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首页> 外文期刊>Journal of Neurosurgery. Spine. >Optimization of a mouse locomotor rating system to evaluate compression-induced spinal cord injury: correlation of locomotor and morphological injury indices.
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Optimization of a mouse locomotor rating system to evaluate compression-induced spinal cord injury: correlation of locomotor and morphological injury indices.

机译:小鼠运动评分系统的优化,以评估压迫性脊髓损伤:运动与形态学损伤指数的相关性。

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OBJECT: Due to the usefulness of mouse genetics, there is a need to improve procedures for producing and assessing spinal cord injury (SCI) in mice. The authors describe an improved locomotor scoring system for evaluating SCI. The modified Basso-Beattie-Bresnahan (mBBB) scoring system for mice is compared with existing procedures as well as histological SCI criteria. METHODS: Mice were subjected to SCI by placing a weight on the cord at T-12 for 5 to 15 minutes after laminectomy to produce spinal cord ischemia. Injury was assessed using mBBB scoring that incorporates elements of the rat BBB and the mouse motor function scoring systems that are best suited for precisely assessing mouse SCI. The mBBB score was found to be more discriminating than the inclined plane test, and in the authors' laboratory it had a significantly lower coefficient of variation than the Basso mouse scale score. The mBBB score is well correlated with sparing of white matter as assessed by eriochrome cyanine staining of myelin. CONCLUSIONS: Weight placement at T-12 in the mouse causes reproducible SCI. A new mBBB scoring system is useful for accurately assessing locomotor dysfunction following SCI in mice and is well correlated with histological assessment of spinal cord white matter.
机译:目的:由于小鼠遗传学的有用性,因此需要改进在小鼠中产生和评估脊髓损伤(SCI)的程序。作者描述了一种用于评估SCI的改进的运动评分系统。修改后的Basso-Beattie-Bresnahan(mBBB)小鼠评分系统与现有程序以及组织学SCI标准进行了比较。方法:在椎板切除术后,在T-12的绳索上放置重物5至15分钟,使小鼠遭受脊髓损伤,以产生脊髓缺血。使用结合了大鼠BBB元素和最适合精确评估小鼠SCI的小鼠运动功能评分系统的mBBB评分来评估损伤。发现mBBB得分比倾斜平面测试更具区分性,并且在作者的实验室中,它的变异系数比Basso小鼠刻度得分低得多。 mBBB评分与白质的稀疏度高度相关,如髓磷脂的铬染菁染色所评估的。结论:在小鼠T-12上放置重物可导致SCI重现。新的mBBB评分系统可用于准确评估小鼠SCI后的运动功能障碍,并且与脊髓白质的组织学评估密切相关。

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