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本文引用的文献

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Braz J Phys Ther. 2017 Nov-Dec;21(6):391-399. doi: 10.1016/j.bjpt.2017.08.001. Epub 2017 Sep 27.
2
Can upper extremity functional tests predict the softball throw for distance: a predictive validity investigation.上肢功能测试能否预测垒球远投成绩:一项预测效度调查。
Int J Sports Phys Ther. 2011 Jun;6(2):104-11.
3
Shoulder muscle imbalance and subacromial impingement syndrome in overhead athletes.上肢运动运动员的肩部肌肉失衡与肩峰下撞击综合征
Int J Sports Phys Ther. 2011 Mar;6(1):51-8.
4
Reliability, minimal detectable change, and normative values for tests of upper extremity function and power.上肢功能和力量测试的可靠性、最小可检测变化和常模值。
J Strength Cond Res. 2010 Dec;24(12):3318-25. doi: 10.1519/JSC.0b013e3181e7259c.
5
Shoulder joint and muscle characteristics in the recreational weight training population.休闲重量训练人群的肩关节和肌肉特征
J Strength Cond Res. 2009 Jan;23(1):148-57. doi: 10.1519/JSC.0b013e31818eafb4.
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Isokinetic scapular muscle performance in young elite gymnasts.年轻优秀体操运动员的等速肩胛肌表现
J Athl Train. 2007 Oct-Dec;42(4):458-63.
7
An analysis of the ratio and relationship between upper body pressing and pulling strength.上身推拉力的比率及关系分析
J Strength Cond Res. 2004 Aug;18(3):594-8. doi: 10.1519/R-12382.1.
8
Age specific isokinetic glenohumeral internal and external rotation strength in elite junior tennis players.精英青少年网球运动员特定年龄的等速肩肱关节内旋和外旋力量
J Sci Med Sport. 2003 Mar;6(1):63-70. doi: 10.1016/s1440-2440(03)80009-9.
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Self-reported training habits of Australian outrigger canoe paddlers.
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Shoulder strength and range-of-motion characteristics in bodybuilders.健美运动员的肩部力量和活动范围特征
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休闲活动成年人的上身推拉力量比值

Upper body push and pull strength ratio in recreationally active adults.

作者信息

Negrete Rodney J, Hanney William J, Pabian Patrick, Kolber Morey J

机构信息

Florida Hospital Sports Medicine and Rehabilitation, Celebration, FL, USA.

出版信息

Int J Sports Phys Ther. 2013 Apr;8(2):138-44.

PMID:23593552
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3625793/
Abstract

INTRODUCTION

Agonist to antagonist strength data is commonly analyzed due to its association with injury and performance. The purpose of this study was to examine the agonist to antagonist ratio of upper body strength using two simple field tests (timed push up/timed modified pull up) in recreationally active adults and to establish the basis for reference standards.

METHODS

One hundred eighty (180) healthy recreationally active adults (111 females and 69 males, aged 18-45 years) performed two tests of upper body strength in random order: 1. Push-ups completed during 3 sets of 15 seconds with a 45 second rest period between each set and 2. Modified pull-ups completed during 3 sets of 15 seconds with a 45 second rest period between each set.

RESULTS

The push-up to modified pull-up ratio for the males was 1.57:1, whereas females demonstrated a ratio of 2.72:1. The results suggest that for our group of healthy recreationally active subjects, the upper body "pushing" musculature is approximately 1.5-2.7 times stronger than the musculature involved for pulling.

CONCLUSIONS

In this study, these recreationally active adults displayed greater strength during the timed push-ups than the modified pull-ups. The relationship of these imbalances to one's performance and or injury risk requires further investigation. The reference values, however, may serve the basis for future comparison and prospective investigations. The field tests in this study can be easily implemented by clinicians and an agonist/antagonist ratio can be determined and compared to our findings.

LEVEL OF EVIDENCE

2b.

摘要

引言

由于激动剂与拮抗剂力量数据与损伤和表现相关,因此常对其进行分析。本研究的目的是通过两项简单的现场测试(定时俯卧撑/定时改良引体向上)来检查休闲活动成年人上身力量的激动剂与拮抗剂比例,并建立参考标准的基础。

方法

180名健康的休闲活动成年人(111名女性和69名男性,年龄18 - 45岁)以随机顺序进行两项上身力量测试:1. 在3组15秒内完成俯卧撑,每组之间有45秒的休息时间;2. 在3组15秒内完成改良引体向上,每组之间有45秒的休息时间。

结果

男性的俯卧撑与改良引体向上的比例为1.57:1,而女性的比例为2.72:1。结果表明,对于我们这组健康的休闲活动受试者,上身“推”肌肉组织比参与“拉”的肌肉组织强约1.5 - 2.7倍。

结论

在本研究中,这些休闲活动成年人在定时俯卧撑中表现出比改良引体向上更大的力量。这些不平衡与个人表现和/或受伤风险之间的关系需要进一步研究。然而,这些参考值可为未来的比较和前瞻性研究提供基础。本研究中的现场测试可由临床医生轻松实施,并且可以确定激动剂/拮抗剂比例并与我们的研究结果进行比较。

证据水平

2b。