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Development of an instrumented spinal cord surrogate using optical fibers: A feasibility study

机译:使用光纤开发仪表脊髓替代物:可行性研究

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摘要

In vitro replication of traumatic spinal cord injury is necessary to understand its biomechanics and to improve animal models. During a traumatic spinal cord injury, the spinal cord withstands an impaction at high velocity. In order to fully assess the impaction, the use of spinal canal occlusion sensor is necessary. A physical spinal cord surrogate is also often used to simulate the presence of the spinal cord and its surrounding structures. In this study, an instrumented physical spinal cord surrogate is presented and validated. The sensing is based on light transmission loss observed in embedded bare optical fibers subjected to bending.
机译:在体外复制创伤脊髓损伤是必要的,以了解其生物力学和改善动物模型。 在创伤性脊髓损伤期间,脊髓处于高速度的撞击。 为了完全评估识别,需要使用脊柱堵塞传感器。 物理脊髓替代物也经常用于模拟脊髓及其周围结构的存在。 在这项研究中,介绍和验证了仪表化的物理脊髓替代物。 感测基于在经过弯曲的嵌入的裸光纤中观察到的光传输损耗。

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