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首页> 外文期刊>Journal of Biomechanics >Influence of follower load application on moment-rotation parameters and intradiscal pressure in the cervical spine
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Influence of follower load application on moment-rotation parameters and intradiscal pressure in the cervical spine

机译:随机荷载应用对颈椎时刻旋转参数和体内压力的影响

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摘要

The objective of this study was to implement a follower load (FL) device within a robotic (universal force-moment sensor) testing system and utilize the system to explore the effect of FL on multisegment cervical spine moment-rotation parameters and intradiscal pressure (IDP) at C45 and C56. Twelve fresh-frozen human cervical specimens (C3-C7) were biomechanically tested in a robotic testing system to a pure moment target of 2.0 Nm for flexion and extension (FE) with no compression and with 100 N of FL. Application of FL was accomplished by loading the specimens with bilateral cables passing through cable guides inserted into the vertebral bodies and attached to load controlled linear actuators. FL significantly increased neutral zone (NZ) stiffness and NZ width but resulted in no change in the range of motion (ROM) or elastic zone stiffness. C45 and C56 IDP measured in the neutral position were significantly increased with application of FL. The change in IDP with increasing flexion rotation was not significantly affected by the application of FL, whereas the change in IDP with increasing extension rotation was significantly reduced by the application of FL. Application of FL did not appear to affect the specimen's quantity of motion (ROM) but did affect the quality (the shape of the curve). Regarding IDP, the effects of adding FL compression approximates the effect of the patient going from supine to a seated position (FL compression increased the IDP in the neutral position). The change in IDP with increasing flexion rotation was not affected by the application of FL, but the change in IDP with increasing extension rotation was, however, significantly reduced by the application of FL. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本研究的目的是在机器人(通用力矩传感器)测试系统内实施从动载荷(FL)装置,并利用该系统探索FL对多段颈椎力矩旋转参数和盘内压力的影响(IDP )在C45和C56处。 12个新鲜冷冻的人颈宫颈标本(C3-C7)在机器人试验系统中被生物学测试,以屈曲和延伸(Fe)的纯片靶标,没有压缩和100nF。通过将样品加载通过插入椎体中的电缆导向器并连接到负载控制的线性致动器来实现FL的应用。 FL显着增加中性区域(NZ)刚度和NZ宽度,但导致运动范围(ROM)或弹性区刚度的变化没有变化。在中性位置测量的C45和C56 IDP随着FL的应用显着增加。 IDP的变化随着屈曲旋转的增加而没有显着影响FL的影响,而IDP的变化随着延伸旋转的增加而显着降低了FL。 FL的应用似乎没有影响标本的运动量(ROM),但确实影响了质量(曲线的形状)。关于IDP,添加FL压缩的效果近似于患者从仰卧到坐姿的效果(FL压缩在空档位置增加IDP)。 IDP的变化随着屈曲旋转的增加而不受到FL的影响的影响,但是IDP的变化随着延伸旋转而增加,通过应用,FL的应用显着降低。 (c)2018年elestvier有限公司保留所有权利。

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