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A microfluidic device for quantitative investigation of zebrafish larvae’s rheotaxis

机译:一种用于定量研究斑马鱼幼虫流变性的微流体装置

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摘要

Zebrafish is a model organism for various sensory-motor biological studies. Rheotaxis, or the ability of zebrafish to orient and swim against the water stream, is a common behavior that involves multiple sensory-motor processes such as their lateral line and visual systems. Due to the lack of a controllable and easy-to-use assay, zebrafish rheotaxis at larval stages is not well-understood. In this paper, we report a microfluidic device that can be used to apply the flow stimulus precisely and repeatedly along the longitudinal axis of individual zebrafish larvae to study their coaxial rheotaxis. We quantified rheotaxis in terms of the response rate and location along the channel at various flow velocities (9.538 mm. sec(-1)). The larvae effectively exhibited a similarly high rheotactic response at low and medium velocities (9.5 and 19 mm. sec(-1)); however, at high velocity of 38 mm. sec(-1), despite sensing the flow, their rheotactic response decreased significantly. The flow velocity also affected the response location along the channel. At 9.5 mm. sec(-1), responses were distributed evenly along the channel length while, at 19 and 38 mm. sec(-1), the larvae demonstrated higher rheotaxis responses at the anterior and posterior ends of the channel, respectively. This result shows that although the response is similarly high at low and medium flow velocities, zebrafish larvae become more sensitive to the flow at medium velocity, demonstrating a modulated rheotactic behavior. Employing our device, further investigations can be conducted to study the sensory-motor systems involved in rheotaxis of zebrafish larvae and other fish species.
机译:斑马鱼是用于各种感觉运动生物学研究的模型生物。流变或斑马鱼定向并逆着水流游泳的能力是一种常见的行为,涉及多个感觉运动过程,例如其侧线和视觉系统。由于缺乏可控制且易于使用的测定方法,因此对斑马鱼幼虫阶段的流变性了解不足。在本文中,我们报告了一种微流控装置,该装置可用于沿着单个斑马鱼幼虫的纵轴精确重复地应用流动刺激,以研究其同轴流变特性。我们根据响应速率和沿通道在各种流速(9.538 mm。sec(-1))上的位置来量化流变。在中低速度(9.5和19 mm。sec(-1))下,幼虫有效地表现出了类似的高流变反应。但是,在38毫米的高速下。 sec(-1),尽管感觉到流量,但它们的流变响应却明显降低。流速也影响沿通道的响应位置。在9.5毫米处。 sec(-1),响应沿通道长度均匀分布,而分别为19和38 mm。 sec(-1),幼虫分别在通道的前端和后端表现出较高的流变反应。该结果表明,尽管在中低流速下响应同样很高,但斑马鱼幼虫对中速流速变得更加敏感,证明了其调节的流变行为。使用我们的设备,可以进行进一步的研究来研究涉及斑马鱼幼虫和其他鱼类流变性的感觉运动系统。

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