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  1. Hunt EA, Cruz-Eng H, Bradshaw JH, Hodge M, Bortner T, Mulvey CL, et al.
    Resuscitation, 2015 Jan;86:1-5.
    PMID: 25457379 DOI: 10.1016/j.resuscitation.2014.10.007
    Observations of cardiopulmonary arrests (CPAs) reveal concerning patterns when clinicians identify a problem, (e.g. loss of pulse) but do not immediately initiate appropriate therapy (e.g. compressions) resulting in delays in life saving therapy.
    Matched MeSH terms: Internship and Residency/methods
  2. Madan SS, Pai DR
    Simul Healthc, 2014 Apr;9(2):127-35.
    PMID: 24096921 DOI: 10.1097/SIH.0b013e3182a86165
    Arthroscopy uses a completely different skill set compared with open orthopedic surgery. Hitherto, arthroscopy had not been given enough emphasis in the core orthopedic curricula. Simulation has been seen as an excellent way to teach the skills required in arthroscopy. The simulators used for arthroscopy training can be broadly classified into physical simulators such as cadavers, animals, models and box trainers, virtual-reality simulators, and hybrid simulators that combine virtual-reality simulation with physical components that allow real tactile feedback. The advantages and disadvantages of each of these types have been described in this article. The factors that determine skill acquisition using these simulators have been highlighted. In conclusion, simulation seems to be a valuable tool for arthroscopy training, although further studies are needed to state whether this translates into better operative skill on real patients.
    Matched MeSH terms: Internship and Residency/methods*
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