• Title/Summary/Keyword: 메조테라피

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Acute pyelonephritis and myositis after carboxytherapy : A case report (카르복시테라피 후 발생한 급성 신우신염 및 근육염 : 증례 보고)

  • Sun, KyungHoon;Heo, JunHo;Hwang, Yong
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.19 no.8
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    • pp.417-421
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    • 2018
  • Carboxytherapy is very similar to mesotherapy in terms of methods, conditions it treats, and outcomes. An important difference consider, however, is that carboxytherapy administers carbon dioxide gas into the subcutaneous layer, just underneath the skin, whereas mesotherapy administers a cocktail of vitamins, minerals, and drugs and into the mesoderm of the skin. There have been many previous case reports of complications of mesotherapy such as hematoma, granulomatous panniculitis, cellulitis, and abscesses. However, complications of carboxytherapy have rarely been reported because the carbon dioxide gas is absorbed within a week and is infused into the subcutaneous and superficial layers. A 27-year-old woman who had twice undergone carboxytherapy to reduce abdominal fat (3 days and 2 weeks ago) at an oriental medical clinic visited the emergency department due to high fever, myalgia, severe back pain, and subcutaneous emphysema from the buttocks to the lower chest wall area. A computed tomography (CT) scan was performed for diagnosis and treatment. We immediately started broad spectrum antibiotics and consulted with the department of radiology, which could not rule out acute peritonitis due to needle injury. A radiologist confirmed abdominal myositis and needle puncture induced acute pyelonephritis. Pyelonephritis can even lead to septicemia, which can have fatal consequences. Therefore, if the patient has costovertebral or back pain after undergoing needle puncture or acupuncture therapy, the emergency physcians need careful initial evaluation for diagnosis and treatment.

Dynamic Analysis of Driving Mechanism for Displacement Controlled Automatic Drug Injector (변위 제어형 자동 약물주입기의 구동기구 동역학 해석)

  • Shin, Young Kyu;Han, Nam Gyu;Tak, Tae Oh
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.37 no.3
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    • pp.303-311
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    • 2013
  • This research deals with the analysis and design of a driving mechanism for an automatic pneumatic drug injector, which can precisely control the injection volume using a relatively simple friction-driven mechanism, without any complicated control system. Through a dynamic analysis, the effects of the design parameters of the driving mechanism associated with the geometry, spring stiffness, and fiction are analyzed, and the results are reflected in a proto-type drug injector design, which is under development for mass production. A test is performed to assess the durability of the mechanism for up to one million operations, and comparison of its displacement after one million operations, verifies the mechanism's durability.