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Wireless sensor enables longitudinal monitoring of regenerative niche mechanics during rehabilitation that enhance bone repair

机译:无线传感器在康复期间,可以在康复期间对再生利基机械进行纵向监测,从而提高骨骼修复

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Mechanical loads exerted on the skeleton during activities such as walking are important regulators of bone repair, but dynamic biomechanical signals are difficult to measure inside the body. The inability to measure the mechanical environment in injured tissues is a significant barrier to developing integrative regenerative and rehabilitative strategies that can accelerate recovery from fracture, segmental bone loss, and spinal fusion. Here we engineered an implantable strain sensor platform and longitudinally measured strain across a bone defect in real-time throughout rehabilitation. The results showed that load-sharing permitted by a load-sharing fixator initially delivered a two-fold increase in deformation magnitude, subsequently increased mineralized bridging by nearly three-fold, and increased bone formation by over 60%. These data implicate a critical role for early mechanical cues on the long term healing response as strain cycle magnitude at 1 week (before appreciable healing occurred) had a significant positive correlation with the long-term bone regeneration outcomes. Furthermore, we found that sensor readings correlated with the status of healing, suggesting a role for strain sensing as an X-ray-free healing assessment platform. Therefore, non-invasive strain measurements may possess diagnostic potential to evaluate bone repair and reduce clinical reliance on current radiation-emitting imaging methods. Together, this study demonstrates a promising framework to quantitatively develop and exploit mechanical rehabilitation strategies that enhance bone repair.
机译:在行走等活动期间施加在骨架上的机械负荷是骨骼修复的重要调节因子,但是动态的生物力学信号难以在身体内测量。无法测量受伤组织中的机械环境是一种显着的再生和康复策略,可以加速骨折,节段性骨质损失和脊柱融合的综合再生和康复策略。在这里,我们在整个康复过程中,在骨缺损中,设计了一种可植入的应变传感器平台和纵向测量的应变。结果表明,载荷 - 共用固定器允许的载荷共享最初递送了变形幅度的两倍增加,随后将矿化桥接增加了几乎三倍,并增加了超过60%的骨形成。这些数据对早期机械提示的关键作用对长期愈合响应的关键作用,因为在1周(发生在明显的愈合之前)的应变循环幅度与长期骨再生结果具有显着的正相关性。此外,我们发现传感器读数与愈合状态相关,表明应变感测为X射线愈合评估平台的作用。因此,非侵入性应变测量可能具有诊断潜力来评估骨修复并降低对电流辐射发射成像方法的临床依赖性。这项研究共同证明了一个有前途的框架,以定量发展和利用机械康复策略来增强骨骼修复。

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