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An open source microcontroller based flume for evaluating swimming performance of larval, juvenile, and adult zebrafish

机译:基于开源微控制器的水槽,用于评估幼体,幼年和成年斑马鱼的游泳性能

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摘要

Zebrafish are a preferred vertebrate model for delineating genotype-phenotype relationships. One of the most studied features of zebrafish is their exceptional swimming ability. By 7 days postfertilization (dpf), zebrafish spend over two-thirds of their time engaged in spontaneous swimming activity and several months later they are capable of attaining some of the fastest swimming velocities relative to body length ever recorded in the laboratory. However, laboratory-assembled flumes capable of achieving the slow flow velocities characteristics of larvae as well as the relatively fast maximal velocities of adults have not been described in sufficient detail to allow easy replication. Here we describe an easily assembled, open-source zebrafish-scaled flume for assessing swimming performance. The flume uses two independent spherical-impeller pumps modulated by a microcontroller to achieve flow velocities ranging from 1 to 70 cm s−1. The microcontroller also monitors water temperature and flow velocity and sends these data to a personal computer for real-time display and storage. Incremental protocols for assessing maximal swimming speed (Umax) were developed, stored in custom software, and then uploaded to the microcontroller in order to assess performance of larval (14, 21, 28 dpf), juvenile (35, 42 dpf), and adult (8, 22 month) zebrafish. The flume had sufficient range and sensitivity to detect developmental changes in Umax of larvae and juveniles, an 18–24% faster Umax of adult males vs. females, and a 14–20% age-related reduction in Umax for the oldest zebrafish. Detailed information is provided to assemble and operate this low-cost, versatile, and reliable tool for assessing zebrafish swimming performance.
机译:斑马鱼是描述基因型-表型关系的优选脊椎动物模型。斑马鱼最受研究的特征之一是其出色的游泳能力。到受精后7天(dpf),斑马鱼将其三分之二的时间用于自发游泳活动,几个月后,它们能够达到相对于实验室记录的体长最快的游泳速度。然而,没有足够详细地描述能够实现幼虫的缓慢流速特征以及成虫相对较快的最大流速的实验室组装的水槽,以使其易于复制。在这里,我们描述了一种易于组装的开源斑马鱼鳞状水槽,用于评估游泳成绩。该水槽使用两个由微控制器调节的独立球形叶轮泵,以实现1到70 cm s -1 的流速。微控制器还监视水温和流速,并将这些数据发送到个人计算机以进行实时显示和存储。开发了用于评估最大游泳速度(Umax)的增量协议,存储在自定义软件中,然后上传到微控制器,以评估幼虫(14、21、28 dpf),少年(35、42 dpf)和成人的性能(8月22日)斑马鱼。该水槽具有足够的范围和灵敏度,可以检测幼虫和幼体的Umax发育变化,成年雄性和雌性的Umax快18-24%,并且年龄最大的斑马鱼的Umax减少14-20%。提供了详细信息,以组装和操作这种低成本,多功能且可靠的工具,以评估斑马鱼的游泳性能。

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