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首页> 外文期刊>Biological research for nursing >A Rodent Model to Advance the Field Treatment of Crush Muscle Injury During Earthquakes and Other Natural Disasters
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A Rodent Model to Advance the Field Treatment of Crush Muscle Injury During Earthquakes and Other Natural Disasters

机译:啮齿动物模型,可促进地震和其他自然灾害期间对挤压肌损伤的现场处理

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Approximately 170 earthquakes of 6.0 or higher magnitude occur annually worldwide. Victims often suffer crush muscle injuries involving impaired blood flow to the affected muscle and damage to the muscle fiber membrane. Current rescue efforts are directed toward preventing acute kidney injury (AKI), which develops upon extrication and muscle reperfusion. But field-usable, muscle-specific interventions may promote muscle regeneration and prevent or minimize the pathologic changes of reperfusion. Although current rodent crush injury models involve reperfusion upon removal of the crush stimulus, an analysis of their methodological aspects is needed to ensure adequate simulation of the earthquake-related crush injury. The objectives of this systematic review are to (a) describe rodent crush muscle injury models, (b) discuss the benefits and limitations of these models, and (c) offer a recommendation for animal models that would increase our understanding of muscle recovery processes after an earthquake-induced crush muscle injury. The most commonly used rodent model uses a clamping or pressing crush stimulus directly applied to murine hindlimb muscle. This model has increased our understanding of muscle regeneration but its open approach does not adequately represent the earthquake-related crush injury. The model we recommend for developing field-usable, muscle-specific interventions is a closed approach that involves a nonclamping crush stimulus. Findings from studies employing this recommended model may have greater relevance for developing interventions that lessen the earthquake's devastating impact on individual and community health and quality of life, especially in developing countries.
机译:全球每年发生约170次6.0级或更高级别的地震。受害者经常会遭受挤压肌损伤,包括受损血液流向患处的肌肉和肌纤维膜的损坏。当前的救援工作旨在防止急性肾损伤(AKI),这种急性肾损伤在脱身和肌肉再灌注时会发展。但是,现场可用的,针对肌肉的干预措施可能会促进肌肉再生,并防止或最小化再灌注的病理变化。尽管当前的啮齿动物挤压伤害模型涉及去除挤压刺激后的再灌注,但仍需要对其方法学方面进行分析,以确保对与地震有关的挤压伤害进行充分的模拟。该系统评价的目的是(a)描述啮齿动物挤压性肌肉损伤模型,(b)讨论这些模型的优点和局限性,(c)为动物模型提供建议,以增加我们对术后肌肉恢复过程的了解。地震引起的挤压肌损伤。最常用的啮齿动物模型使用直接应用于鼠后肢肌肉的夹紧或挤压挤压刺激。该模型增加了我们对肌肉再生的理解,但其开放式方法不足以代表与地震相关的挤压伤。我们建议用于开发可在现场使用的,针对特定肌肉的干预措施的模型是一种封闭方法,其中涉及非钳制性挤压刺激。采用这种推荐模型的研究结果可能与开发减少地震对个人和社区健康以及生活质量的破坏性影响的干预措施具有更大的相关性,尤其是在发展中国家。

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