首页> 外文会议>Frontiers in Biomedical Devices Conference; 20070607-08; Irvine,CA(US) >MEASURING NECK NERVE STRAIN: AN EXPERIMENTAL INVESTIGATION
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MEASURING NECK NERVE STRAIN: AN EXPERIMENTAL INVESTIGATION

机译:测量颈神经劳损:一项实验研究

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We sought to determine the effects of head rotation, lateral neck flexion, and traction force on brachial plexus (BP) nerve strain, specifically at C5-C6 (Erb's point), and C7, C8, and Tl roots in a multi-"filament" 3D model of the fetal BP. Using our constructed simulator and a tailored data acquisition system, strain readings were recorded and accurate to within < 2%. Using our model and a position-sensing system, controlled loads and deformations were applied to a fetal head attached to a flexible spine. For each simulation, we measured BP strain at Erb's point, and C7, C8, and Tl roots. Increasing total traction force increases strain in the upper and middle nerves (Erb's point, C7, and C8). Lateral neck flexion produces the most strain (up to 25.4±6.6% in Erb's point with 4.5 kg (10 lbs) of traction), with concomitant head rotation magnifying strain levels by up to a factor of 1.7. Increasing head rotation and lateral neck flexion increases the strain in the lower nerve roots more than in the upper roots, in general, upper nerves undergo double the strain of lower nerves. Direct axial traction has the least effect, with 4.5 kg of traction producing a peak strain of 3.6±2.5% at Erb's point. BP strain can be reduced at Erb's point, C7, and C8 by maintaining neutral alignment between the head and trunk prior to applying traction, which should be minimized.
机译:我们试图确定头部旋转,外侧颈屈肌和牵引力对臂丛神经(BP)神经张力的影响,特别是在多“丝”中的C5-C6(Erb点)以及C7,C8和Tl根胎儿BP的3D模型。使用我们构建的模拟器和量身定制的数据采集系统,可以记录应变读数,并且精确度在<2%以内。使用我们的模型和位置感应系统,将受控制的载荷和变形应用于附着在柔性脊柱上的胎儿头部。对于每个模拟,我们在Erb点以及C7,C8和T1根上测量了BP应变。增加总牵引力会增加上,中神经的应变(Erb点,C7和C8)。颈部外侧屈曲产生最大的应变(在4.5千克(10磅)的牵引力下,Erb的屈曲点最高达到25.4±6.6%),同时头部旋转将应变水平提高了1.7倍。头部旋转的增加和颈部外侧弯曲的增加使下神经根的张力比上根的张力增加的多,通常,上神经承受下神经的张力的两倍。直接轴向牵引力影响最小,在Erb点,牵引力为4.5 kg时产生的峰值应变为3.6±2.5%。通过在施加牵引力之前保持头部和躯干之间的中性对齐,可以减少Erb点,C7和C8处的BP应变,应将其最小化。

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