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首页> 外文期刊>Central European neurosurgery >Closed traumatic brain injury model in sheep mimicking high-velocity, closed head trauma in humans.
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Closed traumatic brain injury model in sheep mimicking high-velocity, closed head trauma in humans.

机译:模仿人类高速闭合颅脑损伤的绵羊闭合颅脑损伤模型。

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摘要

To date, there are only a few, non-evidence based, cerebroprotective therapeutic strategies for treatment and, accordingly, for prevention of secondary brain injuries following severe closed head trauma. In order to develop new therapy strategies, existing realistic animal models need to be advanced. The objective is to bridge standardized small animal models and actual patient medical care, since the results of experimental small animal studies often cannot be transferred to brain-injured humans. For improved standardization of high-velocity trauma, new trauma devices for initiating closed traumatic brain injury in sheep were developed. The following new devices were tested: 1. An anatomically shaped rubber bolt with an integrated oscillation absorber for prevention of skull fractures; 2. Stationary mounting of the bolt to guarantee stable experimental conditions; 3. Varying degrees of trauma severity, i. e., mild and severe closed traumatic brain injury, using different cartridges; and 4. Trauma analysis via high-speed video recording. Peritraumatic measurements of intracranial pressure, brain tissue pH, brain tissue oxygen, and carbon dioxide pressure, as well as neurotransmitter concentrations were performed. Cerebral injuries were documented with magnetic resonance imaging and compared to neuropathological results. Due to the new trauma devices, skull fractures were prevented. The high-speed video recording documented a realistic trauma mechanism for a car accident. Enhancement of extracellular glutamate, aspartate, and gamma amino butyric acid concentrations began 60 min after the trauma. Magnetic resonance imaging and neuropathological results showed characteristic injury patterns of mild, and severe, closed traumatic brain injury. The severe, closed traumatic brain injury group showed diffuse axonal injuries, traumatic subarachnoid hemorrhage, and hemorrhagic contusions with inconsistent distribution among the animals. The model presented here achieves a gain in standardization of severe, closed traumatic brain injury by increasing approximation to reality. The still existent heterogeneity of brain pathology mimics brain changes observed in patients after high-energy trauma. This model seems to close the gap between experimental small animal models and clinical studies. However, further investigations are needed to evaluate if this model can be used for testing new therapeutic strategies for these patients.
机译:迄今为止,只有极少数基于证据的脑保护性治疗策略可用于治疗,从而预防严重的闭合性颅脑外伤后继发性脑损伤。为了制定新的治疗策略,需要改进现有的现实动物模型。目的是架起标准化的小动物模型和实际患者医疗服务的桥梁,因为小动物实验研究的结果通常无法转移给脑损伤的人。为了改善高速创伤的标准化,开发了用于在绵羊中引发闭合性颅脑损伤的新创伤装置。测试了以下新设备:1.具有一体式减震器的解剖形状橡胶螺栓,可防止颅骨骨折; 2.固定安装螺栓,以确保稳定的实验条件; 3.不同程度的创伤严重程度,即例如,使用不同的墨盒,轻度和重度闭合性颅脑外伤; 4.通过高速视频记录进行创伤分析。对颅内压,脑组织pH值,脑组织氧和二氧化碳压以及神经递质浓度进行了创伤后测量。磁共振成像记录了脑损伤,并与神经病理学结果进行了比较。由于采用了新的创伤装置,可以防止颅骨骨折。高速录像记录了车祸的现实创伤机制。创伤后60分钟开始增强细胞外谷氨酸,天冬氨酸和γ-氨基丁酸的浓度。磁共振成像和神经病理学结果显示轻度和重度闭合性颅脑损伤的特征性损伤模式。严重的闭合性外伤性脑损伤组表现为弥漫性轴索损伤,外伤性蛛网膜下腔出血和出血性挫伤,在动物之间分布不一致。通过增加逼近度,此处介绍的模型在严重,闭合性颅脑损伤的标准化方面取得了进展。脑病理学仍然存在的异质性模仿了高能创伤患者中观察到的脑部变化。该模型似乎弥合了实验性小动物模型与临床研究之间的鸿沟。但是,需要进一步研究以评估该模型是否可用于测试这些患者的新治疗策略。

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