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Concurrent connection of embryonic chick heart using a microfluidic device for Organ-Explant-Chip

机译:使用微流体装置对器官外乳剂的胚胎小鸡心脏并发连接

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We propose a concurrent microvascular connection method called suction-induced vascular fixation (SVF) method for the achievement of Organ-Explant-Chip which is a biologically-designed simulator having biological materials such as cells, tissues, and organs. The advantages of proposed method with using a microfluidic device are as follows: (1) operation of flexible objects (blood vessels), (2) alignment the blood vessels concurrently, and (3) reduction of the DOFs of the blood vessels. From the experimental results, we confirmed that four cardiovascular of the explanted embryonic chick heart can be induced into the fabricated microfluidic device concurrently. We have also succeeded in construction of hybrid circulatory system between artifacts and embryonic chick heart, and monitoring the response of the heart of chick embryo by supplying the culture medium.
机译:我们提出一种称为抽吸血管固定(SVF)方法的并发微血管连接方法,用于实现有机铝膜的方法,该方法是具有生物学材料的生物设计的模拟器,例如细胞,组织和器官。使用微流体装置的提出方法的优点如下:(1)柔性物体(血管)的操作,(2)同时对准血管,(3)减少血管的DOF。从实验结果来看,我们证实了促进胚胎雏心的四种心血管可以同时诱导到制造的微流体装置中。我们还成功地建造了伪影和胚胎心脏之间的混合循环系统,并通过提供培养基来监测小鸡胚胎心脏的响应。

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