Jorge Rey-Mota , Guillermo Escribano-Colmena , Jesús Fernández-Lucas , Jose A. Parraca , Vicente Javier Clemente-Suárez
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The methodology centered on standardizing test protocols to minimize variability, employing EMG to quantify muscle activity, thermography to capture thermographic muscular response, and digital dynamometry to measure muscular resistance. The findings revealed that while traditional methods like thermography and electromyography provide valuable insights, digital dynamometry stands out for its sensitivity in detecting muscle condition changes in neuromuscular test. 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引用次数: 0
摘要
肌肉测试是评估肌肉骨骼功能和调整康复工作不可或缺的组成部分。本研究旨在 i. 确定一个客观的评估系统,以分析不同专业经验水平的参与者在不同神经肌肉测试中不同肌肉状况的变化;以及 ii. 分析不同专业水平的参与者在不同神经肌肉测试中不同肌肉状况的客观参数和临床判断的差异。参与者包括 60 名具有 I 至 III 级专业知识的受试者,他们对 40 名志愿受试者的三角肌中部和股直肌进行了盲法神经肌肉测试。测试方法以标准化测试方案为中心,以尽量减少变异性,采用肌电图量化肌肉活动,热成像技术捕捉热成像肌肉反应,以及数字测力计测量肌肉阻力。研究结果表明,虽然热成像和肌电图等传统方法能提供有价值的见解,但数字测力计在检测神经肌肉测试中肌肉状况变化方面的灵敏度更胜一筹。此外,数据还强调了高级培训和专业知识在提高神经肌肉诊断的精确度和准确性方面的关键作用,因为在所分析的三角肌中部和股直肌神经肌肉测试中,不同专业水平的参与者在不同肌肉状况下的客观参数和临床判断存在显著差异,这表明专业水平较高的参与者的临床判断与客观有效的仪器相同。
Impact of professional experience on clinical judgment and muscular response in various neuromuscular tests
Muscle testing is an integral component in assessing musculoskeletal function and tailoring rehabilitation efforts. This study aimed i. to identify an objective evaluation system sensitive to analyze changes in different muscular conditions in different neuromuscular tests across a spectrum of professional experience levels; and ii. to analyze differences in objective parameters and clinical judgment between participants of different levels of expertise in different muscular conditions in different neuromuscular tests. Participants included 60 subjects with Level I to III expertise who performed blinded neuromuscular tests on the middle deltoid and rectus femoris muscles of 40 volunteer subjects. The methodology centered on standardizing test protocols to minimize variability, employing EMG to quantify muscle activity, thermography to capture thermographic muscular response, and digital dynamometry to measure muscular resistance. The findings revealed that while traditional methods like thermography and electromyography provide valuable insights, digital dynamometry stands out for its sensitivity in detecting muscle condition changes in neuromuscular test. Moreover, the data underscored the pivotal role of advanced training and expertise in enhancing the precision and accuracy of neuromuscular diagnostics, since there were significant differences in objective parameters and clinical judgment between participants of different levels of expertise in the different muscular conditions in Middle deltoid and Rectus femoris neuromuscular tests analyzed, presenting higher expertise participant clinical judgment like objective validated instrument.