低水平激光对大鼠足底肌代偿性肥大时骨骼肌纤维形态的影响

S. M. L. Terena, K. Fernandes, S. Kalil, A. N. Alves, R. A. Mesquita Ferrari
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引用次数: 3

摘要

肥厚被认为是肌肉的横截面积的增加,这是肌肉对抗过载的结果,它是代偿性的,因为过载是由协同肌肉的功能消除引起的。研究代偿性肥厚的重要性在于了解这一过程如何受到辐射对体重和肌肉横截面积的影响,以协助康复过程和功能恢复的有效性。目的是评价低强度激光照射对大鼠骨骼肌组织形态学的影响,比较骨骼肌的重量和横截面积。Wistar大鼠分为对照组、肥厚组(右足底肌)和肥厚组(左足底肌),分别在7天和14天后进行分析。手术后立即进行每日照射。实验参数为:λ = 780nm,光斑为0.04 cm2,输出功率为40mW,功率密度为1W/cm2,能量密度为10J /cm2,照射时间为10s,总能量为3.2 j。结果表明,低能级激光照射7 d和14 d后,植物肌肉重量增加幅度分别为7.06%和11.51%。综上所述,在上述参数下,低水平激光照射对代偿性肥厚模型有影响,使肌肉重量增加,并促进代偿性肥厚模型14天后肌纤维横截面积增加。
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Effects of low level laser in the morphology of the skeletal muscle fiber during compensatory hypertrophy in plantar muscle of rats
The hypertrophy is known as an increase the cross-sectional area of the muscle as a result of a muscular work against an overload, and it is compensatory because the overload is induced by functional elimination of synergistic muscles. The importance of study the compensatory hypertrophy is understand how this process can be influenced by the irradiation with regard to the weight and muscle cross-sectional area, to assist in the rehabilitation process and the effectiveness functional return. The aim was evaluate the effects of low-level laser irradiation on morphological aspects of muscle tissue, comparing the weight and cross-sectional area in rat skeletal muscle. Wistar rats were divided into three groups: control, hypertrophy group without irradiation (right plantar muscle) and hypertrophy group and irradiation (left plantar muscle), both analyzed after 7 and 14 days. The irradiation was performed daily immediately after the surgery. The parameters were: λ = 780nm, beam spot of 0.04 cm2, output power of 40mW, power density of 1W/cm2, energy density of 10J / cm2 and 10s exposure time with a total energy of 3.2 J. The results revealed that low level laser irradiation an increase the weight of the plantaris muscle after 7 and 14 days with a difference of 7.06% and 11.51% respectively. In conclusion, low level laser irradiation has an effect on compensatory hypertrophy to produce increased muscle weight and promoted an increase in cross-sectional area of muscle fibers in the compensatory hypertrophy model after 14 days with parameters cited above.
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