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The Strange Case Of Phineas Gage

Long before the advent of neuroscience, brain injuries have been used to deduce how the brain is organized into separate regions handling separate tasks. Consider the case of Phineas Gage, a 19th-century railroad construction foreman whose life was dramatically changed when a dynamite charge went off accidentally and blasted a 3 1/2-foot long, 1 ...

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PhineasGage
Engineering

Pass the Basalt

Advanced composite materials technology is a field that is growing both quickly and steadily. That new fiber materials and applications will be developed is the proverbial 'no brainer'. However, ... Continue reading

PasstheBasalt
Geology

A Continent In Deep Freeze

The continent of Antarctica is home to a uniquely beautiful and harsh environment that has changed little in the last 30 million years. The continent, approximately twice the size of Australia, lies ... Continue reading

AContinentInDeepFreeze
Mathematics

How To Calculate The Volume Of A Right Cone

Cones are used every day for a variety of purposes. Perhaps the most useful application of the cone shape is as a funnel. For finding the volume, a cone is best viewed as a stack of circles, each one ... Continue reading

VolumeOfARight Cone
Engineering

Barn Yard Aeronauts

The word aeronaut is derived from the Greek terms 'aero' meaning air or atmosphere and 'nautes' meaning sailor. Originally, individuals who piloted balloons or airships (blimps or dirigibles) were ... Continue reading

BarnYardAeronauts

Why is Red-Green Colorblindness a 'Guy Thing?'

ColorBlindnessColorblind girls and women are rare, while men who can't match their socks are relatively common. The reason is a genetic phenomenon called sex-linked inheritance. Humans have 23 pairs of chromosomes. One of those pairs, called X and Y, determines sex. Most females have 2 Xs. Most males have an X and a Y. The Y chromosome carries the genes that cause an embryo to develop as a male, but not many others. The X chromosome carries many genes that have nothing to do with sex and many that have no counterpart on the Y chromosome. So, for those characteristics, females get two genes, but males get only one.

Colorblindness is caused by a recessive gene. Recessive means two copies of the gene are required for the characteristic to show up. If one member of the gene pair is normal, then color vision is normal. The gene for colorblindness is carried on the X chromosome. Since it is relatively rare compared to the gene for normal color vision, most women who carry it have a normal gene on their second X chromosomes, so their color vision is normal. Unless their father was colorblind, they may not even suspect that they carry the gene--until they learn that they have a colorblind son.

Females can be red/green colorblind, but only if they get the recessive gene from both parents. For that to happen, their mother must be a carrier (or colorblind herself) and their father must be colorblind, too.