ScienceIQ.com

Hey Nose-Brain!

Sex, food, and smell are linked in our brain by ancient pathways governing appetite, odor detection, and hormones. In fact, another name for the brain's limbic system (a primitive brain-within-the-brain responsible for emotional urges, hormone levels, and unconscious bodily functions such as blood pressure and appetite) is rhinencephalon, or ...

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NoseBrain
Engineering

High Altitude

Have you ever read the directions on a box of cake mix? There are special instructions for high-altitude baking. Has anyone who visited the Rocky Mountains told you how hard it was to breathe there? ... Continue reading

HighAltitude
Physics

The Fourth State of Matter

There are three classic states of matter: solid, liquid, and gas; however, plasma is considered by some scientists to be the fourth state of matter. The plasma state is not related to blood plasma, ... Continue reading

ForthState
Chemistry

How Sublime

Show of hands. How many of you can't resist playing with dry ice? Dry ice is carbon dioxide frozen to -109.3 degrees F (-78.5 C). Throw a piece in water and it bubbles and boils. Expose a piece to air ... Continue reading

DryIce
Geology

1816 - The Year Without A Summer

Most global temperature change occurs over a long period of time, centuries rather than years, and in small increments. But in 1816, the Northeastern part of the United State and Northern Europe were ... Continue reading

1816YearSummer

Fahrenheit 100 and Rising

Fahrenheit100When you are well, your body temperature varies only a little around 37o C. (98.6o F.), whether you're sweating in a steam room or hiking in the Yukon. The hypothalamus in the brain controls body temperature. It works like a thermostat, sensing the temperature of your blood. When a pathogen (disease-causing microbe) invades, however, the body fights back with every weapon in its arsenal. Heat is one of them. The immune system sends chemical messages to the hypothalamus, signaling the need for a rise in body temperature. In response, the hypothalamus causes the pituitary to release a hormone called TSH (for thyroid stimulating hormone).

TSH travels through the blood and reaches the thyroid gland in the neck. There, it stimulates the thyroid to make another hormone, thyroxine. Thyroxine travels to all the cells of the body. It makes them burn food faster, generating more heat. The result is a fever--defined as a body temperature of 100o F. or greater. Many pathogens can't survive such high temperatures, so the fever kills them. As the pathogen begins to lose the battle, other chemical messengers travel to the hypothalamus. The hypothalamus signals the pituitary. TSH production decreases, thyroxine levels decrease, and body cells release energy more slowly. Body temperature returns to normal.

There's a lot more to a fever than a change in temperature. Researchers find high levels of immune chemicals including interleukin-6 in people with fevers. When healthy volunteers took IL-6 in a research project, they got fevers and flulike symptoms.