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我国优秀10m跳台男子运动员下肢肌肉力量特征研究 总被引:1,自引:0,他引:1
以现役国家队4名10 m跳台运动员为研究对象,选取相对峰值力矩为评定指标,通过运用MERAC等速肌力测试系统,测试速度分别是60°/s和240°/s,对跳水运动员下肢髋、膝和踝关节主动肌群(伸肌群)的肌力特征进行综合研究,探讨高水平跳水运动员下肢主动肌群的特征.结果显示,下肢关节相对肌力矩水平高是完成高难跳台技术的基础之一;下肢各关节屈伸比值低,伸肌群力量明显大于屈肌群;动员髋关节快速屈伸的肌群的比例相对较高,而膝和踝关节快速屈伸时动员的肌群相对较少;膝关节左、右侧伸肌群力量接近,髋关节左侧大于右侧;随着测试速度的增加,髋关节在下肢总力矩的百分比增加. 相似文献
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通过对两名高水平女子链球运动员双侧的髋关节和膝关节进行等速测试,探究运动员髋关节和膝关节周围肌群的生物力学特性,为运动训练和运动康复等提供理论依据。利用等速肌力测试系统对两名运动员的髋关节和膝关节屈伸肌群以及髋关节的旋内旋外肌群进行等速测试。结果发现:两名运动员双侧髋关节和膝关节屈伸肌群以及髋关节的旋内旋外肌群的峰力矩随测试速度的增加呈递减趋势,髋膝关节峰力矩屈伸比和髋关节旋内旋外比随既定测试速度的增加呈递增趋势;同一测试速度下,伸肌肌群的峰力矩大于屈肌肌群,髋关节旋外肌群的峰力矩大于旋内肌群。 相似文献
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跳远运动员专项成绩与专项身体素质相关关系的研究 总被引:1,自引:0,他引:1
对我国 10名男子跳远运动员的专项成绩、专项身体素质以及下肢髋、膝和踝 3大关节等速屈伸肌力矩等指标进行测试。通过相关分析探讨了跳远运动员专项身体素质、下肢力量水平与专项成绩之间的关系 ,发现髋关节屈伸肌肌力、膝关节屈伸肌肌力和伸肌的离心肌力以及踝关节的跖屈肌力与跳远成绩相关 相似文献
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青少年男子篮球运动员膝关节等速肌力特征研究 总被引:1,自引:0,他引:1
葛卫忠 《山东体育学院学报》2010,26(3)
通过对36名二级青少年男子篮球运动员双侧膝关节进行等速测试,探析青少年篮球运动员膝关节向心屈伸肌群的生物力学特性,为运动训练、科学选材及临床康复等提供理论依据.方法:利用 Kinitech等速康复肌力测试系统,对青少年男子篮球运动员膝关节屈伸肌群进行等速测试.结果表明:青少年男子篮球运动员双侧膝关节屈伸峰力矩随测试速度的增加呈递减趋势,且膝伸肌大于膝屈肌(P<0.05),峰力矩屈伸比(F/E)随给定测试速度的增加呈递增趋势;最大功率随测试速度的增大而增加,同一测试速度下屈、伸肌群最大功率无明显差异,左、右侧相比也无显著性差异(60°/s伸肌除外);屈伸肌群达峰力矩的角度(APT)表现为伸肌角度明显低于屈肌角度,随速度增加左右两侧膝关节达峰力矩的角度无显著差异;双侧膝关节屈伸肌群达峰力矩的时间(TPT)随测试速度的增加而减小,同一测试速度下伸肌达峰力矩的时间大于屈肌;右侧膝关节屈肌相对峰力矩(PT/BM)与下肢形态学指标表现出不同程度的正相关.本研究结论,青少年男子篮球运动员膝关节峰力矩变化规律与成年人相一致,但左右侧膝关节屈伸肌群做功能力发展不平衡,屈伸肌群运动达峰力矩角度、达峰力矩的时间存在显著差异. 相似文献
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青少年男子短跑运动员膝关节等速肌力特征研究 总被引:14,自引:0,他引:14
目的:通过对36名二级青少年男子短跑运动员双侧膝关节进行等速测试,探析青少年短跑运动员膝关节向心屈伸肌群的生物力学特性.为运动训练、科学选材及临床康复等提供理论依据。方法:利用Kinitech等速康复肌力测试系统对青少年男子短跑运动员膝关节屈伸肌群进行等速测试。结果:青少年男子短跑运动员双侧膝关节屈伸峰力矩随测试速度的增加呈递减趋势,且膝伸肌大于膝屈肌(P〈0.05),峰力矩屈伸比(V/E)随给定测试速度的增加呈递增趋势;最大功率随测试速度的增大而增加,同一测试速度下屈、伸肌群最大功率无明显差异,左、右侧相比也无显著性差异(600/s伸肌除外);屈伸肌群达峰力矩的角度(APT)表现为伸肌角度明显低于屈肌角度,随速度增加左右两侧膝关节达峰力矩的角度无显著差异:双侧膝关节屈伸肌群达峰力矩的时间(TPT)随测试速度的增加而减小,同一测试速度下伸肌达峰力矩的时间大于屈肌;右侧膝关节屈肌相对峰力矩(PT/BM)与下肢形态学指标表现出不同程度的正相关。结论:青少年男子短跑运动员膝关节峰力矩变化规律与成年人相一致,但左右侧膝关节屈伸肌群做功能力发展不平衡,屈伸肌群运动达峰力矩角度、达峰力矩的时间存在显著差异。 相似文献
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通过测试我国优秀花样滑冰运动员等速状态下膝关节屈肌群与伸肌群力量,对我国优秀花样滑冰运动员膝关节力量状况进行研究,结果:在60°/s等速测试中,我国优秀花样滑冰运动员相对最大峰力矩均值左侧膝关节屈肌为1.51 N·m/kg,伸肌为2.44 N·m/kg,右侧为1.54 N·m/kg和2.70N·m/kg;左侧膝关节屈肌群与伸肌群力矩比为62.02%,右侧为57.49%;膝关节左侧屈肌群与右侧屈肌群比值的均值为99.60%;左侧伸肌群与右侧伸肌群比值的均值为91.77%;差异均未出现显著性(P〉0.5)。结论:1)总体上说我国优秀花样滑冰运动员双膝力量未存在显著性差异;2)就单个运动员而言,我国优秀花样滑冰运动员双膝力量存在一定差异;3)我国优秀花样滑冰运动员膝关节屈肌群力量有待增强。 相似文献
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运用IsoMed2000型肌力测试系统,选择60°/s和240°/s,对23名优秀男子散打运动员(健将级9名为A组,国家一级14名为B组)支撑腿和进攻腿髋、膝、踝屈伸肌群各项等速肌力指标进行测量。探讨优秀散打运动员支撑腿和进攻腿髋、膝、踝关节等速肌力特征,分析两腿的肌力差异,判断肌力平衡、关节稳定,运动员等级水平对肌力的影响。结果:国家健将级散打运动员双侧下肢髋、膝、踝关节等速肌力及稳定性显著优于国家一级运动员,支撑腿主要体现力的有效传递及稳定性,进攻腿主要体现屈伸肌力大小。 相似文献
