研究低功率激光调节下对运动微损伤修复功能,促进运动员运动损伤治疗和康复。通过低功率激光调节进行运动微损伤的修复的激素干预,促进D-氨基葡糖双糖单元生成,促进微损伤修复,采用Discovery Studio 2.5模拟骨髓干细胞的生成过程,在低...研究低功率激光调节下对运动微损伤修复功能,促进运动员运动损伤治疗和康复。通过低功率激光调节进行运动微损伤的修复的激素干预,促进D-氨基葡糖双糖单元生成,促进微损伤修复,采用Discovery Studio 2.5模拟骨髓干细胞的生成过程,在低功率激光治疗下,调节人体体内的骨髓干细胞和氨基酸的生成,分析运动微损伤修复中骨髓干细胞生成率和ATP的含量,结合康复性训练进行损伤修复。以肺动脉收缩性能、骨骼生长率、葡糖醛酸的调节能力进行运动微损伤修复指数的约束指标分析,采用低功率激光调节,能有效促进骨骼生长,增强肺动脉收缩机能,损伤修复的显著性差异特征满足0.410±0.43 ng/m L,在P<0.05内具有显著性,说明运动微损伤的修复指数较高。结论:采用低功率激光调节,能有效实现对运动微损伤的修复和康复治疗,结合康复性训练,能较快地恢复身体机能,促进运动损伤康复。展开更多
A low-power CO_2 laser is used to deposit Fe powder and mixture of Fe andcarbon powder on substrates respectively, and the macro and micro-structure of the formed samplesare investigated. It is demonstrated that most ...A low-power CO_2 laser is used to deposit Fe powder and mixture of Fe andcarbon powder on substrates respectively, and the macro and micro-structure of the formed samplesare investigated. It is demonstrated that most grains of these samples are equi-axed. This isderived from the high nucleation velocity in the shallow melt pool besides rapid solidification ofthe liquid-state alloy or metal. Bainitic structure, combination of pearlite and ferrite structureand ferrite structure are seen respectively in the samples involving various amounts of carbon owingto no martensitic transformation in these small samples.展开更多
文摘研究低功率激光调节下对运动微损伤修复功能,促进运动员运动损伤治疗和康复。通过低功率激光调节进行运动微损伤的修复的激素干预,促进D-氨基葡糖双糖单元生成,促进微损伤修复,采用Discovery Studio 2.5模拟骨髓干细胞的生成过程,在低功率激光治疗下,调节人体体内的骨髓干细胞和氨基酸的生成,分析运动微损伤修复中骨髓干细胞生成率和ATP的含量,结合康复性训练进行损伤修复。以肺动脉收缩性能、骨骼生长率、葡糖醛酸的调节能力进行运动微损伤修复指数的约束指标分析,采用低功率激光调节,能有效促进骨骼生长,增强肺动脉收缩机能,损伤修复的显著性差异特征满足0.410±0.43 ng/m L,在P<0.05内具有显著性,说明运动微损伤的修复指数较高。结论:采用低功率激光调节,能有效实现对运动微损伤的修复和康复治疗,结合康复性训练,能较快地恢复身体机能,促进运动损伤康复。
文摘A low-power CO_2 laser is used to deposit Fe powder and mixture of Fe andcarbon powder on substrates respectively, and the macro and micro-structure of the formed samplesare investigated. It is demonstrated that most grains of these samples are equi-axed. This isderived from the high nucleation velocity in the shallow melt pool besides rapid solidification ofthe liquid-state alloy or metal. Bainitic structure, combination of pearlite and ferrite structureand ferrite structure are seen respectively in the samples involving various amounts of carbon owingto no martensitic transformation in these small samples.