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Establishment and validation of standardized animal models of spinal cord injury by normal external force-caused fracture dislocation

机译:正常外力引起的骨折脱位脊髓损伤的标准动物模型的建立和验证

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The duplication of animal models plays a key role in spinal cord injury research; however, there has been limited study into normal, external force-derived fracture dislocation. This study adopted experimental devices, designed in-house, to construct standardized ventral and dorsal spinal cord injury animal models of 6 g and 17 g falling from a height of 2, 4, and 10 cm, and 15, 30 or 50 g transversal compression on the spinal cord. The results showed that gradual increases in the degree of histopathological injury led to decreased Tarlov and Basso, Beattie and Bresnahan scores for the behavioral test, and increased Ashworth scores for the hind limb. Furthermore, there was a gradual decline in the slope test in the rats with dorsal spinal cord injury that correlated to increases in the falling substance weight or falling height. Similar alterations were observed in the ventral spinal cord injured rats, proportional to the increase in compression weight. Our experimental findings indicate that the standardized experimental rat models of dorsal and ventral spinal cord injury are stable, reliable and reproducible.
机译:动物模型的复制在脊髓损伤研究中起着关键作用。然而,对于正常的,外力引起的骨折脱位的研究还很有限。这项研究采用内部设计的实验设备,构建了分别从2、4、10 cm的高度落下,横向压缩15、30或50 g的6 g和17 g标准化的腹侧和背侧脊髓损伤动物模型在脊髓上。结果表明,组织病理学损伤程度的逐渐增加导致行为测试的Tarlov和Basso,Beattie和Bresnahan得分降低,后肢的Ashworth得分升高。此外,脊髓背损伤的大鼠的斜率试验逐渐下降,这与下降的物质重量或下降的高度增加有关。在腹侧脊髓损伤的大鼠中观察到类似的变化,与压缩重量的增加成比例。我们的实验结果表明,标准化的实验性大鼠背侧和腹侧脊髓损伤模型是稳定,可靠和可重复的。

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