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首页> 外文期刊>Journal of biomechanical engineering. >Validation of an EMG-Driven, Graphically Based Isometric Musculoskeletal Model of the Cervical Spine
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Validation of an EMG-Driven, Graphically Based Isometric Musculoskeletal Model of the Cervical Spine

机译:肌电图驱动,基于图形的颈椎等距骨骼模型的验证

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EMG-driven musculoskeletal modeling is a method in which loading on the active and passive structures of the cervical spine may be investigated. A model of the cervical spine exists; however, it has yet to be criterion validated. Furthermore, neck muscle morphometry in this model was derived from elderly cadavers, threatening model validity. Therefore, the overall aim of this study was to modify and criterion validate this preexisting graphically based musculoskeletal model of the cervical spine. Five male subjects with no neck pain participated in this study. The study consisted of three parts. First, subject-specific neck muscle morphometry data were derived by using magnetic resonance imaging. Second, EMG drive for the model was generated from both surface (Drive 1: N =5) and surface and deep muscles (Drive 2: N=3). Finally, to criterion validate the modified model, net moments predicted by the model were compared against net moments measured by an isokinetic dynamometer in both maximal and submaximal isometric contractions with the head in the neutral posture, 20 deg of flexion, and 35 deg of extension. Neck muscle physiological cross sectional area values were greater in this study when compared to previously reported data. Predictions of neck torque by the model were better in flexion (18.2% coefficient of variation (CV)) when compared to extension (28.5% CV) and using indwelling EMG did not enhance model predictions. There were, however, large variations in predictions when all the contractions were compared. It is our belief that further work needs to be done to improve the validity of the modified EMG-driven neck model examined in this study. A number of factors could potentially improve the model with the most promising probably being optimizing various modeling parameters by using methods established by previous researchers investigating other joints of the body.
机译:EMG驱动的肌肉骨骼建模是一种可以研究颈椎主动和被动结构上的载荷的方法。存在颈椎模型;但是,它尚未经过标准验证。此外,该模型中的颈部肌肉形态测量结果来自老年尸体,从而威胁了模型的有效性。因此,本研究的总体目标是修改和规范验证此先前存在的基于图形的颈椎肌肉骨骼模型。五个没有颈部疼痛的男性受试者参加了这项研究。该研究包括三个部分。首先,通过使用磁共振成像得出受试者特定的颈部肌肉形态数据。其次,从表面(驱动器1:N = 5)以及表面和深部肌肉(驱动器2:N = 3)生成模型的EMG驱动器。最后,为了验证修改后的模型的有效性,将模型预测的净力矩与等速测力计测得的净力矩进行了比较,该力矩在头部处于中立姿势,最大屈曲角度为20度,伸展角度为35度时处于最大等距收缩状态。与先前报道的数据相比,本研究中颈部肌肉的生理横截面积值更大。与延伸(28.5%CV)相比,该模型对颈部扭矩的预测在屈曲性(18.2%变异系数(CV))方面更好,并且使用留置肌电图不能增强模型预测。但是,当比较所有收缩时,预测值会有很大差异。我们认为,需要做进一步的工作来提高本研究中检查的改良的肌电图驱动的颈部模型的有效性。许多因素可能会改善模型,最有希望的可能是通过使用先前研究人员研究身体其他关节的方法来优化各种建模参数。

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