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1.
目的:探索跆拳道运动员前横踢动作下肢优势侧和非优势侧的运动生物力学特征差异性。方法:采用Vicon三维运动捕捉系统、Kistler三维测力台和Deado电子护具计分系统,采集13名跆拳道运动员前横踢动作下有效得分时髋、膝、踝关节的运动学和动力学数据,使用Visual3D软件对采集数据进行逆向运动学和动力学计算,并对结果采用配对样本T检验的方法进行差异性分析。结果:(1)进攻腿:髋关节屈曲力矩峰值、膝关节伸展力矩峰值优势侧大于非优势侧(p<0.05),膝关节屈曲最大角度优势侧大于非优势侧(p<0.01),髋关节伸展力矩峰值、外展最大角度非优势侧大于优势侧(p<0.01)。(2)支撑腿:髋关节屈曲幅度、屈曲功率峰值、外展功率峰值优势侧大于非优势侧(p<0.05),髋关节外展力矩峰值、膝关节伸展力矩峰值优势侧大于非优势侧(p<0.01),髋关节伸展角速度峰值、踝关节跖屈力矩峰值非优势侧大于优势侧(p<0.05),髋关节外展角速度峰值、膝关节屈曲力矩峰值、踝关节旋外角速度峰值非优势侧大于优势侧(p<0.01)。(3)进攻腿击打力度值及进攻腿和支撑腿垂直...  相似文献   

2.
目的:探讨3种不同方向(前跳、斜跳与侧跳)单腿跳跃落地侧切变向及运动疲劳对踝关节扭伤风险的影响。方法:采用红外运动捕捉系统与三维测力台,同步采集15名男性大学生业余球类运动者在疲劳前后完成3种不同方向单腿跳跃落地侧切变向动作时的运动学和动力学指标。结果:在触地时刻,不同方向落地侧切时踝跖屈角度和踝内翻角速度之间存在显著差异,表现为侧跳最大,前跳最小在缓冲阶段中,最大踝内翻角、最大踝内翻角速度、最大踝内翻力矩和最大垂直地面反作用力指标在不同方向落地侧切时存在显著性差异,表现侧跳最大,前跳最小。疲劳前后不同方向落地侧切的各项指标中均无显著性差异。结论:不同方向落地侧切动作可对踝关节动作模式造成影响,侧切变向角度增加可能导致更高的踝关节扭伤风险。运动疲劳可能不会增大男子落地侧切动作踝关节损伤风险。  相似文献   

3.
为了探讨篮球运动员膝关节损伤早期下肢关节在完成急停起跳动作时的动力学特征,将男子篮球专项大学生40名,根据膝关节损伤的筛查结果,分成对照组、单侧损伤组和双侧损伤组。运用Motion Analysis数字影像捕捉分析系统和Kistler三维测力台,采集与分析受试者完成急停起跳动作全过程中的各项运动学与动力学数据,统计分析不同组各项数据指标之间的差异水平。结果表明:在落地缓冲地面垂直反作用力峰值时刻,损伤组骨盆后倾与对照组前倾方向相反,双侧损伤组后倾明显大于单侧损伤组;损伤组髋关节内收、内旋的角度和力矩均呈现显著性的变化;双侧损伤组伸膝和外展力矩变化显著;损伤组踝关节外展角度增大。结论:膝关节损伤早期所表现出的动力学特征较为明显,通过改变骨盆、髋、踝关节的角度来调整身体姿势,通过代偿性改变髋、膝、踝关节的力矩来完成动作。  相似文献   

4.
体操运动员跳马落地时下肢受到较大的冲击负荷,通常会导致关节损伤,探寻运动员落地垫力学特性的改变对下肢关节负荷的影响,旨在为下肢关节损伤的预防提供科学依据.首先,通过人体运动仿真软件LifeMod/ADAMS构建19个环节的个性化人体模型,之后,通过受试者落地过程的动作捕捉、高速摄像和测力台实验对模型加以验证,证明所建立模型的有效性.利用所建的模型,对高水平运动员在实际比赛中完成跳马技术动作进行捕捉,随后改变跳马落地垫的力学参数进行仿真研究.结果发现,人体落地冲击分为冲击和平衡两个阶段,人体肌肉骨骼系统具有缓冲减震的功能,踝、膝和髋关节分别延迟15 ms、17ms和19ms达到关节反作用力峰值.另外,落地过程中膝关节的伸肌力矩和髋关节的外展力矩分别在矢状面、额状面内起主导作用.当增加落地垫的阻尼导致踝关节在矢状面内受到的负荷明显增大,但增加刚度对体操运动员负荷的影响相对较小.而在额状面内,增加落地垫的刚度和阻尼导致下肢各关节的力矩明显增大,将增加下肢损伤的风险.  相似文献   

