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Precisely controllable traumatic brain injury devices for rodent models

机译:用于啮齿动物模型的精确可控创伤性脑损伤装置

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The purpose of this work is to design novel, modular devices in order to reproduce traumatic brain injury in the rat and mouse models: fluid percussion injury (FPI), controlled cortical impact (CCI) and the Shock tube. Commercially available TBI devices are often unimethodical, expensive and sensitive to experimental variability. To achieve maximum control and sensitivity, in our first device, we utilized a closed loop voice coil control device to more accurately and precisely generate the temporal force function delivered by the CCI and FPI methods. This device has generated pressures comparable to the ones from literature where commercially available devices were utilized. Upon exposure to a moderate parasagittal TBI from this FPI device, experimental rats have shown comparable pathological effects as has been discussed in literature for similar levels of injury. The intent of the second device, the shock tube, which uses a slightly different technique but is nonetheless modular and precise; is also to induce blast related TBI in small animals. Initial studies would include in vitro bench testing with a pressure transducer to compare results obtained from literature using other shock tubes.
机译:这项工作的目的是设计新颖的模块化装置,以便在大鼠和小鼠模型中再现创伤性脑损伤:流体打击损伤(FPI),受控皮质冲击(CCI)和冲击管。市售的TBI器件通常是不成熟的,昂贵且对实验变异性敏感的。为了实现最大控制和灵敏度,在我们的第一设备中,我们利用闭环音圈控制装置更准确,精确地产生由CCI和FPI方法提供的时间力函数。该装置产生的压力与来自商业上可获得的装置的文献相当的压力。在从该FPI器件暴露于中度放射性TBI后,实验大鼠表明了在文献中讨论的类似损伤水平的可比病理效果。第二个装置的目的,震动管,使用略有不同的技术,但仍然是模块化和精确的;也是在小动物中诱导爆炸相关的TBI。初步研究将包括具有压力传感器的体外台面测试,以比较使用其他冲击管从文献获得的结果。

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