoris.  Erectile tissue will swell up in one nostril, mostly blocking it, and at the same time erectile tissue in the other nostril will shrink, opening it up for breathing.
Even more interesting is that depending on which nostril you are predominately breathing out of at any given moment, it seems to greatly affect your body and brain.
For instance, a study in 1988 showed that breathing through your right nostril significantly increases blood glucose levels, while breathing through your left nostril has the opposite effect.  It is speculated from this that abnormal nasal cycles, such as breathing through your right nostril for many years without a switch, may be one contributing factor in certain cases of diabetes.
Another study in 1993 showed that when you are breathing through your right nostril, you will use significantly more oxygen than when breathing through your left.
Most interestingly of all, yet another study published in 1994, showed that when you are breathing through your left nostril, the right hemisphere of your brain will be more active or dominant and vice-verse when you are breathing through your right nostril.
Even though this switching happens naturally in a cyclical fashion, you can affect it in more ways than just plugging one nostril or the other to force breathing through the one you want.  If you lay down on one side or the other, after around 12-15 minutes, the erectile tissue in the nostril on that side will begin to swell up and the other side will decrease its swelling so that if you are lying on your left side, then your right nostril will open up and your left nostril will close up.
It is thought that this nasal cycle could be the reason that when you sleep on your side, you will often switch sides throughout the night at very regular intervals, even if you weren’t in the slightest bit uncomfortable.  It could just be that your body needs to switch which nostril it is breathing out of, so you feel the urge to roll over to your other side while you sleep.