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Evaluation and optical control of somatic muscle micro bioactuator of channelrhodopsin transgenic Drosophila melanogaster

机译:视紫红质转基因果蝇果蝇体肌微生物致动器的评估和光学控制

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In this paper, we developed light-activated somatic muscle (body-wall muscle) from transgenic Drosophila melanogaster larvae expressing a blue light sensitive cation channel, channelrhodopsin-2, and incorporated it into a micro device. We successfully demonstrated that optogenetic stimulation using light pulses enabled control of contractile activity with a given temporal pattern. The contractile force was evaluated with varying light intensities and pulse widths. These results have shown that muscle-powered bioactuator system that combines light-activated muscle cells and microfabrication techniques is a useful model for the study of wet-robotics and muscle bioassays for investigating mechanical properties.
机译:在本文中,我们从表达蓝色光敏阳离子通道Channelrhodopsin-2的转基因果蝇(Drosophila melanogaster)幼虫中开发了光激活的体细胞(体壁肌肉),并将其整合到微型设备中。我们成功地证明了使用光脉冲的光遗传学刺激能够以给定的时间模式控制收缩活动。用变化的光强度和脉冲宽度评估收缩力。这些结果表明,结合了光激活肌肉细胞和微细加工技术的肌肉驱动生物致动器系统是研究湿机器人和肌肉生物测定以研究机械性能的有用模型。

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