5.
目的:对辽宁省排球队女运动员下肢急停纵跳落地时的力矩和最大关节角度进行研究,以期对有膝关节损伤的排球运动员进行科学训练提供参考。方法:以14名辽宁省排球队女运动员为研究对象,将运动员分为两组,其中无伤组8人,损伤组6人,采用三维测力平台和红外光电运动捕捉系统,记录受试者在完成急停纵跳动作落地时的髋关节、膝关节、踝关节的力矩以及最大关节角度数据。结果:在急停纵跳落地时,损伤膝关节的旋转、收展力矩大于无伤组,屈伸力矩小于无伤组,损伤组的髋关节的屈伸、收展、旋转力矩均大于无伤组;损伤组的踝关节旋转力矩小于无伤组,收展力矩和屈伸力矩大于无伤组。损伤组的踝关节在屈伸、收展和旋转时的最大关节角度大于无伤组;损伤组的膝关节在屈伸和收展时的最大关节角度大于无伤组,旋转时小于无伤组;损伤的髋关节屈伸和收展时的最大关节角度大于无伤组,髋关节旋转时的最大关节角度左侧小于无伤组,右侧大于无伤组。结论:膝关节损伤的运动员完成急停纵跳动作落地时,通过代偿性改变增大髋关节力矩、增加膝关节旋转和收展力矩,增大踝关节收展和屈伸力矩,增加膝关节和髋关节在屈伸和收展时活动角度,增加膝关节屈伸和收展时活动角度来完成动作。  相似文献   

6.
不同负重超等长练习下肢各关节作用分析   总被引:2,自引:0,他引:2  
目的:研究不同负重超等长练习髋、膝、踝关节平均净关节力矩,比较下肢各关节的贡献度,探讨不同负重超等长练习对下肢各关节肌肉力量和爆发力的影响;方法:对16名篮球运动员进行不同负重的下肢超等长练习,采用VICON和三维测力台采集不同负重超等长练习动作的运动学和动力学数据,并经标准逆向动力学计算下肢净关节力矩;结果:无负重超等长练习膝关节贡献度最大,加裁不同负重后的超等长练习髋关节贡献度明显增加.关节贡献度的升高与负重的增加并无线性关系;结论:无负重超等长练习优先发展膝关节肌快速力量;低负重超等长练习主要发展髋关节肌肉绝对力量和爆发力;较大负重超等长练习主要发展髋关节肌肉绝对力量.  相似文献   

7.
目的:测试不同负重超等长训练髋、膝、踝关节角冲量及做功,分析负重对下肢各关节角冲量及关节做功贡献度的影响。方法:对16名健康男性篮球运动员进行不同负重下肢超等长训练,采用VICON和三维测力台采集每个动作的运动学和动力学数据,经逆向动力学方法计算下肢净关节力矩,并由此推导下肢各关节角冲量及做功。结果:离心阶段下肢各关节角冲量与负重均呈正相关;向心阶段髋关节角冲量与负重正相关,膝、踝关节角冲量与负重不相关。无负重及小强度负重超等长训练动作膝关节贡献度最大;大强度负重时髋关节贡献度最大。结论:下肢三个关节中髋关节肌受负重影响最大,是大强度超等长训练的主要目标肌。膝关节肌是无负重及小强度超等长训练的主要目标肌。实践中应根据下肢各关节贡献度确定目标肌,采取相应强度的超等长训练。  相似文献   

8.
运用文献资料法、实验法和数理统计法,以10名辽宁省排球队女运动员为研究对象,获取受试者3步助跑后衔接跳跃扣球的起跳期在三维空间坐标中的轨迹和与地面的反作用力参数,以及髋关节、膝关节、踝关节的最大伸肌力矩和最大伸肌功率,研究排球不同扣球起跳下肢运动学的特征,为提高排球扣球起跳时的动作质量提供参考。结果表明:(1)后排先行脚、跟随脚的动作时间、动作总时间短于后排,后排起跳动作距离长于前排(P<0.01);(2)先行脚和跟随脚的髋关节、膝关节伸肌力矩后排大于前排(P>0.05);在踝关节伸肌力矩中,后排的先行脚大于前排(P>0.05),后排的跟随脚大于前排(P<0.05);(3)除先行脚的膝关节向心功率后排均小于前排外,先行脚和跟随脚的髋关节、膝关节、踝关节伸肌向心功率后排均大于前排。先行脚和跟随脚的髋关节、膝关节肌坏踝关节离心功率后排大于前排。  相似文献   

