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Autonomous Biological Cell Injection Based on Vision and Motion Control

机译:基于视觉和运动控制的自主生物细胞注射

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In this paper, an autonomous cell injection system based on vision and motion control is proposed for automatic batch injection of suspended biological cells. A plate for accommodating cells is specifically designed to hold and fix the suspended cells. The plate is fixed in a two-axis compliant micropositioning stage to transport cells to pre-planed positions. The cells are located using image-based visual servoing control. The injector used for biological cell micro-injection is actuated by a piezoelectric actuator, which not only provides a largerange displacement but also offers a compact size. In order to guarantee the injection accuracy, a learning-based adaptive control scheme is implemented to fulfill the cell injection task. The eggs of salmon are adopted as injecting targets for demonstration in experimental investigation. Experimental results reveal the effectiveness of the proposed approach.
机译:本文提出了一种基于视觉和运动控制的自主细胞注射系统,用于悬浮生物细胞的自动批量注射。用于容纳细胞的平板专门设计用于固定和固定悬浮的细胞。将该板固定在两轴顺应性微定位平台上,以将细胞运输到预定位置。使用基于图像的视觉伺服控制来定位单元。用于生物细胞微注射的注射器由压电致动器致动,该压电致动器不仅提供大范围的位移,而且还提供紧凑的尺寸。为了保证注入的准确性,实现了基于学习的自适应控制方案来完成细胞注入任务。鲑鱼卵被作为注射靶标进行实验研究。实验结果表明了该方法的有效性。

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