Sun Peng, Zhang Yingla, Zhao Feng, Wu Jian-Ping, Pun Sio Hang, Peng Cheng, Du Meide, Vai Mang I, Liu Dong, Chen Fangyi
State Key Laboratory of Analog and Mixed-Signal VLSI, University of Macau, Taipa, China.
Department of Electrical and Computer Engineering, Faculty of Science and Technology, University of Macau, Taipa, China.
Front Cell Neurosci. 2018 Aug 21;12:257. doi: 10.3389/fncel.2018.00257. eCollection 2018.
Zebrafish () larvae are widely used to study otic functions because they possess all five typical vertebrate senses including hearing and balance. Powerful genetic tools and the transparent body of the embryo and larva also make zebrafish a unique vertebrate model to study otic development. Due to its small larval size and moisture requirement during experiments, accurately acquiring the vestibulo-ocular reflex (VOR) of zebrafish larva is challenging. In this report, a new VOR testing device has been developed for quantifying linear VOR (LVOR) in zebrafish larva, evoked by the head motion about the earth horizontal axis. The system has a newly designed larva-shaped chamber, by which live fish can be steadily held without anesthesia, and the system is more compact and easier to use than its predecessors. To demonstrate the efficacy of the system, the LVORs in wild-type (WT), and morphant zebrafish larvae were measured and the results showed that LVOR amplitudes were consistent with the morphological changes of otoliths induced by morpholino oligonucleotides (MO). Our study represents an important advance to obtain VOR and predict the vestibular conditions in zebrafish.
斑马鱼幼体被广泛用于研究听觉功能,因为它们具备包括听觉和平衡感在内的所有五种典型的脊椎动物感官。强大的基因工具以及胚胎和幼体透明的身体,也使斑马鱼成为研究听觉发育的独特脊椎动物模型。由于其幼体尺寸小且实验过程中对湿度有要求,准确获取斑马鱼幼体的前庭眼反射(VOR)具有挑战性。在本报告中,已开发出一种新的VOR测试装置,用于量化斑马鱼幼体中由绕地球水平轴的头部运动诱发的线性VOR(LVOR)。该系统有一个新设计的幼体形状的腔室,通过它可以在不麻醉的情况下稳定地固定活体鱼,并且该系统比其前代产品更紧凑、更易于使用。为了证明该系统的有效性,对野生型(WT)、 和 吗啉代寡核苷酸(MO)诱导的耳石形态变化一致。我们的研究代表了在获取VOR和预测斑马鱼前庭状况方面的一项重要进展。 (原文中部分表述似乎不完整,翻译可能会存在一定局限性)