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Microfluidic device for automated generation of toroidal-like spheroids

机译:用于自动产生环形球体的微流体装置

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In the field of tissue engineering, it is called for to automate generation of various-shaped spheroids. We propose a micro fluidic device that generates rotational flow for producing toroidal-like spheroid. This paper reports the concept of construction of toroidal-like spheroid, designs of microchannels, and fundamental verification about generation of rotational flow in the device using simulation and experiment using created mi-crochannels. Concept of construction is non-contact operation in a continuous flow stimulus by using centrifugal force of rotational flow. Designs of the micro fluidic device was optimized to generate micro-rotational flow, and the results of flow simulation models show that rotational flow is generated at the flow velocity more than fixed. We made these designs. The large size channel was made with 3D printer and the small channel was made by poly-dimethysiloxane (PDMS) molding, and generation of rotational flow was observed in an experiment using particles. In both types of channels, particles were rotated similar to the simulations.
机译:在组织工程领域,要求自动生成各种形状的球体。我们提出了一种微流体装置,该装置产生旋转流以产生环形的球体。本文报道了环形球体的构造概念,微通道设计以及使用模拟的和使用微通道进行的实验来验证设备中旋转流的产生的基本验证。结构的概念是通过利用旋转流的离心力在连续的流动刺激中进行非接触式操作。优化了微流体装置的设计以产生微旋转流,并且流模拟模型的结果表明,旋转流是在比固定速度更大的流速下产生的。我们做了这些设计。大通道由3D打印机制作,小通道由聚二甲基硅氧烷(PDMS)成型,在使用颗粒的实验中观察到旋转流的产生。在两种类型的通道中,粒子的旋转都类似于模拟。

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