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首页> 外文期刊>Frontiers in Neurology >When Physics Meets Biology: Low and High-Velocity Penetration, Blunt Impact, and Blast Injuries to the Brain
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When Physics Meets Biology: Low and High-Velocity Penetration, Blunt Impact, and Blast Injuries to the Brain

机译:当物理遇到生物学时:低速和高速度穿透,钝器撞击和爆炸伤脑

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The incidence of traumatic brain injuries (TBI) in the US has reached epidemic proportions with well over 2 million new cases reported each year. TBI can occur in both civilians and warfighters, with head injuries occurring in both combat and non-combat situations from a variety of threats, including ballistic penetration, acceleration, blunt impact, and blast. Most generally, TBI is a condition in which physical loads exceed the capacity of brain tissues to absorb without injury. More specifically, TBI results when sufficient external force is applied to the head and is subsequently converted into stresses that must be absorbed or redirected by protective equipment. If the stresses are not sufficiently absorbed or redirected, they will lead to damage of extracranial soft tissue and the skull. Complex interactions and kinematics of the head, neck and jaw cause strains within the brain tissue, resulting in structural, anatomical damage that is characteristic of the inciting insult. This mechanical trauma then initiates a neuro-chemical cascade that leads to the functional consequences of TBI, such as cognitive impairment. To fully understand the mechanisms by which TBI occurs, it is critically important to understand the effects of the loading environments created by these threats. In the following, a review is made of the pertinent complex loading conditions and how these loads cause injury. Also discussed are injury thresholds and gaps in knowledge, both of which are needed to design improved protective systems.
机译:在美国,创伤性脑损伤(TBI)的发病率已达到流行程度,每年报告的新病例超过200万。 TBI可能在平民和战士中都发生,在战斗和非战斗情况下,头部的伤害都来自多种威胁,包括弹道穿透,加速,钝器撞击和爆炸。最一般地,TBI是一种身体负荷超过脑组织无损伤吸收能力的疾病。更具体地说,当对头部施加足够的外力时会产生TBI,然后将其转换为必须由保护设备吸收或重新定向的应力。如果压力不能充分吸收或转移,它们将导致颅外软组织和颅骨受损。头部,颈部和下颌的复杂相互作用和运动学会导致脑组织内的应变,从而导致结构性的解剖损伤,这是煽动性侮辱的特征。然后,这种机械创伤会引发神经化学级联反应,从而导致TBI的功能性后果,例如认知障碍。要完全了解TBI发生的机制,至关重要的是要了解由这些威胁造成的加载环境的影响。在下文中,对相关的复杂负载条件以及这些负载如何造成伤害进行了回顾。还讨论了伤害阈值和知识差距,这两者都是设计改进的防护系统所必需的。

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