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How technology is affecting sports


Lewis Howes from Sports Networker recently published a very interesting article about the influence of technology on sports.

We all know that technology plays a major role in sports. If it weren’t for new inventions and innovative ideas half the sports we know of wouldn’t exists. If it weren’t for technology we wouldn’t have the instant replay, the headset for coaches to throw, or even the wireless microphone for our referees to mix up their words on. However, technology has come a long way since those early discoveries...

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Science and Sports

Congresso AIPAC: Dalla valutazione all'allenamento


Tra pochi giorni, il Museo del Calcio a Coverciano ospiterà il congressno annual deila Associazione Italiana Preparatori Atletici Calcio.

Titolo del congresso: "Dalla valutazione all'allenamento. Con l’evolversi dei riferimenti scientifici, le scienze applicate sono in continua evoluzione".

Luogo e data di svolgimento: Firenze, 10 Maggio 2010, presso l'Aula magna di Coverciano – Aula del Museo del Calcio e campo in sintetico.

Per ulteriori informazioni, cliccare QUI.

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La preparazione fisica di Rocky a portata di mano...

Tennis serve technique


In these days, Rome is hosting the annual Internazionali BNL D’Italia Tennis competition in the beautiful area of the Foro Italico: big names such as Roger Federer, Rafa Nadal, Novak Djokovic and Andy Murray are already in the capital sweating their way towards the competition finals. Overwhelmed by this tennis fever, I began reading through some tennis biomechanics literature today and I came across a very interesting study published two years ago by Reid et al (2008) in the journal Medicine and Science in Sports and Exercise. This paper investigates the relationship between lower-limb coordination and shoulder joint kinetics and kinematics in the high-performance flat first serve in tennis. The Australian researchers recorded the movements of professional athletes using a motion capture system while they performed the technique. I have included below the abstract, but if you are interested in getting a complete copy, then make sure to visit the publishers website.

REFERENCE: Reid et al (2008) Med Sci Sports and Exerc. 40 (2):308-315

TITLE: Lower-limb coordination and shoulder joint mechanics in the tennis serve
PURPOSE: To examine the relationship between variable lower-limb coordination and shoulder joint kinetics and kinematics in the high-performance flat first serve in tennis.

METHODS: Three-dimensional data describing three flat serve (FS) techniques, each executed with varying lower-limb involvement: foot-up (FU), foot-back (FB), and minimal leg drive (ARM), as performed by 12 high-performance male players were recorded using a 12-camera Vicon MX motion analysis system operating at 250 Hz. A discriminant analysis determined the lower-limb kinematics that distinguished serve technique, and by extension, leg drive. A total of 18 one-way ANOVA ascertained statistically significant differences in the kinematic and kinetic variables considered to relate to or represent shoulder joint loading in FU, FB, and ARM serves.

RESULTS: The lower-limb kinematics shown to best discriminate between service techniques were range of rear and front knee joint extension, and peak angular velocity of rear knee joint extension. The forward swings of the FU (43.6 ± 3.0 m/s) and FB (42.6 ± 3.1 m/ss) techniques were characterized by higher peak racket speeds than those generated in the ARM (39.4 ± 3.4 m/s) serve. Regardless of stance and leg drive, similar pre- and postimpact shoulder joint kinetics were developed.

CONCLUSION: Knowledge of a server's range of front and rear knee joint extension as well as his/her peak angular velocity of rear knee joint extension is sufficient to ascertain the stance and quality of leg drive used. When facilitated by a leg drive, high-performance players generate similar resultant preimpact racket velocities independent of stance. With no leg drive, players develop lower resultant racket velocities. Comparable shoulder joint kinetics, however, evolved from the differential lower-limb mechanics that characterized the FU, FB, and ARM techniques.

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