首页> 外文期刊>Ultrasound in Medicine and Biology >EFFECTS OF EXTRACORPOREAL SHOCK WAVE THERAPY ON FUNCTIONAL RECOVERY AND NEUROTROPHIN-3 EXPRESSION IN THE SPINAL CORD AFTER CRUSHED SCIATIC NERVE INJURY IN RATS
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EFFECTS OF EXTRACORPOREAL SHOCK WAVE THERAPY ON FUNCTIONAL RECOVERY AND NEUROTROPHIN-3 EXPRESSION IN THE SPINAL CORD AFTER CRUSHED SCIATIC NERVE INJURY IN RATS

机译:坐骨神经冲击波对大鼠坐骨神经损伤后功能恢复和脊髓神经营养因子3表达的影响

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The study described here investigated the effects of extracorporeal shock wave therapy (ESWT) on functional recovery and neurotrophin-3 expression in the spinal cord after sciatic nerve injury in rats. Forty-five 8-wk-old rats were used and randomly divided into three groups: An experimental group, a control group and a sham group. The experimental group received ESWT after the nerve-crushing damage. The sciatic functional index and Dartfish Software were used to determine the effect of sciatic nerve damage on functional changes. A 1-cm length of spinal cord encompassing the L4-6 level was removed for Western blot analysis. The sciatic functional index significantly changed in both the ESWT and control groups after impairment. In the time course evaluation of the ankle angle in the toe off, the ESWT group had statistically significant increases from day 21 onward. There was a significant difference in neurotrophin-3 expression between the groups on days 1, 7 and 14 after impairment. Early application of ESWT increased the expression of neurotrophin-3 and neurotrophin-3 mRNA, and daily therapy facilitated the activity of macrophages and Schwann cells, which affect the survival and regeneration of neurons. (E-mail: Niceguygil@gmail.com) (C) 2015 World Federation for Ultrasound in Medicine & Biology.
机译:此处描述的研究调查了体外冲击波治疗(ESWT)对大鼠坐骨神经损伤后脊髓功能恢复和Neurotrophin-3表达的影响。使用45只8周龄大鼠,将其随机分为三组:实验组,对照组和假组。实验组在神经压迫性损伤后接受ESWT。使用坐骨神经功能指数和Dartfish软件来测定坐骨神经损伤对功能改变的影响。除去包含L4-6水平的1厘米长的脊髓用于Western印迹分析。受损后,ESWT和对照组的坐骨神经功能指数均发生了显着变化。在对脚趾的踝角进行时程评估时,从第21天开始,ESWT组在统计学上有显着增加。损伤后第1、7和14天,两组之间的neurotrophin-3表达存在显着差异。 ESWT的早期应用增加了神经营养蛋白3和神经营养蛋白3 mRNA的表达,日常治疗促进了巨噬细胞和雪旺细胞的活性,从而影响神经元的存活和再生。 (电子邮件:Niceguygil@gmail.com)(C)2015年世界医学与生物学超声联合会。

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