Fijalkowski Ronald J, Ellingson Benjamin M, Stemper Brian D, Yoganandan Narayan, Gennarelli Thomas A, Pintar Frank A
Dept. of Neurosurgery, Medical College of Wisconsin, Milwaukee, WI, USA.
Biomed Sci Instrum. 2006;42:108-13.
Commonly considered a continuum of injuries, diffuse brain injury (DBI) ranges from mild concussion to severe diffuse axonal injury. The lower end of the spectrum is generally referred to as mild traumatic brain injury (MTBI). More severe forms of DBI have garnered extensive experimentation while these milder cases are considerably less explored. Recently, a new device was designed to generate DBI in the rodent using impact-induced angular acceleration. This device is modifiable so the entire spectrum of DBI can be investigated. Severity of DBI is critically dependent on magnitude of angular acceleration. A small animal surrogate like a rodent has a relatively small brain mass. This constraint poses a unique problem because the angular acceleration necessary for DBI is inversely related to brain mass. Prior experimentation estimated an angular acceleration of approximately 350 krad/s2 is necessary for the induction of mild traumatic brain injury (MTBI) in the rodent. To induce these magnitudes of angular acceleration in a repeatable manner, the impacting interface must be critically analyzed. This investigation uses a mathematical model based on parameters of a previously developed experimental model to assess the impacting interface such that angular accelerations are sufficient to produce MTBI in the rodent.
弥漫性脑损伤(DBI)通常被认为是一种连续的损伤,范围从轻度脑震荡到严重的弥漫性轴索损伤。该谱系的低端通常被称为轻度创伤性脑损伤(MTBI)。更严重形式的DBI已经进行了广泛的实验,而这些较轻微的病例则研究得少得多。最近,一种新设备被设计用于通过撞击诱导的角加速度在啮齿动物中产生DBI。该设备是可修改的,因此可以研究DBI的整个谱系。DBI的严重程度关键取决于角加速度的大小。像啮齿动物这样的小动物替身脑质量相对较小。这一限制带来了一个独特的问题,因为DBI所需的角加速度与脑质量成反比。先前的实验估计,在啮齿动物中诱导轻度创伤性脑损伤(MTBI)大约需要350 krad/s2的角加速度。为了以可重复的方式诱导这些角加速度值,必须严格分析撞击界面。本研究使用基于先前开发实验模型参数的数学模型来评估撞击界面,以使角加速度足以在啮齿动物中产生MTBI。