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Using Bench Press Load to Predict Upper Body Exercise Loads in Physically Active Individuals

机译:使用卧推负荷来预测体育锻炼个体的上身运动负荷

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摘要

This study investigated whether loads for assistance exercises of the upper body can be predicted from the loads of the bench press exercise. Twenty-nine physically active collegiate students (age: 22.6 ± 2.5; weight training experience: 2.9 ± 2.1 years; estimated 1RM bench press: 54.31 ± 14.60 kg; 1RM: body weight ratio: 0.80 ± 0.22; BMI: 22.7 ± 2.1 kg·m-2) were recruited. The 6RM loads for bench press, barbell bicep curl, overhead dumbbell triceps extension, hammer curl and dumbbell shoulder press were measured. Test-retest reliability for the 5 exercises as determined by Pearson product moment correlation coefficient was very high to nearly perfect (0.82-0.98, p < 0.01). The bench press load was significantly correlated with the loads of the 4 assistance exercises (r ranged from 0.80 to 0.93, p < 0.01). Linear regression revealed that the bench press load was a significant (R2 range from 0.64 to 0.86, p < 0.01) predictor for the loads of the 4 assistance exercises. The following 6RM prediction equations were determined: (a) Hammer curl = Bench press load (0.28) + 6.30 kg, (b) Barbell biceps curl = Bench press load (0.33) + 6.20 kg, (c) Overhead triceps extension = Bench press load (0.33) - 0.60 kg, and (d) Dumbbell shoulder press = Bench press load (0.42) + 5.84 kg. The difference between the actual load and the predicted load using the four equations ranged between 6.52% and 8.54%, such difference was not significant. Fitness professionals can use the 6RM bench press load as a time effective and accurate method to predict training loads for upper body assistance exercises.Key points class="unordered" style="list-style-type:disc">The bench press load was significantly correlated with the loads of the 4 assistance exercises.No significant differences were found between the actual load and the predicted load in the four equations.6RM bench press load can be a time effective and accurate method to predict training loads for upper body assistance exercises.
机译:这项研究调查了是否可以从卧推锻炼的负荷中预测上身辅助锻炼的负荷。 29名体育锻炼的大学生(年龄:22.6±2.5;体重训练经验:2.9±2.1年;估计1RM卧推:54.31±14.60 kg; 1RM:体重比:0.80±0.22; BMI:22.7±2.1 kg· m -2 )被招募。测量了卧推,杠铃二头肌弯曲,头顶哑铃三头肌伸展,锤头弯曲和哑铃肩部按压的6RM载荷。由皮尔森乘积矩相关系数确定的5个练习的重测信度非常高,几乎是完美的(0.82-0.98,p <0.01)。卧推负荷与4次辅助锻炼的负荷显着相关(r介于0.80至0.93之间,p <0.01)。线性回归显示,卧推负荷是4次辅助锻炼负荷的显着预测指标(R 2 范围为0.64至0.86,p <0.01)。确定了以下6RM预测方程式:(a)锤弯=卧推压力(0.28)+ 6.30 kg,(b)杠铃二头肌弯=卧推压力(0.33)+ 6.20 kg,(c)肱三头肌伸直=卧推(0.33)-0.60公斤,(d)哑铃肩部推举=卧推(0.42)+ 5.84公斤。使用这四个方程式得出的实际载荷和预测载荷之间的差异在6.52%和8.54%之间,这种差异并不明显。健身专业人士可以将6RM卧推负荷作为一种有效且准确的方法来预测上身辅助锻炼的训练负荷。要点 class =“ unordered” style =“ list-style-type:disc”> <!- -list-behavior =无序前缀= word-mark-type = disc max-label-size = 0-> 卧推负荷与4次辅助锻炼的负荷显着相关。
  • 在四个方程中,实际负荷与预测负荷之间没有显着差异。 6RM卧推负荷可以是一种时间有效,准确的方法,用于预测上身辅助锻炼的训练负荷。 li>
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