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Central and Peripheral Shoulder Fatigue Pre-screening Using the Sigma–Lognormal Model: A Proof of Concept

机译:使用Sigma-Lognormal模型的中央和外围肩部疲劳预筛选:概念证明

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摘要

BackgroundClinical tests for detecting central and peripheral shoulder fatigue are limited. The discrimination of these two types of fatigue is necessary to better adapt recovery intervention. The Kinematic Theory of Rapid Human Movements describes the neuromotor impulse response using lognormal functions and has many applications in pathology detection. The ideal motor control is modeled and a change in the neuromuscular system is reflected in parameters extracted according to this theory.ObjectiveThe objective of this study was to assess whether a shoulder neuromuscular fatigue could be detected through parameters describing the theory, if there is the possibility to discriminate central from peripheral fatigue, and which handwriting test gives the most relevant information on fatigue.MethodsTwenty healthy participants performed two sessions of fast stroke handwriting on a tablet, before and after a shoulder fatigue. The fatigue was in internal rotation for one session and in external rotation during the other session. The drawings consisted of simple strokes, triangles, horizontal, and vertical oscillations. Parameters of these strokes were extracted according to the Sigma–Lognormal model of the Kinematic Theory. The evolution of each participant was analyzed through a U-Mann–Whitney test for individual comparisons. A Hotelling’s T2-test and a U-Mann–Whitney test were also performed on all participants to assess the group evolution after fatigue. Moreover, a correlation among parameters was calculated through Spearman coefficients to assess intrinsic parameters properties of each handwriting test.ResultsCentral and peripheral parameters were statistically different before and after fatigue with a possibility to discriminate them. Participants had various responses to fatigue. However, when considering the group, parameters related to the motor program execution showed significant increase in the handwriting tests after shoulder fatigue. The test of simple strokes permits to know more specifically where the fatigue comes from, whereas the oscillations tests were the most sensitive to fatigue.ConclusionThe results of this study suggest that the Sigma–Lognormal model of the Kinematic Theory is an innovative approach for fatigue detection with discrimination between the central and peripheral systems. Overall, there is a possibility to implement the setting for clinics and sports personalized follow-up.
机译:用于检测中枢和外周肩部疲劳BackgroundClinical试验的限制。这两种类型的疲劳的歧视是必要的,以便更好地适应恢复的干预。人快速运动的运动理论描述了神经运动脉冲响应用对数正态函数,并且具有在病理检测的许多应用。理想的电机控制是根据这个theory.ObjectiveThe目标本研究的模型化,并在神经肌肉系统中的变化反映在参数提取是评估是否肩部神经肌肉疲劳可以通过参数来检测描述的理论,如果存在这样的可能性从外周疲劳判别中央,并且其笔迹测试给出fatigue.MethodsTwenty健康参与者最相关的信息执行快速行程手写的两个会话上的片剂,之前和肩部疲劳后。疲劳是在内部旋转为一个会话,并在其他会话期间外旋。附图包括简单的笔画,三角形,水平和垂直振动。根据运动学理论的西格玛 - 对数正态模型中的这些笔划的参数进行了萃取。每个参与者的演进通过一U Mann-Whitney检验用于比较个别分析。还对所有的参与者执行的霍特林T2-测试和U Mann-Whitney检验来评估疲劳后的组演化。此外,参数之间的相关性通过斯皮尔曼系数经计算为评估每个手写test.ResultsCentral和外围参数是前和带可能性从而识别它们的疲劳后统计学上不同的固有参数属性。参加者有疲劳的各种反应。但是,考虑到组时,涉及到马达程序执行参数表明在肩部的疲劳后的手写测试显著增加。简单的笔触允许测试,以了解更多具体在哪里,疲劳从何而来,而振荡测试是这项研究的结果fatigue.ConclusionThe最敏感的表明运动理论的Σ-数正态分布模型是疲劳检测创新方法与中枢和外周系统之间的区别。总体来说,实现个性化的随访门诊和运动设置的可能性。

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