<p>Percentage of asymmetry in total volume of <i>iliopsoas</i> (A) and <i>gluteal muscles</i> (B); Percentage of asymmetry in CSA, segment by segment, of <i>iliopsoas</i> (C) and <i>gluteal muscles</i> (D). α P<0.05, σ P<0.01, τ P<0.001, * P = 0.06.</p
a<p>P<0.05 CG vs. SP and CG vs. TP, <sup>b</sup> P<0.05 CG vs. SP, <sup>c</sup> P<0.001 CG vs. SP, <...
Background and Objectives: The purpose of this study was twofold: (1) to examine strength asymmetrie...
<p><b>ASY:</b> Asymmetry between the dominant and non-dominant sides ((Dominant-Non-dominant)*100)/N...
<p>Difference in total volume of dominant and non-dominant <i>iliopsoas</i> (A) and <i>gluteal muscl...
<p>Volume of the dominant and non-dominant <i>iliopsoas</i> (A), and <i>gluteal muscles</i> (B) into...
<p>Differences between professional tennis players and non-active subjects in the percentage of asym...
<p>Differences between professional soccer players and non-active subjects in the percentage of asym...
Purpose: To determine the volume and degree of asymmetry of iliopsoas (IL) and gluteal muscles (GL) ...
Purpose: To determine the volume and degree of asymmetry of iliopsoas (IL) and gluteal muscles (GL) ...
<p>Differences in the degree of inter-arm asymmetry between prepubescent tennis players and non-acti...
Background: Asymmetries have been reported to negatively impact sport performance. This study examin...
<p>In professional tennis players (white circles) and non-active subjects (black circles). Not signi...
Despite growing research in the field of inter-limb asymmetries (ILAs), little is known about the va...
<div><p>Abstract Prospective studies have indicated that assessing muscle function by the isokinetic...
This study aimed to (1) determine the magnitude and direction of asymmetry in volleyball players, (2...
a<p>P<0.05 CG vs. SP and CG vs. TP, <sup>b</sup> P<0.05 CG vs. SP, <sup>c</sup> P<0.001 CG vs. SP, <...
Background and Objectives: The purpose of this study was twofold: (1) to examine strength asymmetrie...
<p><b>ASY:</b> Asymmetry between the dominant and non-dominant sides ((Dominant-Non-dominant)*100)/N...
<p>Difference in total volume of dominant and non-dominant <i>iliopsoas</i> (A) and <i>gluteal muscl...
<p>Volume of the dominant and non-dominant <i>iliopsoas</i> (A), and <i>gluteal muscles</i> (B) into...
<p>Differences between professional tennis players and non-active subjects in the percentage of asym...
<p>Differences between professional soccer players and non-active subjects in the percentage of asym...
Purpose: To determine the volume and degree of asymmetry of iliopsoas (IL) and gluteal muscles (GL) ...
Purpose: To determine the volume and degree of asymmetry of iliopsoas (IL) and gluteal muscles (GL) ...
<p>Differences in the degree of inter-arm asymmetry between prepubescent tennis players and non-acti...
Background: Asymmetries have been reported to negatively impact sport performance. This study examin...
<p>In professional tennis players (white circles) and non-active subjects (black circles). Not signi...
Despite growing research in the field of inter-limb asymmetries (ILAs), little is known about the va...
<div><p>Abstract Prospective studies have indicated that assessing muscle function by the isokinetic...
This study aimed to (1) determine the magnitude and direction of asymmetry in volleyball players, (2...
a<p>P<0.05 CG vs. SP and CG vs. TP, <sup>b</sup> P<0.05 CG vs. SP, <sup>c</sup> P<0.001 CG vs. SP, <...
Background and Objectives: The purpose of this study was twofold: (1) to examine strength asymmetrie...
<p><b>ASY:</b> Asymmetry between the dominant and non-dominant sides ((Dominant-Non-dominant)*100)/N...