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首页> 外文期刊>Journal of biomechanical engineering. >Wireless Implantable Sensor for Noninvasive, Longitudinal Quantification of Axial Strain Across Rodent Long Bone Defects
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Wireless Implantable Sensor for Noninvasive, Longitudinal Quantification of Axial Strain Across Rodent Long Bone Defects

机译:无线可植入传感器,用于无侵入性,纵向定量啮齿动物长骨缺损的轴向应变

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摘要

Bone development, maintenance, and regeneration are remarkably sensitive to mechanical cues. Consequently, mechanical stimulation has long been sought as a putative target to promote endogenous healing after fracture. Given the transient nature of bone repair, tissue-level mechanical cues evolve rapidly over time after injury and are challenging to measure noninvasively. The objective of this work was to develop and characterize an implantable strain sensor for noninvasive monitoring of axial strain across a rodent femoral defect during functional activity. Herein, we present the design, characterization, and in vivo demonstration of the device's capabilities for quantitatively interrogating physiological dynamic strains during bone regeneration. Ex vivo experimental characterization of the device showed that it possessed promising sensitivity, signal resolution, and electromechanical stability for in vivo applications. The digital telemetry minimized power consumption, enabling extended intermittent data collection. Devices were implanted in a rat 6 mm femoral segmental defect model, and after three days, data were acquired wirelessly during ambulation and synchronized to corresponding radiographic videos, validating the ability of the sensor to noninvasively measure strain in real-time. Together, these data indicate the sensor is a promising technology to quantify tissue mechanics in a specimen specific manner, facilitating more detailed investigations into the role of the mechanical environment in dynamic bone healing and remodeling processes.
机译:骨骼发育,维护和再生对机械线索非常敏感。因此,长期以来,机械刺激已被寻求促进骨折后促进内源性愈合的推定靶标。鉴于骨骼修复的瞬态性质,伤势后的组织级机械线程随着时间的推移而迅速发展,并且挑战以非侵略性测量。这项工作的目的是在功能活性期间开发和表征可植入的应变传感器,以便在啮齿动物股骨缺陷上进行轴向应变的非侵入性监测。在此,我们介绍了在骨再生期间定量询问生理动态菌株的设备能力的设计,表征和体内示范。该装置的前体内实验表征显示它具有在体内应用中具有有前景的灵敏度,信号分辨率和机电稳定性。数字遥测最小化功耗,启用扩展间歇性数据收集。在大鼠6mm股段缺陷模型中植入设备,并且在三天之后,在手机期间无线地获取数据并与相应的射线照相视频同步,验证传感器在实时非侵入地测量应变的能力。这些数据在一起表示传感器是一种有希望以样本特异性方式量化组织力学的有希望的技术,便于更详细地研究机械环境在动态骨愈合和重塑过程中的作用。

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