9.
目的:确定大学生男、女足球运动员在急停起跳和侧切动作中下肢动作的运动学和动力学特点和性别差异,确定有无足球训练对急停起跳和侧切动作中的下肢运动学和动力学的影响.研究方法:对定期参加足球训练的大学生和无训练背景的普通大学生完成急停起跳和侧切动作时的下肢运动学和动力学特征进行采集与分析.结果与结论:多个与AC负荷有关的生物力学指标在性别间、动作间和群体间存在差异.女子足球运动员完成侧切和急停起跳动作时的膝关节屈角较小,足底压力中心更靠近脚尖.足球运动员在完成侧切跑时受到了更大的地面反作用力和膝关节力矩影响.结果说明,不良的落地技术是使女性运动员ACL损伤高发的原因,而足球运动员所受外力较大可能是其ACL损伤率高于非运动员群体的主要原因.  相似文献   

10.
探讨击剑运动员双侧下肢膝、髋关节在弓步过程中,生物力学表现对弓步速度的影响。14名击剑运动员以最快速度完成原地弓步动作,同步 采集运动学数据和地面反作用力,运用Visual 3D软件计算运动员弓步速度及下肢膝、髋关节生物力学参数,对运动员弓步动作重心水平速度峰值和 其影响因素进行灰色关联分析。结果:弓步动作中各因素对重心水平速度峰值的影响程度依次为,后膝关节活动范围>后膝关节伸峰功率>后髋 关节活动范围>前髋关节活动范围>前膝关节活动范围>前髋关节屈峰功率>后髋关节伸峰功率>前膝关节伸峰功率。结论:后膝关节活动范围 及峰功率是弓步速度的主要影响因素,双侧髋关节和前膝关节的关节活动范围同样能够对弓步速度产生重要影响。  相似文献   

11.
运用CYBEX NORM等速测力系统,对两名健将级女子速滑运动员左、右腿髋、膝、踝三关节的屈、伸肌群进行了向心运动形式的肌力测试,并根据需要对左、右腿膝关节还进行了等速离心测试,以便找出两人运动学差异的内在动力学原因,为改进技术提供动力学依据。同时描述了速滑运动员髋关节、膝关节和踝关节的力矩曲线特性,进行深入探讨。测试结果:两名运动员的髋关节肌力发展不平衡;快速运动中,二人膝屈肌的肌力水平较差;二人踝关节伸肌群在适应较快速度收缩能力方面较差。  相似文献   

12.
沙滩排球扣球起跳阶段人体环节运动的生物力学特征   总被引:4,自引:0,他引:4  
采用运动学手段对沙滩排球上步扣球起跳阶段人体环节的运动特征进行了研究,结果表明:“重心最低”时刻右踝角较小并没有影响人体的整体姿位;右踝角在缓冲阶段屈曲幅度较大,而在蹬伸阶段屈曲幅度较小;髋、膝二关节伸展过早,影响了下肢三关节蹬伸运动的连贯性;起跳时肩关节发力过早影响了上、下肢动作配合的协调性。  相似文献   

13.
The strength and technical competence of junior female lifters play a decisive role not only for their current but also adulthood performance. The objective of this study was to investigate the three-dimensional kinematics of the snatch technique in junior female weightlifters. Ten elite junior female weightlifters participated in the study. Two cameras operating at 50 fields per second were used to record the lifts. The heaviest successful lifts were selected for the kinematic analysis. The kinematical data were obtained using a motion analysis system. The duration of the first pull was significantly longer than that of the other phases (P < 0.05). Maximum extension angle and velocity of the lower limb joints were significantly greater in the second pull (P < 0.05). The greatest extension angle was found in the knee joint during the first pull, while the greatest extension angle was observed in the hip joint during the second pull (P < 0.05). Maximum extension velocity of the knee and hip joints was significantly greater than that of the ankle in both phases (P < 0.05). In addition, the vertical velocity of the barbell and the absolute and relative power outputs was significantly higher in the second pull than in the first pull (P < 0.05). In the snatch lifting of junior female weightlifters, the angular kinematics of lower limb joints, the linear kinematics and trajectory of the barbell and other energy characteristics are similar to and consistent with the values reported in literature for adult female weightlifters.  相似文献   

