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Assessment of Patellar Tendon Reflex Responses Using Second-Order System Characteristics

机译:使用二阶系统特征评估of骨腱反射反应

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摘要

Deep tendon reflex tests, such as the patellar tendon reflex (PTR), are widely accepted as simple examinations for detecting neurological disorders. Despite common acceptance, the grading scales remain subjective, creating an opportunity for quantitative measures to improve the reliability and efficacy of these tests. Previous studies have demonstrated the usefulness of quantified measurement variables; however, little work has been done to correlate experimental data with theoretical models using entire PTR responses. In the present study, it is hypothesized that PTR responses may be described by the exponential decay rate and damped natural frequency of a theoretical second-order system. Kinematic data was recorded from both knees of 45 subjects using a motion capture system and correlation analysis found that the mean R2 value was 0.99. Exponential decay rate and damped natural frequency ranges determined from the sample population were −5.61 to −1.42 and 11.73 rad/s to 14.96 rad/s, respectively. This study confirmed that PTR responses strongly correlate to a second-order system and that exponential decay rate and undamped natural frequency are novel measurement variables to accurately measure PTR responses. Therefore, further investigation of these measurement variables and their usefulness in grading PTR responses is warranted.
机译:深肌腱反射测试,例如the腱反射(PTR),已被广泛接受为检测神经系统疾病的简单检查方法。尽管已被普遍接受,但评分量表仍然是主观的,这为定量措施创造了机会,以提高这些测试的可靠性和有效性。先前的研究已经证明了量化测量变量的有效性。但是,几乎没有做过使用整个PTR响应将实验数据与理论模型建立关联的工作。在本研究中,假设PTR响应可以通过理论二阶系统的指数衰减率和阻尼固有频率来描述。使用运动捕捉系统记录了45名受试者双膝的运动学数据,相关分析发现R 2 的平均值为0.99。由样本总体确定的指数衰减率和阻尼固有频率范围分别为-5.61至-1.42和11.73 rad / s至14.96 rad / s。这项研究证实,PTR响应与二阶系统密切相关,指数衰减率和无阻尼自然频率是准确测量PTR响应的新颖测量变量。因此,有必要对这些测量变量及其在定级PTR响应中的用途进行进一步研究。

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