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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Monitoring of Postoperative Bone Healing Using Smart Trauma-Fixation Device With Integrated Self-Powered Piezo-Floating-Gate Sensors
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Monitoring of Postoperative Bone Healing Using Smart Trauma-Fixation Device With Integrated Self-Powered Piezo-Floating-Gate Sensors

机译:使用集成了自供电压电浮栅传感器的智能创伤修复设备监测术后骨愈合

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Objective: Achieving better surgical outcomes in cases of traumatic bone fractures requires postoperative monitoring of changes in the growth and mechanical properties of the tissue and bones during the healing process. While current in-vivo imaging techniques can provide a snapshot of the extent of bone growth, it is unable to provide a history of the healing process, which is important if any corrective surgery is required. Monitoring the time evolution of in-vivo mechanical loads using existing technology is a challenge due to the need for continuous power while maintaining patient mobility and comfort. Methods: This paper investigates the feasibility of self-powered monitoring of the bone-healing process using our previously reported piezo-floating-gate (PFG) sensors. The sensors are directly integrated with a fixation device and operate by harvesting energy from microscale strain variations in the fixation structure. Results: We show that the sensors can record and store the statistics of the strain evolution during the healing process for offline retrieval and analysis. Additionally, we present measurement results using a biomechanical phantom comprising of a femur fracture fixation plate; bone healing is emulated by inserting different materials, with gradually increasing elastic moduli, inside a fracture gap. Conclusion: The PFG sensor can effectively sense, compute, and record continuously evolving statistics of mechanical loading over a typical healing period of a bone, and the statistics could be used to differentiate between different bone-healing conditions. Significance: The proposed sensor presents a reliable objective technique to assess bone-healing progress and help decide on the removal time of the fixation device.
机译:目的:要在创伤性骨折的情况下获得更好的手术效果,需要对愈合过程中组织和骨骼的生长和机械特性的变化进行术后监测。尽管当前的体内成像技术可以提供骨骼生长程度的快照,但是它无法提供愈合过程的历史记录,如果需要进行任何矫正手术,这一点很重要。由于需要持续的动力同时保持患者的活动性和舒适性,因此使用现有技术监控体内机械负荷的时间演变是一个挑战。方法:本文研究了使用我们以前报道的压电浮动门(PFG)传感器对骨骼愈合过程进行自供电监测的可行性。传感器直接与固定装置集成在一起,并通过从固定结构中的微小应变变化中收集能量来进行操作。结果:我们表明,传感器可以记录和存储愈合过程中应变演变的统计信息,以供离线检索和分析。此外,我们使用由股骨骨折固定板组成的生物力学体模提出了测量结果。通过在骨折间隙内插入不同的材料(逐渐增加弹性模量)来模拟骨骼愈合。结论:PFG传感器可以有效地感测,计算和记录在典型的骨骼愈合期间不断变化的机械负荷统计数据,该统计数据可用于区分不同的骨愈合情况。启示:拟议的传感器提出了一种可靠的客观技术,可评估骨愈合的进展并帮助确定固定装置的去除时间。

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