Movement Asymmetries: From Their Molecular Origin to the Analysis of Movement Asymmetries in Athletes

Асимметрия движений: от молекулярного происхождения до анализа асимметрии движений у спортсменов
Alexander Egoyan, Giorgi Parulava, Steven K. Baker, Melinda Gilhen-Baker, Giovanni N. Roviello
2023-10-27

Myosin 1Dathlete rehabilitationgait analysismeloxicammovement asymmetries
Asymmetry plays a major role in biology at all scales. This can be seen in the helix of DNA, the fact that the human heart is on the left side, or that most people use their right hand. A single protein such as Myosin 1D can induce helical motion in another molecule. This causes cells, organs, and even entire bodies to twist in a domino effect, causing left-right behaviour. More generally, athlete movements are often asymmetric and, during the physical rehabilitation after injury, the asymmetry is visually discernible. Herein, we review the molecular basis of the movement asymmetries and report on the available knowledge on the few therapeutics investigated so far such as meloxicam. From a more rehabilitative perspective, it is very important to use effective methods to control the process of resolving the injury-related movement asymmetry through the complex use of specialised exercises, measurements, and gait analysis, which can all provide useful information on the effectiveness of the rehabilitation plans. If for each athlete, the normal range of asymmetry is known, the asymmetry can be individually treated and the evolution can be monitored over time. Appropriate measures should be taken if the movement asymmetry is outside this range. In addition, genetic, physiological, and psychological factors relevant to athlete health should be considered in the process of assessing and improving exercise asymmetry, which we also discuss in this review. The main proposal of this work is that the movement asymmetries in athletes should be individually treated, while taking into account the athlete's genetics, physical condition, and previous injuries.
1
Assessment and improvement of athletic movement asymmetry should account for genetic, physiological, psychological, and injury-history factors; few therapeutics, including meloxicam, have been investigated.
2
Athlete movement asymmetries are often visually apparent during post-injury rehabilitation and require systematic monitoring.
3
Effective management of injury-related asymmetry should combine specialized exercises, quantitative measurements, and gait analysis to evaluate rehabilitation progress.
4
Individual baseline ranges of normal asymmetry can support personalized treatment decisions and longitudinal monitoring in athletes.
5
Movement asymmetries arise across biological scales, with molecular mechanisms such as Myosin 1D-induced helical motion contributing to left-right behavior.

Movement asymmetries in athletes, including injury-related asymmetries during rehabilitation

Molecular origins, assessment, monitoring, and individualized rehabilitation of movement asymmetries, considering therapeutic options and genetic, physiological, psychological, and injury-related factors

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2023-10-27
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Alexander Egoyan
Giorgi Parulava
Steven K. Baker
Melinda Gilhen-Baker
Giovanni N. Roviello
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