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An Alternative Model of Laser-Induced Stroke in the Motor Cortex of Rats

机译:大鼠电机皮质激光诱导中风的替代模型

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A common experimental rodent model for stroke includes induction by a technique in which middle cerebral artery is transiently (MCAO-t) or permanently (MCAO-p) occluded by catheterization. However, this model has prominent disadvantages which consist of the high variability of localization and size of the ischemic area, cases of intracranial hemorrhage and high mortality. Furthermore, the duration of a single MCAO operation takes about thirty minutes and requires highly trained staff. In this article, we propose an alternative method, which is based on laser-induced stroke in the motor cortex. In our research, we compared the original MCAO-p and MCAO-t models and a novel laser model. Compared with the impact of original MCAO-p and MCAO-t technique on brain tissue, the minimally invasive laser model demonstrated a decrease in: variability in body temperature, percent of infarcted volume, blood brain barrier breakdown and brain edema, as well as a prominent decrease of mortality and intracranial hemorrhage. Among other findings of this article, it can be noted that damage to the brain tissue in laser groups occurred only in the region of the motor cortex, without involving the striatal area. The data presented in this paper show that the model of laser irradiation can serve as an effective method of inducible brain cortical infarction and may lead to a better understanding of the pathophysiology of ischemic stroke and the future development of new drugs and other neuro-protective agents.
机译:用于中风的常见实验啮齿动物模型包括通过瞬时(MCAO-T)或永久性(MCAO-P)被导尿闭塞的技术诱导。然而,该模型具有突出的缺点,该缺点包括缺血地区的局部化和大小,颅内出血和高死亡率的高度变化。此外,单个MCAO操作的持续时间大约需要大约30分钟,并且需要训练有素的工作人员。在本文中,我们提出了一种替代方法,其基于电动机皮质中的激光诱导的中风。在我们的研究中,我们比较了原始的MCAO-P和MCAO-T模型和新型激光模型。与原始MCAO-P和MCAO-T技术对脑组织的影响相比,最微创激光模型表明,体温变异,梗死体积百分比,血脑屏障分解和脑水肿,以及A突出降低死亡率和颅内出血。在本文的其他发现中,可以注意到,在电动机皮层的区域中仅发生激光组中的脑组织的损伤,而不涉及纹体区域。本文提出的数据表明,激光辐照模型可以作为诱导脑皮质梗死的有效方法,并可能导致更好地了解缺血性卒中的病理生理学和新药和其他神经保护剂的未来发展。

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