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首页> 外文期刊>Journal of Biomechanics >Implantable MEMS compressive stress sensors: Design, fabrication and calibration with application to the disc annulus.
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Implantable MEMS compressive stress sensors: Design, fabrication and calibration with application to the disc annulus.

机译:植入式MEMS压应力传感器:应用于椎间盘环的设计,制造和校准。

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摘要

Physiological stresses are fundamental to biomechanical testing, mechanobiological analyses, implant design, and tissue engineering. The purpose of this study was to design, fabricate, and evaluate compressive stress sensors packaged for extended, in vivo implantation in the annulus of the intervertebral disc. A commercial microelectromechanical systems (MEMS) pressure sensor die was selected as the active element for a custom stress sensor. The sensor die was modified and packaged to protect the electrical system from the biochemical and biomechanical environment. Completed sensors were calibrated under hydrostatic pressure and solid contact compression. Calibrations were performed before and after 8 weeks of in vivo implantation in a porcine disc. For the two reported sensors, stress and voltage were linearly correlated over a range of 0-1.8 MPa with less than 5% change in sensitivity. Sensitivity to solid contact stress was within 10% of that from hydrostatic pressure. In contrast to most previous studies, in which disc pressure was measured in the fluidic nucleus pulposus, these sensors may be used to measure in vivo dynamic compressive stresses in the annulus at magnitudes typical of the musculoskeletal system in a large animal over a relatively long post-operative time.
机译:生理应力对于生物力学测试,力学生物学分析,植入物设计和组织工程至关重要。这项研究的目的是设计,制造和评估压缩应力传感器,该传感器被包装用于在椎间盘瓣环环中进行扩展的体内植入。选择了商用微机电系统(MEMS)压力传感器芯片作为定制应力传感器的有源元件。传感器芯片经过修改和包装,以保护电气系统免受生化和生物力学环境的影响。完整的传感器在静水压力和固体接触压缩下进行校准。在猪圆盘体内植入8周之前和之后进行校准。对于两个报告的传感器,应力和电压在0-1.8 MPa范围内线性相关,灵敏度变化小于5%。对固体接触应力的敏感性在静水压力敏感性的10%以内。与大多数先前的研究不同,在先前的研究中,在髓核的流体核中测量了椎间盘压力,这些传感器可用于在相对较长的时间内测量大型动物的肌肉骨骼系统典型幅度的环空体内的动态压应力。手术时间。

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