The biophysical determinants related to swimming performance are one of the most attractive topics within swimming science. The aim of this paper was to do an update of the "state of art" about the interplay between performance, energetic and biomechanics in competitive swimming. Throughout the manuscript some recent highlights are described: (i) the relationship between swimmer's segmental kinematics (segmental velocities, stroke length, stroke frequency, stroke index and coordination index) and his center of mass kinematics (swimming velocity and speed fluctuation); (ii) the relationships between energetic (energy expenditure and energy cost) and swimmer's kinematics; and (iii) the prediction of swimming performance derived from above men...
The energy cost to swim a unit distance (C(sw)) is given by the ratio (E) over dot/v where (E) over ...
Energy expenditure as a function of swimming velocity is one of the major topics of interest in swim...
Purpose: This study aims to analyze swimmers' oxygen uptake kinetics ([Formula: see text]K) and bioe...
The biophysical determinants related to swimming performance are one of the most attractive topics w...
The purpose of the present paper is to synthesise a number of scientific contributions of our resear...
Swimming is a unique activity carried out in a unique environment. Performance depends on interplay ...
The purpose of the study was to analyse relationships between total energy expenditure (Etot), ener...
The aim of this chapter has two folds: (i): to perform a biomechanical characterization of the four ...
The goal of competitive swimming is to travel the event distance as fast as possible. The identific...
In this presentation a model of swimming performance based on work, energy, and efficiency is introd...
The aim was to develop a path-flow analysis model for young swimmers' performance based on biomechan...
Researchers are constantly trying to identify the factors that can predict with higher accuracy th...
The purpose of this study was to examine the relationship between the energy cost (C) and the 3D in...
Swimming is a unique activity carried out in a unique environment. Performance depends on interplay ...
The purpose of this study was to analyze the relationships between energy cost (C), swimming veloci...
The energy cost to swim a unit distance (C(sw)) is given by the ratio (E) over dot/v where (E) over ...
Energy expenditure as a function of swimming velocity is one of the major topics of interest in swim...
Purpose: This study aims to analyze swimmers' oxygen uptake kinetics ([Formula: see text]K) and bioe...
The biophysical determinants related to swimming performance are one of the most attractive topics w...
The purpose of the present paper is to synthesise a number of scientific contributions of our resear...
Swimming is a unique activity carried out in a unique environment. Performance depends on interplay ...
The purpose of the study was to analyse relationships between total energy expenditure (Etot), ener...
The aim of this chapter has two folds: (i): to perform a biomechanical characterization of the four ...
The goal of competitive swimming is to travel the event distance as fast as possible. The identific...
In this presentation a model of swimming performance based on work, energy, and efficiency is introd...
The aim was to develop a path-flow analysis model for young swimmers' performance based on biomechan...
Researchers are constantly trying to identify the factors that can predict with higher accuracy th...
The purpose of this study was to examine the relationship between the energy cost (C) and the 3D in...
Swimming is a unique activity carried out in a unique environment. Performance depends on interplay ...
The purpose of this study was to analyze the relationships between energy cost (C), swimming veloci...
The energy cost to swim a unit distance (C(sw)) is given by the ratio (E) over dot/v where (E) over ...
Energy expenditure as a function of swimming velocity is one of the major topics of interest in swim...
Purpose: This study aims to analyze swimmers' oxygen uptake kinetics ([Formula: see text]K) and bioe...