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Automated Assembly of Vascular-Like Microtube With Repetitive Single-Step Contact Manipulation

机译:具有重复单步接触操作的类似血管的微管的自动组装

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Fabricated vessel-mimetic microtubes are essential for delivering sufficient nutrient to engineered composite tissues. In this paper, vascular-like microtubes are engineered by automated assembly of donut-shaped micromodules that embed fibroblast cells. A microrobotic system is set up with dual manipulators of 30-nm positioning resolution under an optical microscope. The system assembles the micromodules by repeated single-step pick-up motions. This process is specifically designed to avoid human interference and ensure high reproducibility for automation. We optimized the single-step motion by calibrating the key parameters (the micromodule dimensions) in a force analysis. The optimal motion achieved a 98% pick-up success rate. The automated repetitive single-step assembly is achieved by an algorithm that acquires the 3-D location and tracks the micromanipulator without being affected by low contrast. The accuracy of the acquired 3-D location was experimentally determined as approximately 1 pixel (2 μm under 4× magnification), and the tracking under different observation conditions is proved effective. Finally, we automatically assembled microtubes at 6 micromodules/min, sufficiently fast for fabricating macroscopic vessel-mimetic substitutes in biological applications.
机译:人造血管模拟微管对于向工程复合组织输送足够的营养至关重要。在本文中,通过自动组装嵌入成纤维细胞的甜甜圈形微模块来设计血管状微管。在光学显微镜下,使用具有30 nm定位分辨率的双操纵器建立微机器人系统。该系统通过重复的单步拾取动作组装微模块。此过程经过专门设计,可避免人为干扰并确保自动化的高度可重复性。我们通过在力分析中校准关键参数(微模块尺寸)来优化单步运动。最佳运动实现了98%的拾取成功率。自动重复单步组装是通过一种算法实现的,该算法可获取3-D位置并跟踪微操纵器,而不会受到低对比度的影响。通过实验确定获取的3-D位置的精度约为1像素(在4倍放大倍率下为2μm),并且在不同观察条件下的跟踪被证明是有效的。最后,我们以每分钟6个微模块的速度自动组装微管,该速度足以在生物学应用中制造宏观的模拟血管替代物。

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