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Surface acoustic waves enable rotational manipulation of Caenorhabditis elegans

机译:表面声波使胶带杆菌的旋转操纵能够旋转操作

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摘要

Controllable, precise, and stable rotational manipulation of model organisms is valuable in many biomedical, bioengineering, and biophysics applications. We present an acoustofluidic chip capable of rotating Caenorhabditis elegans (C. elegans) in both static and continuous flow in a controllable manner. Rotational manipulation was achieved by exposing C. elegans to a surface acoustic wave (SAW) field that generated a vortex distribution inside a microchannel. By selectively activating interdigital transducers, we achieved bidirectional rotation of C. elegans, namely counterclockwise and clockwise, with on-demand switching of rotation direction in a single chip. In addition to continuous rotation, we also rotated C. elegans in a step-wise fashion with a step angle as small as 4 degrees by pulsing the signal duration of SAW from a continuous signal to a pulsed signal down to 1.5 ms. Using this device, we have clearly imaged the dopaminergic neurons of C. elegans with pdat-1:GFP expression, as well as the vulval muscles and muscle fibers of the worm with myo-3::GFP fusion protein expression in different orientations and three dimensions. These achievements are difficult to realize through conventional (i.e., non-confocal) microscopy. The SAW manipulations did not detectably affect the health of the model organisms. With its precision, controllability, and simplicity in fabrication and operation, our acoustofluidic devices will be well-suited for model organism studies.
机译:模型生物的可控性,精确和稳定的旋转操纵在许多生物医学,生物工程和生物物理应用中具有重要价值。我们介绍了一种能够以可控的方式旋转静态和连续流动的Caenorhabditis elegans(C. elegans)的声毒流体芯片。通过将C.杆状物暴露于在微通道内部产生涡流分布的表面声波(锯)场来实现旋转操作。通过选择性地激活叉指传感器,我们通过在单个芯片中随时逆时针和顺时针方向地实现了C.杆状杆的双向旋转,即逆时针和顺时针方向。除了连续旋转之外,还通过脉冲从连续信号到1.5ms的脉冲信号脉冲锯的信号持续时间,在步进时的时尚时代,在步进时的时尚时,我们还在逐步旋转中旋转C.兆那。使用该装置,我们已经用PDAT-1:GFP表达和蠕虫的外阴肌肉和肌肉肌肉纤维,在不同取向和三个方面。这些成就难以通过常规(即非共焦)显微镜来实现。 SAW操纵没有可检测地影响模型生物的健康。在制造和操作方面的精确度,可控性和简单性,我们的声流量器件将非常适合模型生物学研究。

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