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首页> 外文期刊>Journal of neurotrauma >Electromagnetic controlled cortical impact device for precise, graded experimental traumatic brain injury.
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Electromagnetic controlled cortical impact device for precise, graded experimental traumatic brain injury.

机译:电磁控制的皮质撞击装置,用于精确,分级的实验性颅脑外伤。

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Genetically modified mice represent useful tools for traumatic brain injury (TBI) research and attractive preclinical models for the development of novel therapeutics. Experimental methods that minimize the number of mice needed may increase the pace of discovery. With this in mind, we developed and characterized a prototype electromagnetic (EM) controlled cortical impact device along with refined surgical and behavioral testing techniques. By varying the depth of impact between 1.0 and 3.0 mm, we found that the EM device was capable of producing a broad range of injury severities. Histologically, 2.0-mm impact depth injuries produced by the EM device were similar to 1.0-mm impact depth injuries produced by a commercially available pneumatic device. Behaviorally, 2.0-, 2.5-, and 3.0-mm impacts impaired hidden platform and probe trial water maze performance, whereas 1.5-mm impacts did not. Rotorod and visible platform water maze deficits were also found following 2.5- and 3.0-mm impacts. No impairment of conditioned fear performance was detected. No differences were found between sexes of mice. Inter-operator reliability was very good. Behaviorally, we found that we could statistically distinguish between injury depths differing by 0.5 mm using 12 mice per group and between injury depths differing by 1.0 mm with 7-8 mice per group. Thus, the EM impactor and refined surgical and behavioral testing techniques may offer a reliable and convenient framework for preclinical TBI research involving mice.
机译:转基因小鼠代表了创伤性脑损伤(TBI)研究的有用工具,以及开发新型疗法的有吸引力的临床前模型。使所需小鼠数量最小化的实验方法可能会加快发现速度。考虑到这一点,我们开发并表征了原型电磁(EM)控制的皮层撞击装置以及完善的手术和行为测试技术。通过在1.0到3.0 mm之间改变冲击深度,我们发现EM设备能够产生广泛的伤害严重程度。从组织学上讲,由EM设备产生的2.0毫米冲击深度伤害类似于由市售气动设备产生的1.0毫米冲击深度伤害。从行为上讲,2.0毫米,2.5毫米和3.0毫米的撞击会削弱隐藏平台和探针试验水迷宫的性能,而1.5毫米的撞击则不会。在2.5毫米和3.0毫米的撞击之后,还发现了Rotorod和可见平台的水迷宫缺陷。没有检测到条件恐惧表现的损害。小鼠性别之间未发现差异。运营商之间的可靠性非常好。从行为上,我们发现我们可以在统计学上区分每组12只小鼠的0.5mm的损伤深度和每组7-8只小鼠1.0mm的损伤深度。因此,EM撞击器以及完善的手术和行为测试技术可以为涉及小鼠的临床前TBI研究提供可靠且方便的框架。

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