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Head-compliant microstrip split ring resonator for non-invasive healing monitoring after craniosynostosis-based surgery

机译:头部顺应性微带裂环谐振器用于基于颅窦融合术的无创愈合监测

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摘要

A soft and highly directive, proximity-coupled split-ring resonator fabricated with a liquid alloy, copper and polydimethylsiloxane (PDMS) is presented. The same was designed for sensing osteogenesis of calvarial bone. As dielectric properties of bone grafts in ossifying calvarial defects should change during the osteogenesis process, devices like this could monitor the gradual transformation of the defect into bone by differentiating changes in the dielectric properties as shifts in the resonance frequency. Computational Software Technology (CST) Microwave Studio®-based simulation results on computational head models were in good agreement with laboratory results on head phantom models, which also included the comparison with an in-vivo measurement on the human head. A discussion based on an inductive reasoning regarding dynamics’ considerations is provided as well. Since the skin elasticity of newborn children is high, stretching and crumpling could be significant. In addition, due to typical head curvatures in newborn children, bending should not be a significant issue, and can provide higher energy focus in the defect area and improve conformability. The present concept could support the development of soft, cheap and portable follow-up monitoring systems to use in outpatient hospital and home care settings for post-operative monitoring of bone healing after reconstructive surgical procedures.
机译:提出了一种由液态合金,铜和聚二甲基硅氧烷(PDMS)制成的柔软且高度定向的接近耦合开环谐振器。设计用于感测颅骨的成骨作用的传感器。由于骨化颅骨缺损中骨移植物的介电特性应在成骨过程中发生变化,因此像这样的设备可以通过区分介电特性随共振频率的变化而监测缺陷向骨的逐渐转化。基于计算机软件技术(CST)MicrowaveStudio®的仿真头模型仿真结果与实验室仿真头模模型的结果非常吻合,其中还包括与人体头部的体内测量结果的比较。还提供了基于归纳推理的有关动力学考虑因素的讨论。由于新生婴儿的皮肤弹性很高,因此伸展和皱缩可能很明显。另外,由于新生婴儿的典型头部弯曲,弯曲不应成为一个重大问题,并且可以在缺陷区域提供更高的能量聚焦并改善顺应性。本概念可以支持软,廉价和便携式的随访监测系统的开发,以在门诊医院和家庭护理场所中使用,以在重建外科手术之后对骨愈合进行术后监测。

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