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Resurfacing can be ablative, which vaporizes tissue and creates wounds, or non-ablative which keeps the skin intact. Laser resurfacing is usually done with a 2940 nm Er:YAG laser or a 10,600 nm CO 2 laser. Complete resurfacing was first done with a CO 2 laser. Both erbium and CO 2 are used to treat deep rhytides, sun damage and age spots.
Erbium-YAG lasers have been used for laser resurfacing of human skin. [2] Example uses include treating acne scarring , deep rhytides , and melasma . In addition to being absorbed by water, the output of Er:YAG lasers is also absorbed by hydroxyapatite , which makes it a good laser for cutting bone as well as soft tissue.
An Er:glass laser (erbium-doped glass laser) is a solid-state laser whose active laser medium is erbium-doped glass. Ytterbium (Yb) is sometimes added to these lasers to improve their efficiency. Er:glass lasers emit light in the infrared region of the electromagnetic spectrum, often in the range of 1530–1560 nanometers .
Dr. Hoschander, however, does credit the improvement in Lindsay’s skin to in-office skin treatments, like Fraxel, Erbium, and/or CO2, as well as RF microneedling.
Consider laser resurfacing. Laser resurfacing can help to tighten the skin in the under-eye area and build collagen, explains Dr. Garshick, which in turn can improve the overall appearance of the ...
Flashlamp, laser diode Erbium-ytterbium and erbium-doped glass lasers are made in rod, plate/chip, and optical fiber form. Common uses for Er:glass lasers include rangefinding and skin resurfacing. Erbium doped fibers are commonly used as optical amplifiers for telecommunications. Trivalent uranium-doped calcium fluoride (U:CaF 2) solid-state laser