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目的:确定运动员在落地后即刻启动完成侧切变向(LSC)动作的下肢踝、膝和髋三关节矢状面的运动学和动力学特点,并与平地跑动侧切变向(SC)对比分析、探讨这些差异对下肢关节造成的影响。方法:以14名高水平足球运动员为背景的大学生完成落地侧切和平跑侧切动作时的下肢运动学和动力学数据进行采集与分析。结果:LSC动作的踝、膝关节ROM和关节角速度显著增加,髋关节ROM则呈相反趋势(P<0.05或P<0.01);LSC的踝、膝和髋关节力矩峰值,踝、髋关节功率峰值呈现显著大于SC(P<0.01),膝关节功率峰值小于SC(P<0.05);LSC在水平向后、垂直向上地反峰值及峰值加载率有明显的增加(P<0.01),水平向右地反无明显差异(P>0.05)。结论:LSC虽然略降低了膝关节功率峰值,但其余所有运动学、动力学及GRF都预示其下肢关节所承受的损伤风险更高,尤其是踝关节和膝关节。踝关节的高功率和跖屈肌的持续紧张、伸膝力矩和三维地反的显著升高,使得该动作比公认高损伤风险的平跑侧切损伤风险几率更大。 相似文献
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Neil Edward Bezodis Aki Ilkka Tapio Salo Grant Trewartha 《Journal of sports sciences》2013,31(8):738-746
AbstractThis study analysed the first stance phase joint kinetics of three elite sprinters to improve the understanding of technique and investigate how individual differences in technique could influence the resulting levels of performance. Force (1000 Hz) and video (200 Hz) data were collected and resultant moments, power and work at the stance leg metatarsal-phalangeal (MTP), ankle, knee and hip joints were calculated. The MTP and ankle joints both exhibited resultant plantarflexor moments throughout stance. Whilst the ankle joint generated up to four times more energy than it absorbed, the MTP joint was primarily an energy absorber. Knee extensor resultant moments and power were produced throughout the majority of stance, and the best-performing sprinter generated double and four times the amount of knee joint energy compared to the other two sprinters. The hip joint extended throughout stance. Positive hip extensor energy was generated during early stance before energy was absorbed at the hip as the resultant moment became flexor-dominant towards toe-off. The generation of energy at the ankle appears to be of greater importance than in later phases of a sprint, whilst knee joint energy generation may be vital for early acceleration and is potentially facilitated by favourable kinematics at touchdown. 相似文献
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Bini RR Diefenthaeler F 《Sports biomechanics / International Society of Biomechanics in Sports》2010,9(4):223-235
Technique changes in cyclists are not well described during exhaustive exercise. Therefore the aim of the present study was to analyze pedaling technique during an incremental cycling test to exhaustion. Eleven cyclists performed an incremental cycling test to exhaustion. Pedal force and joint kinematics were acquired during the last three stages of the test (75%, 90% and 100% of the maximal power output). Inverse dynamics was conducted to calculate the net joint moments at the hip, knee and ankle joints. Knee joint had an increased contribution to the total net joint moments with the increase of workload (5-8% increase, p < 0.01). Total