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螺旋藻及其复方对运动小鼠体内氧自由基代谢的影响 总被引:2,自引:1,他引:1
目的研究螺旋藻及其复方对小鼠运动能力和氧自由基代谢的影响.方法运用生化检测等方法,观察药物对游泳训练小鼠游泳耐力、血浆、肝脏及肌肉组织中SOD、GSH-Px活性和MDA含量的影响.结果螺旋藻及其复方能改善训练小鼠整体健康状况,延长小鼠力竭游泳时间,提高小鼠血浆、肝脏、肌肉组织中SOD、GSH-Px活性(P<0.01或P<0.05),降低MDA含量(P<0.01或P<0.05).螺旋藻复方在延长训练小鼠力竭游泳时间,提高小鼠血浆、肝脏、肌肉组织中SOD、GSH-Px活性,降低MDA含量方面超过单味螺旋藻(P<0.01或P<0.05).结论螺旋藻复方抗运动性疲劳的作用超过单味螺旋藻,这可能与螺旋藻复方能显著提高机体抗氧化酶(SOD、GSH-Px)活性,降低脂质过氧化物(MDA)含量有关. 相似文献
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补充丙酮酸肌酸、肌酸和肉碱对运动员身体成分及运动能力的影响 总被引:1,自引:0,他引:1
目的:观察运动员在系统训练过程中服用丙酮酸肌酸、肌酸和肉碱时身体成分及运动能力的不同影响.方法:36名国家青年篮球队退动员,随机分为安慰剂组、丙酮酸肌酸组、肌酸组和肉碱组.正常训练同时持续6周服用营养补剂和安慰剂,实验前、后进行身体成分测试和运动能力测试.结果:在系统训练中使用丙酮酸肌酸可以明显减少运动员的脂肪,降低体脂百分数;能够明显增加运动员肌肉重量和去脂体重;明显提高运动员运动能力.男运动员在系统训练中使用肌酸和丙酮酸肌酸,可以减少身体脂肪,但使用丙酮酸肌酸减少脂肪的幅度更大;同时,使用丙酮酸肌酸还能够明显增加肌肉重量;在系统训练中使用丙酮酸肌酸比肌酸更能提高运动能力且没有副反应.女运动员在训练中使用肉碱和丙酮酸肌酸均能减少身体脂肪、提高运动能力,丙酮酸肌酸的效果更明显.结论:在系统训练中使用丙酮酸肌酸比肌酸和肉碱更能减少运动员身体脂肪、增加肌肉重量,提高运动能力. 相似文献
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目的:研究肌酸补剂对小鼠运动能力的影响及其机制.方法:昆明种雄性小鼠60只(15~17g),分为对照组(control group,CG)和肌酸补充组(3.0g/kg体重,creatine supplemented group,SG),每组30只.2周后,分别于运动前、定量负荷运动(负5%体重,游5min)后和力竭运动(负18%体重)后取材.石蜡切片HE染色统计肌纤维横截面积;测定血乳酸和肌乳酸、肝糖原和肌糖原及腓肠肌和血清中的肌酸激酶和乳酸脱氢酶.结果:肌酸补充组小鼠游泳至力竭时间显著高于对照组(P<0.01);定量负荷运动后,肌酸补充组血乳酸和肌乳酸增加幅度显著低于对照组;运动后肌酸补充组血清CK和LDH含量均显著低于对照组(P<0.05);运动前肌酸补充组肝糖原含量显著高于对照组(P<0.01).结论:肌酸补剂能减少运动小鼠血液和肌肉中乳酸堆积,有助于保护肌细胞膜的完整性,肌酸补充还可增加糖原贮备,从而延长小鼠游泳至力竭时间. 相似文献
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探讨红景天复方制剂(CRM)对小鼠运动能力的影响。结果发现CRM能提高小鼠常压耐缺氧能力、延长力竭游泳时间、降低BLA、BUN水平、减缓小负荷运动组小鼠体重增长趋势、增加较大负荷量运动组小鼠体重增长趋势。可通过调节代谢平衡提高小鼠运动能力。 相似文献
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目的 探讨复方牛磺酸制剂和耐力运动对大鼠游泳运动至力竭时脑组织自由基代谢的影响.方法 24只健康SD大鼠依体重层次随机分为安静对照组(A),力竭运动组(B),服用复方牛磺酸制剂 力竭运动组(C),每组8只.采用递增负荷的跑台训练,共持续4 w.测定大鼠力竭运动时间、血乳酸、血尿素氮、脑组织NDA含量及SOD的活性.结果 与B组相比较,C组的力竭运动时间有明显延长趋势(P<0.05);补充复方牛磺酸制剂的C组可显著提高其SOD活性(P<0.05);降低其MDA含量(P<0.05).结论 补充复方牛磺酸制剂能提高机体的运动能力.对大鼠脑组织具有保护作用. 相似文献
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关于短跑运动员服用甲壳素提高运动能力的研究 总被引:1,自引:0,他引:1
观察了短跑运动员服用甲壳素(Chitin)前后,机体在激烈运动后血乳酸浓度的变化。实验表明:通过服用甲壳素短跑运动员在运动过程中血乳酸浓度有显著的降低、运动成绩有所提高,短跑运动员服用甲壳素后能提高运动能力。 相似文献
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目的:通过观察复方中药制剂和运动训练对大鼠股四头肌运动能力的影响,探讨复方中药提取物对提高机体糖代谢和运动能力的作用,为更好的指导运动训练、增强运动能力提供科学依据,为有效提高能量代谢中成药的开发奠定理论基础。结果:(1)力竭时间,D组大鼠力竭时间相比其它3组极显著延长(P〈0.01);C组显著长于A组(P〈0.05);B组极显著长于C组(P〈0.01)。(2)大鼠股四头肌肌糖原含量安静状态下,D组极显著高于A组、B组和C组,C组和B组显著高于A组;定量负荷,D组极显著高于A组和B组,B组极显著高于A组;力竭即刻,D组极显著高于A组和显著高于B组,B组和C组都显著高于A组;力竭恢复12h,D组极显著高于A组和显著高于B组、C组,A组极显著低于B组和C组;力竭恢复24h,D、C组极显著高于A组,B组显著高于A组。结论:(1)运动训练可以提高大鼠股四头肌肌糖原的含量和促进恢复过程中肌糖原的合成,提高运动能力;(2)单纯饮用复方中药制剂可以提高大鼠股四头肌肌糖原的含量和促进恢复过程中肌糖原的合成;(3)运动训练结合饮用复方中药制剂在增加大鼠股四头肌肌糖原的含量,减缓运动过程中肌糖原较少,促进恢复过程中肌糖原的合成效果最明显,提示复方中药制剂能够促进机体糖代谢能力,更好提高运动能力。 相似文献
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迷迭香对大强度耐力训练大鼠血清抗氧化酶活性及某些生化指标的影响 总被引:1,自引:0,他引:1
