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Traumatic brain injury induced by exposure to blast overpressure via ear canal

机译:通过耳道暴露爆炸超压引起的创伤性脑损伤

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Exposure to explosive shockwave often leads to blast-induced traumatic brain injury in military and civilian populations.Unprotected ears are most often damaged following exposure to blasts.Although there is an association between tympanic membrane perforation and TBI in blast exposure victims,little is known about how and to what extent blast energy is transmitted to the central nervous system via the external ear canal.The present study investigated whether exposure to blasts directed through the ear canal causes brain injury in LongEvans rats.Animals were exposed to a single blast(0–30 pounds per square inch(psi))through the ear canal,and brain injury was evaluated by histological and behavioral outcomes at multiple time-points.Blast exposure not only caused tympanic membrane perforation but also produced substantial neuropathological changes in the brain,including increased expression of c-Fos,induction of a profound chronic neuroinflammatory response,and apoptosis of neurons.The blast-induced injury was not limited only to the brainstem most proximal to the source of the blast,but also affected the forebrain including the hippocampus,amygdala and the habenula,which are all involved in cognitive functions.Indeed,the animals exhibited long-term neurological deficits,including signs of anxiety in open field tests 2 months following blast exposure,and impaired learning and memory in an 8-arm maze 12 months following blast exposure.These results suggest that the unprotected ear canal provides a locus for blast waves to cause TBI.This study was approved by the Institutional Animal Care and Use Committee at the University of Mississippi Medical Center(Animal protocol#0932 E,approval date:September 30,2016 and 0932 F,approval date:September 27,2019).
机译:暴露于爆炸性的冲击波通常导致军事和平民群体的爆炸诱导的创伤性脑损伤。爆炸暴露后,避免的耳朵最常被损坏。虽然鼓膜穿孔与爆炸暴露受害者的TBI之间存在关联,但很少见如何以及在多大程度上通过外部耳道传递到中枢神经系统的程度。本研究研究了是否通过耳道指导的爆炸暴露导致长寿大鼠的脑损伤。海洋暴露于一次爆炸(0-通过耳道30磅/平方英寸(PSI))通过耳道,通过多个时间点的组织学和行为结果评估脑损伤。细胞暴露不仅导致鼓膜膜穿孔,而且在大脑中产生了大量的神经病理学变化,包括增加C-FOS的表达,诱导深度慢性神经炎性反应,肾凋亡.B最后诱导的伤害仅限于爆炸源最近似的脑干,但也影响了包括海马,杏仁菌和哈伯拉的前脑,这些都参与了认知功能。inded,动物展示了长期神经缺陷,包括开放场测试中的焦虑症状2个月后,在爆炸暴露后的8臂迷宫中的学习和记忆受损。这些结果表明,未受保护的耳道为爆炸波提供爆发轨迹TBI.This学习被密西西比医疗中心的机构动物护理和使用委员会批准(动物议定书#0932 e,批准日期:9月30,2016和0932 F,批准日期:9月27,2019)。

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