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Journal ArticleDOI

A simple method for measurement of mechanical power in jumping.

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TLDR
The new jumping test seems suitable to evaluate the power output of leg extensor muscles during natural motion because of its high reproducibility and simplicity, and is suitable for laboratory and field conditions.
Abstract
A simple test for the measurement of mechanical power during a vertical rebound jump series has been devised. The test consists of measuring the flight time with a digital timer (+/- 0.001 s) and counting the number of jumps performed during a certain period of time (e.g., 15-60 s). Formulae for calculation of mechanical power from the measured parameters were derived. The relationship between this mechanical power and a modification of the Wingate test (r = 0.87, n = 12 males) and 60 m dash (r = 0.84, n = 12 males) were very close. The mechanical power in a 60 s jumping test demonstrated higher values (20 W X kgBW-1) than the power in a modified (60 s) Wingate test (7 W X kgBW-1) and a Margaria test (14 W X kgBW-1). The estimated powers demonstrated different values because both bicycle riding and the Margaria test reflect primarily chemo-mechanical conversion during muscle contraction, whereas in the jumping test elastic energy is also utilized. Therefore the new jumping test seems suitable to evaluate the power output of leg extensor muscles during natural motion. Because of its high reproducibility (r = 0.95) and simplicity, the test is suitable for laboratory and field conditions.

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Effects of hormone replacement therapy and high-impact physical exercise on skeletal muscle in post-menopausal women: a randomized placebo-controlled study

TL;DR: In post-menopausal women, muscle performance, muscle mass and muscle composition are improved by HRT, and the beneficial effects of H RT combined with high-impact physical training may exceed those of HRT alone.
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A dynamometer for evaluation of dynamic muscle work

TL;DR: Given the accuracy of the ergometer, the high reliability found between 2 days of measurements, and the specificity of the results it is suggested that the dynamic dynamometer would be suitable for evaluation of athletes performing specific skills.
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Single-Leg Lateral, Horizontal, and Vertical Jump Assessment: Reliability, Interrelationships, and Ability to Predict Sprint and Change-of-Direction Performance

TL;DR: It would seem that the ability to change direction with 1 leg is relatively independent of a COD with the other leg, especially in the women of this study, and if 1 jump assessment were selected to predict sprint and COD performance in a test battery, the single-leg horizontal countermovement jump would seem the logical choice.
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The importance of isometric maximum strength and peak rate-of-force development in sprint cycling.

TL;DR: The results suggest that larger, stronger sprint cyclists have an advantage in producing power and are generally faster sprint cyclists.
Journal ArticleDOI

A simple method for measuring force, velocity and power output during squat jump

TL;DR: The proposed computation method, solely based on three simple parameters, allows to accurately evaluate force, velocity and power developed by lower limbs extensor muscles during squat jumps in field conditions, and confirmed the positive relationship between power output, body mass and jump height, hitherto only shown by means of regression-based equations.
References
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Journal Article

Utilization of stored elastic energy in leg extensor muscles by men and women

TL;DR: The results suggest that although the leg extensor muscles of the men subjects could sustain much higher stretch loads, the females may be able to utilize a greater portion of the stored elastic energy in jumping activities.
Journal ArticleDOI

Biomechanical analysis of knee flexion and extension

TL;DR: For the knee, mathematical analyses for the sagittal plane were performed on data obtained from roentgenograms and a load cell incorporated in a specially constructed force table to find the axis of rotation for the knee displaced 3·2 cm through a 90° range.
Journal ArticleDOI

Storage of Elastic Energy in Skeletal Muscles in Man

TL;DR: It is suggested that the elastic energy is stored in the active muscles, and it is demonstrated that the muscles of the legs are activated in the downward jumps before contact with the platform is established.
Journal ArticleDOI

Combined effect of elastic energy and myoelectrical potentiation during stretch-shortening cycle exercise

TL;DR: The observed results emphasize that both elastic energy and reflex potentiation may operate effectively during stretch-shortening cycle activity.
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