以SD雄性大鼠为实验对象,通过建立大强度耐力训练运动模型,研究迷迭香及大强度耐力训练对大鼠血清抗氧化酶活及某些生化指标的影响,结果显示,大强度耐力训练可使大鼠血清中SOD、GSH-Px活性升高,CAT活性下降。服用迷迭香后,不论是安静组还是运动组这3种抗氧化酶活性都明显升高。大强度耐力训练后大鼠的1ib含量稍有下降,迷迭香可以改善这种现象,使大鼠Hb含量明显上升,提示迷迭香能提高有氧运动能力.运动状态下各组血清MDA含量分别低于其相应的安静状态下各组,服用迷迭香的运动、安静组血清MDA含量明显低于其相应的对照组服用迷迭香的大鼠血中肌酐含量明显高于其相应的对照组,说明迷迭香能增加肌肉中肌酸和磷酸肌酸含量,提高肌肉机能水平。 相似文献
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R.J. Yquel L.M. Arsac E. Thiaudiere P. Canioni G. Manier 《Journal of sports sciences》2013,31(5):427-437
In this study, we examined the effect of creatine ingestion on muscle power output, muscle phosphocreatine resynthesis, inorganic phosphate and pH during repeated brief bouts of maximal exercise. Nine healthy males performed maximal plantar flexion before and after creatine ingestion (20 g ·day -1 for 6 days). The experimental protocol consisted of five 8 s bouts (bouts 1-5) interspersed with 30 s recovery, followed by bouts 6 (8 s) and 7 (16 s) separated by 1 and 2 min, respectively. Muscle phosphocreatine, inorganic phosphate and pH were estimated every 16 s by 31 P magnetic resonance spectroscopy. After creatine ingestion, muscle power output increased by ~5% ( P ? 0.05) from bouts 3 to 7 and muscle phosphocreatine resynthesis increased ( P ? 0.05) during 10 min recovery. The higher phosphocreatine concentration observed after only 30 s of recovery was accompanied by lower inorganic phosphate accumulation and higher pH. Strong correlations were found between exercise power restoration and the corresponding pre-exercise phosphocreatine and inorganic phosphate concentrations and muscle pH after creatine ingestion. The better maintenance of muscle power output observed after creatine ingestion was attributed to a higher rate of phosphocreatine resynthesis, lower accumulation of inorganic phosphate and higher pH. 相似文献
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In this study, we examined the effect of creatine ingestion on muscle power output, muscle phosphocreatine resynthesis, inorganic phosphate and pH during repeated brief bouts of maximal exercise. Nine healthy males performed maximal plantar flexion before and after creatine ingestion (20 g x day(-1) for 6 days). The experimental protocol consisted of five 8 s bouts (bouts 1-5) interspersed with 30 s recovery, followed by bouts 6 (8 s) and 7 (16 s) separated by 1 and 2 min, respectively. Muscle phosphocreatine, inorganic phosphate and pH were estimated every 16 s by 31P magnetic resonance spectroscopy. After creatine ingestion, muscle power output increased by approximately 5% (P< 0.05) from bouts 3 to 7 and muscle phosphocreatine resynthesis increased (P< 0.05) during 10 min recovery. The higher phosphocreatine concentration observed after only 30 s of recovery was accompanied by lower inorganic phosphate accumulation and higher pH. Strong correlations were found between exercise power restoration and the corresponding pre-exercise phosphocreatine and inorganic phosphate concentrations and muscle pH after creatine ingestion. The better maintenance of muscle power output observed after creatine ingestion was attributed to a higher rate of phosphocreatine resynthesis, lower accumulation of inorganic phosphate and higher pH. 相似文献
