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首页> 外文期刊>Journal of Engineering and Science in Medical Diagnostics and Therapy >Embedded Spherical Microlasers for In Vivo Diagnostic Biomechanical Performances
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Embedded Spherical Microlasers for In Vivo Diagnostic Biomechanical Performances

机译:嵌入式球体内的微型激光器诊断生物力学性能

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In this article, we propose to use spherical microlasers that can be attached to the surface of bones for in vivo strain monitoring applications. The sensing element is made of mixing polymers, namely, PEGDA-700 (Sigma Aldrich, St. Louis, MO) and Thiocure TMPMP (Evan Chemetics, Teaneck, NJ) at 4:1 ratio in volume doped with rhodamine 6G (Sigma Aldrich, St. Louis, MO) laser dye. Solid-state microlasers are fabricated by curing droplets from the liquid mixture using ultraviolet (UV) light. The sensing principle relies on morphology-dependent resonances; any changes in the strain of the bone causes a shift of the optical resonances, which can be monitored. The specimen is made of a simulated cortical bone fabricated with photopolymer resin via an additive manufacturing process. The light path within the resonator is found to be about perpendicular to the normal stress' direction caused by a bending moment. Therefore, the sensor measures the strain due to bending indirectly using the Poisson effect. Two experiments are conducted: 1) negative bone deflection (called loading) and 2) positive bone deflection (called unloading) for a strain range from 0 to 2.35?×?10~(?3) m/m. Sensitivity values are ~19.489?and 19.660?nm/ε for loading and unloading experiments, respectively (percentage difference is less than 1%). In addition, the resolution of the sensor is 1?×?10~(?3) ? ε (m/m) and the maximum range is 11.58?×?10~(?3) ? ε (m/m). The quality factor of the microlaser is maintaining about constant (order of magnitude 10 4 ?) during the experiments. This sensor can be used when bone location accessibility is problematic.
机译:在本文中,我们建议使用球形微型激光器,可以附着在表面体内的骨头应变监测应用程序。混合聚合物,即pegda - 700(σ奥尔德里奇,圣路易斯,密苏里州)和Thiocure TMPMP(埃文蒂内克市,Chemetics NJ) 4:1比例体积掺杂罗丹明6 g(西格玛奥德里奇,圣。路易斯,密苏里州)激光染料。捏造的养护滴液体混合使用紫外(UV)光。依靠morphology-dependent原则共振;引起转变的光学共振,可以监控。模拟骨密质捏造通过加法制造光敏聚合物树脂的过程。对垂直于正常发现压力的方向由弯矩引起的。因此,传感器的应变措施弯曲间接使用泊松效应。进行的实验是:1)-骨偏转(称为加载),2)积极的骨头偏转(称为卸货)应变范围从0到2.35×? 10 ~ (? 3)m / m。~ 19.489吗?卸载实验,分别(百分比差异小于1%)。传感器的分辨率是1×? 10 ~ (3)?和最大范围是11.58×? 10 ~ (3)?(m / m)。保持恒定(数量级10在实验4 ?)。时使用的可访问性是骨骼位置有问题的。

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