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Utilization of crash scene photos of vehicle damage and intrusion to improve trauma care preparedness

机译:利用车辆损伤和侵扰的碰撞场景照片,提高创伤护理准备

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Objective To design, develop, and field test a smartphone app (called TraumaHawk) that would transmit photographic vehicle crush information to a trauma center in advance of patient arrival, then determine whether such information increases the amount of lead time the trauma center has to activate and prepare for treating crash injured patients. Methods TraumaHawk, a smartphone app for law enforcement and first responders, was designed by the University of Iowa to send photographs showing extent of intrusion and vehicle damage in a vehicle's occupant compartment to the receiving trauma center. With some basic training, first-responders and law enforcement personnel were taught how to photograph vehicles at a crash scene; trauma staff similarly received training regarding crash injury biomechanics and traumatology. For TraumaHawk cases received October 2013-August 2014, electronic medical records and trauma team notification pages were examined. Time of notification and actual time of patient arrival were noted. Time of TraumaHawk alert for these cases was also recorded. Traditional paging and TraumaHawk lead-times (minutes) were calculated. A paired t-test was used to determine if the mean lead-times for the Paging and TraumaHawk alerts differed significantly. Results During the study period, 35 TraumaHawk cases were identified, and 32 met trauma team activation criteria. For these 32, actual mean time between the trauma team page and patient arrival was 12 min; for TraumaHawk, advance notice was received at the trauma center 26 minutes before patient arrival, more than doubling notification time (p<0.001). Conclusions Utiltizing TraumaHawk to identify serious crashes remotely allowed the trauma team significantly more time to prepare for incoming trauma patients than the conventional ambulance crew notification. This allotted time allowed trauma staff to assemble a more complete and appropriate level of care by specialists, as well as to arrange other vital aspects of care - such as scheduling operating rooms.
机译:目的设计,开发和现场试验的智能电话应用程序(称为TraumaHawk),将照相车辆挤压的信息传送到创伤中心预先患者到达的,则确定该信息是否增加了创伤中心具有以激活的前置时间量并用于治疗事故中受伤的患者做准备。方法TraumaHawk,对执法人员和急救人员一个智能手机应用程序,旨在通过爱荷华大学送照片显示在车辆的乘员舱到接收创伤中心入侵和车辆损坏的程度。一些基本的训练,第一反应者和执法人员被教导如何在失事现场照片的车辆;外伤人员同样收到了关于碰撞损伤生物力学和创伤培训。对于收到的2013年10月 - 2014年8月TraumaHawk情况下,电子病历和创伤团队通知页面进行了检查。通知和患者实际到达时间时指出。 TraumaHawk警惕这些案件时间也被记录。传统的寻呼和TraumaHawk交货时间(分钟)进行了计算。配对t检验用于确定如果平均交货期寻呼和TraumaHawk警报显著不同。结果在研究期间,35 TraumaHawk例进行了鉴定,并且满足32创伤小组激活标准。对于这些32,创伤团队页和患者到达之间实际平均时间为12分钟;对于TraumaHawk,预先通知在创伤中心接收到患者到来之前26分钟,增加了一倍以上通知时间(P <0.001)。结论Utiltizing TraumaHawk识别严重崩溃允许远程的创伤团队显著更多的时间来传入创伤患者比传统的救护人员通知准备。这个规定的时间使创伤的工作人员由专家组成的护理更加完整和适当的水平,以及安排照顾的其他重要方面 - 如调度手术室。

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