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Painting with light-powered bacteria

机译:用光动力细菌绘画

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Self-assembly is a promising route for micro- and nano-fabrication with potential to revolutionise many areas of technology, including personalised medicine. Here we demonstrate that external control of the swimming speed of microswimmers can be used to self assemble reconfigurable designer structures in situ. We implement such ‘smart templated active self assembly’ in a fluid environment by using spatially patterned light fields to control photon-powered strains of motile Escherichia coli bacteria. The physics and biology governing the sharpness and formation speed of patterns is investigated using a bespoke strain designed to respond quickly to changes in light intensity. Our protocol provides a distinct paradigm for self-assembly of structures on the 10?μm to mm scale.
机译:自组装是微细加工和纳米加工的有前途的途径,具有革新包括个性化医学在内的许多技术领域的潜力。在这里,我们证明了微游泳者游泳速度的外部控制可用于原位自组装可重构设计器结构。我们通过在空间环境中使用空间图案化的光场来控制运动源性大肠杆菌的光子驱动菌株,来实现这种“智能模板主动自我组装”。使用定制应变来研究控制图案的清晰度和形成速度的物理和生物学,该定制应变旨在对光强度的变化做出快速响应。我们的协议为10?μm到mm规模的结构自组装提供了独特的范例。

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