The influence of cadence and power outpout on the biomechanics of force application during steady-rate cycling in competitive and recreational cyclists

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Deutscher übersetzter Titel:Der Einfluss von Rhythmus und geforderter Leistung auf die Biomechanik des Krafteinsatzes bei gleichmaessigem Radfahren von Leistungs- und Freizeitradsportlern
Autor:Sanderson, David J.
Erschienen in:Journal of sports sciences
Veröffentlicht:9 (1991), 2, S. 191-203, Lit.
Format: Literatur (SPOLIT)
Publikationstyp: Zeitschriftenartikel
Medienart: Gedruckte Ressource
Sprache:Englisch
ISSN:0264-0414, 1466-447X
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Erfassungsnummer:PU199110050283
Quelle:BISp

Abstract

The aim of this study was two-fold: I. to investigate how cyclists orient forces applied by the feet to the pedals in response to varying power output and cadence demands, and II. to assess whether competitive riders responded differently from recreational riders to such variations. One group consisted of competitive cyclists and the second group of recreational cyclists with no competitive experience. The subjects rode an instrumented stationary 10-speed geared bicycle mounted on a platform designed to provide rolling and inertial resistance for six pedal rate/power output conditions for a minimum of 2 min for each ride. The pedalling rates were 60, 80 and 100 rev/min and the power outputs 100 and 235 W. All rides were presented in random order. The forces applied to the pedals, the pedal angle with respect to the crank and the crank angle were recorded for the final 30 s of each ride. From these data, a number of variables were computed including peak normal and tangential forces, crank torque, angular impulse, proportion of resultant force perpendicular to the crank, and pedal angle. Both the competitive and recreational groups responded similarly to increases in cadence and power output. There was a decrease in the peak normal force, whereas the tangential component remained almost constant as cadence was increased. Regardless of cadence, the riders responded to increased power output demands by increasing the amount of positive angular impulse. All the riders had a reduced index of effectiveness as cadence increased. Verf.-Ref.