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Measurement of head relocation accuracy in the sagittal plane using static photogrammetry and inertial measurement unit

机译:使用静态摄影测量和惯性测量单元测量矢状平面中的头部重定位精度

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The high densities and complex arrays of joint mechanoreceptors and muscle spindles of the cervical spine suggest that disturbances of such structures may change the proprioceptive information to the neuromuscular system and thus, may play a key role in neck presentation. Errors in head positioning may arise in response to such proprioceptive disturbances and are considered to be a clinical sign of somatosensory impairment. The objective of this study is to compare the performance of a commercial 3D inertial measurement unit (IMU) with static photogrammetry in the head relocation accuracy test in the sagittal plane. Fourteen asymptomatic subjects were enrolled in the investigation. A paired observations experimental design was conducted and three error parameters (absolute, constant and variable) were calculated for each method. Results showed no significant difference between error parameter means obtained by both measurement methods. Bland and Altman plots were used to assess agreement levels between error estimates and showed good agreement levels among absolute and constant errors. The study concludes that the IMU is a valid method for head error position assessment in the sagittal plane, and future studies should focus on potential clinical applications involving different subgroups of neck pain patients.
机译:颈椎的高密度和复杂阵列和颈椎的肌肉纺织阵列表明这种结构的扰动可以将原血征信息改变为神经肌肉系统,因此可能在颈部呈现中发挥关键作用。响应这些遗传紊乱的头部定位中的误差可能被认为是患有躯体感觉损伤的临床迹象。本研究的目的是将商业3D惯性测量单元(IMU)的性能与矢状平面中的头部重定位精度测试中的静态摄影测量进行比较。在调查中注册了十四个无症状受试者。对每种方法计算配对观察实验设计,对每种方法计算三个误差参数(绝对,常数和变量)。结果表明,通过两种测量方法获得的误差参数装置之间没有显着差异。 Bland和Altman Plots被用来评估错误估计之间的协议水平,并且在绝对和恒定错误中显示出良好的协议水平。该研究的结论是,IMU是矢状平面中的头部错误位置评估的有效方法,未来的研究应专注于涉及颈部疼痛患者的不同亚组的潜在临床应用。

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