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Muscular Strength Imbalances Are Not Associated with Skin Temperature Asymmetries in Soccer Players

Overview
Journal Life (Basel)
Specialty Biology
Date 2020 Jul 8
PMID 32630633
Citations 3
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Abstract

Although strength imbalances using isokinetic dynamometer have been examined for injury risk screening in soccer players, it is very expensive and time-consuming, making the evaluation of new methods appealing. The aim of the study was to analyze the agreement between muscular strength imbalances and skin temperature bilateral asymmetries as well as skin temperature differences in the hamstrings and quadriceps. The skin temperature of the anterior and posterior thigh of 59 healthy male soccer athletes was assessed at baseline using infrared thermography for the identification of hamstrings-quadriceps skin temperature differences and thermal asymmetries (>0.5 °C). Subsequently, concentric and eccentric peak torque of the quadriceps and hamstrings were considered in the determination of the ratios, as well as muscular asymmetries (>15%). When considering the torque parameters, 37.3% ( = 22) of the players would be classified as high risk for injuries. The percentage of those presenting skin temperature imbalances superior to 0.5 °C was 52.5% ( = 31). The skin temperature assessment showed sensitivity (22%) and specificity (32.2%) to identify torque asymmetries, demonstrating the inability to identify false negatives (15.3%) and false positives (30.5%) from all soccer athletes. In conclusion, skin temperature differences between hamstrings and quadriceps could be more related to thermoregulatory factors than strength imbalances.

Citing Articles

Ability of Countermovement Jumps to Detect Bilateral Asymmetry in Hip and Knee Strength in Elite Youth Soccer Players.

Wrona H, Zerega R, King V, Reiter C, Odum S, Manifold D Sports (Basel). 2023; 11(4).

PMID: 37104151 PMC: 10142123. DOI: 10.3390/sports11040077.


Effects of Unilateral Muscle Fatigue on Thermographic Skin Surface Temperature of Back and Abdominal Muscles-A Pilot Study.

Dindorf C, Bartaguiz E, Janowicz E, Frohlich M, Ludwig O Sports (Basel). 2022; 10(3).

PMID: 35324650 PMC: 8951321. DOI: 10.3390/sports10030041.


Exercise Biomechanics and Physiology.

Priego-Quesada J Life (Basel). 2021; 11(2).

PMID: 33669578 PMC: 7921909. DOI: 10.3390/life11020159.

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