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Animal testing for gene therapy began in 2007 with a 2009 breakthrough in squirrel monkeys suggesting an imminent gene therapy in humans. While progress in gene therapy for red-green color blindness has slowed since then, successful human trials are currently underway for achromatopsia, a different form of color vision deficiency.
Rarer genetic conditions causing color blindness include congenital blue–yellow color blindness (tritan type), blue cone monochromacy, and achromatopsia. Color blindness can also result from physical or chemical damage to the eye, the optic nerve, parts of the brain, or from medication toxicity. [2] Color vision also naturally degrades in old ...
These color vision tests test detect the color vision phenotype, and not the subject genotype, so are unable to differentiate acquired from congenital red–green color blindness. However, color vision and genotype are highly correlated, especially when acquired color blindness is ruled out. [16]
Prenatal genetic testing is done to screen for genetic conditions known as fetal aneuploidy, such as Down syndrome, in which a fetus has one or more extra chromosomes or the absence of one or more ...
Blue cone monochromacy (BCM) is an inherited eye disease that causes severe color blindness, poor visual acuity, nystagmus, hemeralopia, and photophobia due to the absence of functional red (L) and green (M) cone photoreceptor cells in the retina.
Usher syndrome, also known as Hallgren syndrome, Usher–Hallgren syndrome, retinitis pigmentosa–dysacusis syndrome or dystrophia retinae dysacusis syndrome, [1] is a rare genetic disorder caused by a mutation in any one of at least 11 genes resulting in a combination of hearing loss and visual impairment.
Rose Brystowski, 68, had a choice to make. Others might have found it difficult. She found it easy. Brystowski, of Oak Park, Michigan, wasn't about to let her genetics forfeit her future. Doctors ...
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