average absolute joint moment and knee joint moment increased during the test (25% and 39%, for p < 0.01, respectively). Increases in plantar flexor moment (32%, p < 0.01), knee (54%, p < 0.01) and hip flexor moments (42%, p = 0.02) were found. Higher dorsiflexion (2%, for p = 0.03) and increased range of motion (19%, for p = 0.02) were observed for the ankle joint. The hip joint had an increased flexion angle (2%, for p < 0.01) and a reduced range of motion (3%, for p = 0.04) with the increase of workload. Differences in joint kinetics and kinematics indicate that pedaling technique was affected by the combined fatigue and workload effects. 相似文献
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Rodrigo R. Bini Fernando Diefenthaeler 《Sports biomechanics / International Society of Biomechanics in Sports》2013,12(4):223-235
Technique changes in cyclists are not well described during exhaustive exercise. Therefore the aim of the present study was to analyze pedaling technique during an incremental cycling test to exhaustion. Eleven cyclists performed an incremental cycling test to exhaustion. Pedal force and joint kinematics were acquired during the last three stages of the test (75%, 90% and 100% of the maximal power output). Inverse dynamics was conducted to calculate the net joint moments at the hip, knee and ankle joints. Knee joint had an increased contribution to the total net joint moments with the increase of workload (5–8% increase, p < 0.01). Total average absolute joint moment and knee joint moment increased during the test (25% and 39%, for p < 0.01, respectively). Increases in plantar flexor moment (32%, p < 0.01), knee (54%, p < 0.01) and hip flexor moments (42%, p = 0.02) were found. Higher dorsiflexion (2%, for p = 0.03) and increased range of motion (19%, for p = 0.02) were observed for the ankle joint. The hip joint had an increased flexion angle (2%, for p < 0.01) and a reduced range of motion (3%, for p = 0.04) with the increase of workload. Differences in joint kinetics and kinematics indicate that pedaling technique was affected by the combined fatigue and workload effects. 相似文献
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Jaymee R. Shell Shawn M. K. Robbins Philippe C. Dixon Philippe J. Renaud René A. Turcotte Tom Wu 《Sports biomechanics / International Society of Biomechanics in Sports》2017,16(3):313-324
The forward skating start is a fundamental skill for male and female ice hockey players. However, performance differences by athlete’s sex cannot be fully explained by physiological variables; hence, other factors such as skating technique warrant examination. Therefore, the purpose of this study was to evaluate the body movement kinematics of ice hockey skating starts between elite male and female ice hockey participants. Male (n = 9) and female (n = 10) elite ice hockey players performed five forward skating start accelerations. An 18-camera motion capture system placed on the arena ice surface captured full-body kinematics during the first seven skating start steps within 15 meters. Males’ maximum skating speeds were greater than females. Skating technique sex differences were noted: in particular, females presented ~10° lower hip abduction throughout skating stance as well as ~10° greater knee extension at initial ice stance contact, conspicuously followed by a brief cessation in knee extension at the moment of ice contact, not evident in male skaters. Further study is warranted to explain why these skating technique differences exist in relation to factors such as differences in training, equipment, performance level, and anthropometrics. 相似文献
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为了探讨运动员膝关节拮抗肌群在不同实验速度下的工作特点,通过CYBEX600等速测试系统,对辽宁省优秀短跑、自行车、游泳运动员25人(男14人、女11人)进行了等速相心膝关节肌力测试,经过统计对比分析结果如下:(1)膝关节屈伸肌相对峰力矩随着收缩速度的增加呈下降趋势,而且伸肌下降的幅度大于屈肌。(2)短跑运动员屈膝肌的相对力量较强,而自行车运动员有很强的伸膝力量。(3)膝关节肌肉达到预定速度所需的时间随着速度加快而加快,其中短跑自行车运动员蹬伸速度大于游泳运动员。(4)自行车运动员腿部的单位体重屈伸力量大于短跑游泳运动员,尤其在快速情况下,其差值高达82%。 相似文献
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Philippe J. Renaud Shawn M. K. Robbins Philippe C. Dixon Jaymee R. Shell René A. Turcotte David J. Pearsall 《Sports Engineering》2017,20(4):255-266
The forward skating start is a fundamental skill for ice hockey players, yet extremely challenging given the low traction of the ice surface. The technique for maximum skating acceleration of the body is not well understood. The aim of this study was to evaluate kinematic ice hockey skating start movement technique in relation to a skater’s skill level. A 10-camera motion capture system placed on the ice surface recorded “hybrid-V” skate start movement patterns of high and low calibre male ice hockey players (n = 7, 8, respectively). Participants’ lower body kinematics and estimated body centre of mass (CoM) movement during the first four steps were calculated. Both skate groups had similar lower body strength profiles, yet high calibre skaters achieved greater velocity; skating technique differences most likely explained the performance differences between the groups. Unlike over ground sprint start technique, skating starts showed greater concurrent hip abduction, external rotation and extension, presumably for ideal blade-to-ice push-off orientation for propulsion. Initial analysis revealed similar hip, knee and ankle joint gross movement patterns across skaters, however, further scrutiny of the data revealed that high calibre skaters achieved greater vertical CoM acceleration during each step that in turn allowed greater horizontal traction, forward propulsion, lower double-support times and, accordingly, faster starts with higher stride rates. 相似文献