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  2. OneTouch Ultra - Wikipedia

    en.wikipedia.org/wiki/OneTouch_Ultra

    The OneTouch Ultra 2 Meter is being used by a diabetic patient. OneTouch Ultra is a blood glucose monitoring device for people with diabetes that is manufactured by Johnson & Johnson . [ 1 ] It is the foundation product for LifeScan's OneTouch Ultra family of blood glucose monitoring systems .

  3. LifeScan - Wikipedia

    en.wikipedia.org/wiki/LifeScan

    LifeScan was established in 1981. [3] It was acquired by Johnson & Johnson (J&J) in 1986, [2] [4] and in June 2018, J&J agreed to sell LifeScan to Platinum Equity as part of its strategic exit from the diabetes device market, accepting an offer originally tendered in March 2018. [1]

  4. Diabetes management - Wikipedia

    en.wikipedia.org/wiki/Diabetes_management

    Image 2: A modern portable BG meter (OneTouch Ultra), displaying a reading of 5.4 mmol/L (98 mg/dL). Europe) of blood. [7] Control of diabetes may be improved by patients using home glucose meters to regularly measure their glucose levels. [8] An image of a continuous glucose monitor attached on the skin

  5. ARROW® UltraQuik™ Peripheral Nerve Block Needles ... - AOL

    www.aol.com/news/2013-01-22-arrow-ultraquik...

    ARROW ® UltraQuik™ Peripheral Nerve Block Needles Receive FDA 510(k) Clearance LIMERICK, Pa.--(BUSINESS WIRE)-- Teleflex Incorporated (NYS: TFX) today announced that the ARROW UltraQuik ...

  6. Injector pen - Wikipedia

    en.wikipedia.org/wiki/Injector_pen

    Historically, pen needles were manufactured in lengths up to 12.7mm. Over time, pen needles designed for insulin pens have become shorter, and a 4mm long needle is considered sufficient for most people to administer subcutaneously correctly. [23] In 1989, an injector pen form of human growth hormone was licensed in New Zealand. [28]

  7. Microneedles - Wikipedia

    en.wikipedia.org/wiki/Microneedles

    Microneedles (MNs) consist of micro-sized needles arrays that are made of various materials exhibiting different characteristics and are suitable in the synthesis of different types of MNs. The selection of materials for formation of MNs greatly depends on the strength of skin penetration, manufacturing method, and rate of drug release.