首页> 外文期刊>International wound journal. >Comparing the reported burn conditions for different severity burns in porcine models: a systematic review
【24h】

Comparing the reported burn conditions for different severity burns in porcine models: a systematic review

机译:比较猪模型中不同严重程度烧伤的报告的烧伤条件:系统评价

获取原文
获取原文并翻译 | 示例
           

摘要

Abstract There are many porcine burn models that create burns using different materials (e.g. metal, water) and different burn conditions (e.g. temperature and duration of exposure). This review aims to determine whether a pooled analysis of these studies can provide insight into the burn materials and conditions required to create burns of a specific severity. A systematic review of 42 porcine burn studies describing the depth of burn injury with histological evaluation is presented. Inclusion criteria included thermal burns, burns created with a novel method or material, histological evaluation within 7 days post‐burn and method for depth of injury assessment specified. Conditions causing deep dermal scald burns compared to contact burns of equivalent severity were disparate, with lower temperatures and shorter durations reported for scald burns (83°C for 14 seconds) compared to contact burns (111°C for 23 seconds). A valuable archive of the different mechanisms and materials used for porcine burn models is presented to aid design and optimisation of future models. Significantly, this review demonstrates the effect of the mechanism of injury on burn severity and that caution is recommended when burn conditions established by porcine contact burn models are used by regulators to guide scald burn prevention strategies.
机译:摘要有许多猪燃烧模型,使用不同的材料(例如金属,水)和不同的燃烧条件(例如,温度和曝光时间)产生燃烧。该审查旨在确定这些研究的汇总分析是否可以深入了解产生特定严重程度的烧伤所需的燃烧材料和条件。介绍了描述了描述与组织学评价烧伤深度的42种猪烧伤研究的系统综述。包含标准包括热烧伤,用新的方法或物质产生的烧伤,7天内的组织学评估,烧伤后7天内和伤害评估深度的方法。与相同严重程度的接触燃烧相比,导致深皮烫伤燃烧的病症是不同的,与接触烧伤(111°C为23秒),具有较低的温度和较短的持续时间(83°C,14秒)。提供了用于猪烧模型的不同机制和材料的有价值的档案,以帮助设计和优化未来的模型。值得注意的是,该综述证明了损伤机制对烧伤严重程度的影响,并且当监管机构使用猪接触燃烧模型建立的燃烧条件时建议小心,以指导烫伤预防策略。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号