14.
井兰香  刘宇 《体育学刊》2012,(5):140-144
为测试超等长阻力训练前后原地垂直纵跳动作下肢各关节角速度及角加速度,计算下肢各关节角刚度,观察超等长阻力训练对下肢各关节角动力学的影响。将16名青年男子篮球运动员随机分成超等长阻力训练组和常规训练对照组。采用VICON和三维测力台采集每个动作的运动学和动力学数据,计算下肢各关节角速度及角加速度,并经逆动力学方法计算下肢净关节力矩。结果可见,超等长阻力训练组髋、踝关节角速度和角刚度明显高于对照组,膝关节角速度及角刚度两组没有明显差异;超等长阻力训练组髋、膝、踝关节角加速度均显著高于对照组。结果说明超等长阻力训练可降低拉长-缩短周期支撑时间、缩短摊还期、增强肌肉-肌腱复合体能量转换能力、提高下肢肌肉爆发力。适于需要关节角速度、角加速度及爆发力的项目。  相似文献   

15.
Kinetics and kinematics analysis of incremental cycling to exhaustion   总被引:1,自引:0,他引:1  
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   

16.
The aim of this study was to examine lower limb joint kinetics during the block and first stance phases in athletic sprinting. Ten male sprinters (100 m PB, 10.50 ± 0.27 s) performed maximal sprint starts from blocks. External force (1000 Hz) and three-dimensional kinematics (250 Hz) were recorded in both the block (utilising instrumented starting blocks) and subsequent first stance phases. Ankle, knee and hip resultant joint moment, power and work were calculated at the rear and front leg during the block phase and during first stance using inverse dynamics. Significantly (P < 0.05) greater peak moment, power and work were evident at the knee joint in the front block and during stance compared with the rear block. Ankle joint kinetic data significantly increased during stance compared with the front and rear block. The hip joint dominated leg extensor energy generation in the block phase (rear leg, 61 ± 10%; front leg, 64 ± 8%) but significantly reduced during stance (32 ± 9%), where the ankle contributed most (42 ± 6%). The current study provides novel insight into sprint start biomechanics and the contribution of the lower limb joints towards leg extensor energy generation.  相似文献   

17.
Runners often experience delayed onset muscle soreness (DOMS), especially of the knee extensors, following prolonged running. Sagittal knee joint biomechanics are altered in the presence of knee extensor DOMS but it is unclear how muscle soreness affects lower limb biomechanics in other planes of motion. The purpose of this study was to assess the effects of knee extensor DOMS on three-dimensional (3D) lower limb biomechanics during running. Thirty-three healthy men (25.8?±?6.8 years; 84.1?±?9.2?kg; 1.77?±?0.07?m) completed an isolated eccentric knee extensor damaging protocol to elicit DOMS. Biomechanics of over-ground running at a set speed of 3.35?m?s?1±5% were measured before eccentric exercise (baseline) and, 24?h and 48?h following exercise in the presence of knee extensor DOMS. Knee flexion ROM was reduced at 48?h (P?=?0.01; d?=?0.26), and peak knee extensor moment was reduced at 24?h (P?=?0.001; d?=?0.49) and 48?h (P?<?0.001; d?=?0.68) compared to baseline. Frontal and transverse plane biomechanics were unaffected by the presence of DOMS (P?>?0.05). Peak positive ankle and knee joint powers and, peak negative knee joint power were all reduced from baseline to 24?h and 48?h (P?<?0.05). These findings suggest that knee extensor DOMS greatly influences sagittal knee joint angular kinetics and, reduces sagittal power production at the ankle joint. However, knee extensor DOMS does not affect frontal and transverse plane lower limb joint biomechanics during running.  相似文献   

18.
目的探讨足球运动对6~12岁儿童下肢本体感觉与平衡控制能力的影响及本体感觉、肌肉力量、平衡能力和运球能力间的关系。方法选取6~12岁的小学足球班学生38人(男女各19人)和同年级普通班学生19人(男10人、女9人)分别进行足球运动和一般性身体锻炼干预,使用运动加速度计监测锻炼强度,并在运动干预前后进行下肢本体感觉、肌肉力量、平衡能力和变向运球测试。结果 (1)2组学生下肢本体感觉的性别差异不显著,20周干预后,足球班学生的踝、膝、髋关节本体感觉要显著优于普通班学生(P<0.01);(2)2组学生下肢力量和平衡能力的性别差异不显著,20周干预后,足球班学生的平衡能力提高更多(P<0.01);(3)平衡能力的改善同下肢本体感觉和力量的提升正相关(P<0.05),运球能力的提高同本体感觉和平衡能力的提高正相关(P<0.05)。结论对于6~12岁儿童,同一般性锻炼相比,足球运动在提高下肢力量的同时还能更为全面地提高踝、膝、髋关节本体感觉,从而更好地改善平衡能力。性别差异对儿童本体感觉和平衡能力的影响不显著。同时,加强下肢本体感觉和平衡能力锻炼,可能会更好地提升运球能力。  相似文献   

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