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Assembly of Modular Tissue Structure of Micro-Fibers Using Magnetic Force and Capillary Force

机译:利用磁力和毛细管力组装微纤维的模块化组织结构

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This paper proposes a 3D assembly method of aligned fiber-structure such as a human skeletal muscle tissue. The innovative point is assembly method of fiber-structure consists of artificial modular micro-fibers. The magnetite particles are included inside of both ends of micro-fibers for “Assembly”, “Positioning” and “Fixation” of micro-fibers, while the capillary force is also used to bundle several fibers tightly. Several different kinds of fibers are fabricated and assembled to form the tissue like structure. In this paper, the muscle fiber and sensor fiber, which has spherical microsensors inside, are used for demonstration of the proof of our concept. After the assembly, the micro-fibers were successfully fused to form a tissue like structure with highly arranged cells, where the microsensors could be used to monitor the inner state of the tissue.
机译:本文提出了一种对齐的纤维结构(例如人体骨骼肌组织)的3D组装方法。创新点是由人工模块化微纤维组成的纤维结构组装方法。磁铁矿颗粒包含在微纤维的两端,用于微纤维的“组装”,“定位”和“固定”,而毛细作用力也用于紧密捆扎多根纤维。几种不同类型的纤维被制造和组装以形成组织状结构。在本文中,肌肉纤维和传感器纤维(内部具有球形微传感器)用于证明我们的概念。组装后,微纤维被成功融合以形成具有高度排列细胞的组织状结构,其中微传感器可用于监测组织的内部状态。

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