...
【24h】

Variation in size of blood puddles on different surfaces

机译:不同表面上的血坑大小变化

获取原文
获取原文并翻译 | 示例
           

摘要

Objective It is known that visual estimation of blood loss is inaccurate independently from experience and qualification of rescuers or members of hospital staff. There is no information available about the size of a puddle of blood for a given amount of blood depending on the surface. This pilot study evaluated the size of blood puddles on various surfaces.Methods Human blood was portioned in standardized amounts of fluid and poured on different surfaces: wooden and polyvinyl chloride (PVC) floors, flagging, carpet, asphalt, concrete, forest soil, mattress and towel. The resulting puddles of blood were documented by digital photos and their surface areas measured using a computer.Results The largest blood puddles were found on even surfaces such as PVC floors and concrete, and the smallest blood puddles were found on forest soil and carpet. When blood volume was 100 ml, the difference between the smallest and the largest blood puddle added up to a factor of 13.8 (77 cm2 forest soil, 1061 cm2 PVC). This factor was comparable in all other blood amounts on these two surfaces (13.7 with 250 ml, 13.0 with 500 ml, 13.5 with1000 ml). A table with objects of daily life of comparable size (CD, letter, newspaper, etc.) was added for teaching purposes.Conclusion The size of puddles of blood depended strongly on the type of surface. Up to 13 times larger blood puddles were found on hard and nonabsorbant surfaces (PVC, concrete) than on absorbant surfaces such as carpet or forest soil.
机译:目的众所周知,视失血量而定的视觉估计是独立于救援人员或医务人员的经验和资历的。对于表面上给定数量的血液,没有关于血坑大小的信息。这项初步研究评估了各种表面上的血坑的大小。方法将人体血液按标准量的液体分配,并倒在不同的表面上:木制和聚氯乙烯(PVC)地板,标志,地毯,沥青,混凝土,森林土壤,床垫和毛巾。通过数码照片记录所产生的血液水坑,并使用计算机对其表面积进行测量。结果在平坦的表面(例如PVC地板和混凝土)上发现了最大的血液坑,在森林土壤和地毯上发现了最小的血液坑。当血液量为100 ml时,最小和最大血坑之间的差异加起来达到13.8倍(77平方厘米的森林土壤,1061平方厘米的PVC)。在这两个表面上的所有其他血液量中,该系数是可比的(250毫升时为13.7,500毫升时为13.0,1000毫升时为13.5)。出于教学目的,添加了一张具有类似大小的日常生活对象的桌子(CD,信件,报纸等)。结论血坑的大小在很大程度上取决于表面的类型。在坚硬和非吸收性表面(PVC,混凝土)上发现的血坑比在地毯或森林土壤等吸收性表面上大多达13倍。

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