Frost David Michael, Cronin John Barry, Newton Robert Usher
Department of Kinesiology, University of Waterloo, Waterloo, ON, N2L 3G1, Canada.
Eur J Appl Physiol. 2008 Dec;104(6):937-56. doi: 10.1007/s00421-008-0821-8. Epub 2008 Oct 1.
Pneumatic devices provide a resistance comprising minimal mass, possibly affording greater movement velocities, compared to free weight, while reducing the influence of momentum. Thirty men completed three testing sessions [free weight (FW), ballistic (BALL) and pneumatic (P)] each consisting of a one repetition maximum (1RM) and six sets (15, 30, 45, 60, 75 and 90% 1RM) of four explosive repetitions of a bench press. Dependent variables were expressed as mean and as a percentage of the concentric displacement. Significant differences (P < 0.05) were evaluated using two way repeated measures ANOVAs with Holm-Sidak post hoc comparisons. On average, the mean and peak P velocity were 36.5 and 28.3% higher than FW, and 22.9 and 19.1% higher than the BALL movements. The FW and BALL peak force were both significantly higher than the P (26.3 and 22.7% for FW and BALL, respectively). BALL mean power output was significantly higher than the FW and P at loads of 15 and 30% 1RM; however, between loads of 60-90% 1RM the highest mean power was produced with a P resistance. A 15% 1RM load maximized the peak power for each condition and no significant differences were found between the P and BALL. For loads of 45-90% 1RM the force, power and muscle activity were higher during the last 10-20% of the concentric displacement when subjects employed the P resistance. In summary, pneumatic resistance may offer specific advantages over loads comprising only mass (FW and BALL), although not without its own limitations.
与自由重量器械相比,气动装置提供的阻力质量极小,可能使运动速度更快,同时减少动量的影响。30名男性完成了三个测试阶段[自由重量器械(FW)、冲击式(BALL)和气动(P)],每个阶段均包括一次最大重复次数(1RM)以及六组(1RM的15%、30%、45%、60%、75%和90%)卧推的四次爆发性重复动作。因变量以同心位移的平均值和百分比表示。使用双向重复测量方差分析及Holm-Sidak事后比较评估显著差异(P < 0.05)。平均而言,P的平均速度和峰值速度分别比FW高36.5%和28.3%,比BALL动作高22.9%和19.1%。FW和BALL的峰值力量均显著高于P(FW和BALL分别高26.3%和22.7%)。在1RM的15%和30%负荷下,BALL的平均功率输出显著高于FW和P;然而,在1RM的60%-90%负荷之间,使用P阻力时产生的平均功率最高。1RM的15%负荷使每种情况下的峰值功率最大化,P和BALL之间未发现显著差异。对于1RM的45%-90%负荷,当受试者使用P阻力时,在同心位移的最后10%-20%期间,力量、功率和肌肉活动更高。总之,气动阻力可能比仅含质量的负荷(FW和BALL)具有特定优势,尽管也有其自身局限性。