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运动中补充肌酸的作用机制 总被引:7,自引:0,他引:7
通过查阅近几年的文献,综述了运动中补充肌酸的作用机制。认为,肌酸作为一种能量补剂广泛应用于体育运动中;运动中补充肌酸作用的潜在机制与能量代谢等因素密切相关;肌酸可以提高运动员的肌肉力量和短时间全力运动的输出功率;补充肌酸也可能刺激氧化磷酸化,促进运动后肌糖原的积累,为补充肌酸提高耐力运动水平的理论依据;补充肌酸还可能具有直接抗氧化特性,从而延迟运动性疲劳的发生,提高机体运动能力。 相似文献
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通过灌服姜黄素溶液,揭示姜黄素对大强度耐力训练大鼠运动能力影响的生物化学机制。以SD雄性大鼠为实验对象,采用递增强度跑台训练,建立大强度耐力运动模型,测定血清酶活性及反映大鼠物质与能量代谢的一些生化指标。结果显示,姜黄素能改善大鼠由于大强度耐力训练造成的Hb含量下降,使大鼠Hb含量明显上升;姜黄素组运动大鼠血清ALT、AST、CK、LDH活性明显低于运动对照组;姜黄素组运动大鼠血清LDL、BU含量都较运动组有显著的降低;姜黄素组运动大鼠血清Cr、HDL的含量较运动对照组又有显著升高;服用姜黄素运动大鼠肌糖原和肝糖原含量都明显高于运动组。提示:姜黄素能减轻大强度耐力运动对大鼠肝脏、心肌、骨骼肌、肾脏等组织细胞的损伤;姜黄素能降低运动大鼠体内蛋白质分解,增加运动大鼠肝糖原、肌糖和磷酸肌酸能源物质的含量,提高大鼠肌肉的工作能力,使运动大鼠机体功能正常发挥;姜黄素与运动结合能更有效地调整血清甘油三酯、胆固醇、高密度脂蛋白和低密度脂蛋白的代谢,对心血管系统有一定的保护作用;姜黄素能够保证大强度运动时运动大鼠神经、肌肉等组织的糖供应,从而提高运动大鼠的运动能力,延缓大鼠运动性疲劳的产生。 相似文献
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骨骼肌的某些生物力学特性 总被引:1,自引:1,他引:0
白石 《西安体育学院学报》1994,(3)
本文的研究目的是寻找出负荷与肌肉力学特性之间的关系,对90例蛙坐骨神经──腓肠肌标本所作的研究表明;肌肉最大收缩力与负荷的大小成正比;肌肉收缩的最大加速度可能是个常数。 相似文献
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Stephan Sorichter Johannes Mair Arnold Koller Erich Muller Christian Kremser Werner Judmaier 《Journal of sports sciences》2013,31(9):687-691
The aim of this study was to examine the relationship between myosin heavy chain (MHC) release as a specific marker of slow-twitch muscle fibre breakdown and magnetic resonance imaging (MRI) of skeletal muscle injury after eccentric exercise. The effects of a single series of 70 high-intensity eccentric contractions of the quadriceps femoris muscle group (single leg) on plasma concentrations of creatine kinase and MHC fragments were assessed in 10 young male sport education trainees before and 1 and 4 days after exercise. To visualize muscle injury, MRI of the loaded thigh was performed before and 4 days after the eccentric exercise. All participants recorded an increase ( P ? 0.05) in creatine kinase after exercise. In five participants, T2 signal intensity was unchanged post-exercise compared with pre-exercise and MHC plasma concentration was normal; however, they showed an increase ( P ? 0.05) in creatine kinase after exercise. For the remaining five participants, there was an increase in T2 signal intensity of the loaded vastus intermedius and vastus lateralis. These changes in MRI were accompanied by an increase in MHC plasma concentration ( P ? 0.01) as well as an increase in creatine kinase ( P ? 0.01). We suggest that changes in MRI T2 signal intensity after muscle damage induced by eccentric exercise are closely related to damage to structurally bound contractile filaments of some muscle fibres. Additionally, MHC plasma release indicates that this damage affects not only fast-twitch fibres but also some slow-twitch fibres. 相似文献