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Journal of surgery and emergency medicine最新文献

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Blast Scaling Parameters: Transitioning from Lung to Skull Base Metrics. 爆炸缩放参数:从肺到颅底度量的转换。
Pub Date : 2017-01-01 Epub Date: 2017-01-10
Brandon P Lucke-Wold, Ryan C Turner, Aric Flint Logsdon, Charles L Rosen, Rabia Qaiser

Neurotrauma from blast exposure is one of the single most characteristic injuries of modern warfare. Understanding blast traumatic brain injury is critical for developing new treatment options for warfighters and civilians exposed to improvised explosive devices. Unfortunately, the pre-clinical models that are widely utilized to investigate blast exposure are based on archaic lung based parameters developed in the early 20th century. Improvised explosive devices produce a different type of injury paradigm than the typical mortar explosion. Protective equipment for the chest cavity has also improved over the past 100 years. In order to improve treatments, it is imperative to develop models that are based more on skull-based parameters. In this mini-review, we discuss the important anatomical and biochemical features necessary to develop a skull-based model.

爆炸造成的神经创伤是现代战争中最典型的伤害之一。了解爆炸创伤性脑损伤对于为暴露于简易爆炸装置的作战人员和平民制定新的治疗方案至关重要。不幸的是,广泛用于研究爆炸暴露的临床前模型是基于20世纪初开发的基于肺部的古老参数。简易爆炸装置产生的伤害模式与典型的迫击炮爆炸不同。在过去的100年里,胸腔的防护设备也得到了改进。为了改善治疗方法,必须开发更多基于颅骨参数的模型。在这篇简短的综述中,我们讨论了重要的解剖学和生化特征,这是建立颅骨模型所必需的。
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Journal of surgery and emergency medicine
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