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Electric Callus Remover

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Delivery: Shipment within 3 days since the date of payment
Address: China(Mainland)
Valid until: Never Expire
Updated on: 2014-03-07 15:48
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Product SpecificationAdaptor Input Voltage : 100 - 240V Adaptor Input Frequency : 50/60Hz Adaptor Output : 12V, 1A Dimension(mm) : 72(W) x 91(H) x 72(D)Main Body's Rated Voltage : DC12V Product HistoryAwarded the Gold Prize in 2004 Seoul International Invention Exhibition. Awarded the Bronze Prize in 2005 Zeneva International Invention Exhibition.Certified CE and FCC in 2004 Electric Callus Remover(How to Use) Plug the adapter into the wall outlet and connect the opposite end to the port of the main body. Open the cover Set the operation level to level 1Grip the main body firmly and apply it to the callus for removing the dead callus tissue. For a thick callus, using level 2 Electric Callus Remover(Before & After)What is Callus?Skin forms the first covering that protects everything inside the body and keeps being replaced with new layers of cells for a period of four weeks. During this process, what remains on the skin surface, a rough, bad-looking cluster of dead cells is "callus." It is mainly made of tough, horny, insoluble proteins and is hard to remove. Callus can occur as a reaction to various factors including cold or dry weather, stress, and repeated pressure. If the thickened dry skin is not properly treated, the affected area can turn translucent white and even bleed - in severe cases, it can become infected and painful.Composition and Structure of CallusThe callus surface is composed of 50 percent Keratin, a type of protein, 20 percent fat, 23 percent water-soluble substances, and 7 percent water. Due to the regeneration of new cells, existing skin cells are gradually pushed up to the horny layer and become so-called calluses, an array of flat, dead cells - millions of which flake away and are replaced with new ones. The horny layer consists of multiple plates of flat, nucleus-less horny cells that are densely packed at the bottom. But those cells finally transform into thin films and are cracked open and shed as they reach the skin surface. Features of Callus

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