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原发性爆炸冲击性脑损伤的机制:冲击波研究的新视角。

Mechanisms of primary blast-induced traumatic brain injury: insights from shock-wave research.

机构信息

Department of Neurosurgery, Tohoku University Graduate School of Medicine, Sendai, Japan.

出版信息

J Neurotrauma. 2011 Jun;28(6):1101-19. doi: 10.1089/neu.2010.1442. Epub 2011 May 5.

DOI:10.1089/neu.2010.1442
PMID:21332411
Abstract

Traumatic brain injury caused by explosive or blast events is traditionally divided into four phases: primary, secondary, tertiary, and quaternary blast injury. These phases of blast-induced traumatic brain injury (bTBI) are biomechanically distinct and can be modeled in both in vivo and in vitro systems. The primary bTBI injury phase represents the response of brain tissue to the initial blast wave. Among the four phases of bTBI, there is a remarkable paucity of information about the cause of primary bTBI. On the other hand, 30 years of research on the medical application of shockwaves (SW) has given us insight into the mechanisms of tissue and cellular damage in bTBI, including both air-mediated and underwater SW sources. From a basic physics perspective, the typical blast wave consists of a lead SW followed by supersonic flow. The resultant tissue injury includes several features observed in bTBI, such as hemorrhage, edema, pseudoaneurysm formation, vasoconstriction, and induction of apoptosis. These are well-described pathological findings within the SW literature. Acoustic impedance mismatch, penetration of tissue by shock/bubble interaction, geometry of the skull, shear stress, tensile stress, and subsequent cavitation formation, are all important factors in determining the extent of SW-induced tissue and cellular injury. Herein we describe the requirements for the adequate experimental set-up when investigating blast-induced tissue and cellular injury; review SW physics, research, and the importance of engineering validation (visualization/pressure measurement/numerical simulation); and, based upon our findings of SW-induced injury, discuss the potential underlying mechanisms of primary bTBI.

摘要

爆炸或冲击波事件引起的创伤性脑损伤传统上分为四个阶段

原发性、继发性、三级和四级爆炸伤。这些爆炸引起的创伤性脑损伤(bTBI)阶段在生物力学上是不同的,可以在体内和体外系统中进行建模。原发性 bTBI 损伤阶段代表脑组织对初始冲击波的反应。在 bTBI 的四个阶段中,原发性 bTBI 的病因信息非常缺乏。另一方面,30 年来冲击波在医学上的应用研究使我们深入了解了 bTBI 中组织和细胞损伤的机制,包括空气介导和水下冲击波源。从基本物理学的角度来看,典型的爆炸波由一个先导冲击波 followed 由超音速流。由此产生的组织损伤包括 bTBI 中观察到的几种特征,如出血、水肿、假性动脉瘤形成、血管收缩和细胞凋亡诱导。这些都是冲击波文献中描述良好的病理发现。声阻抗不匹配、冲击波/气泡相互作用穿透组织、颅骨几何形状、剪切应力、拉伸应力和随后的空化形成,都是决定冲击波引起的组织和细胞损伤程度的重要因素。本文描述了研究爆炸引起的组织和细胞损伤时,实验设置的要求;综述了冲击波物理学、研究和工程验证的重要性(可视化/压力测量/数值模拟);并根据我们对冲击波诱导损伤的发现,讨论了原发性 bTBI 的潜在潜在机制。

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