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In vivo, high-throughput imaging for functional characterization of the embryonic zebrafish heart

机译:在体内,高通量成像用于胚胎斑马鱼心脏功能表征

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High-throughput imaging allows characterizing the phenotype of large populations of cells, organs or organisms. Studying the function of organs in similar ways remains a challenge. Here, we present a semi-automatic, in vivo, high-throughput imaging and analysis method to characterize cardiac function in the embryonic heart of developing zebrafish larvae subjected to an increase of breeding temperature. We sequentially acquire high-speed movies of the beating heart by automatically visiting embryos arranged in a matrix of wells placed on a motorized microscope stage. We then estimate the radial heart-wall contraction velocity over time for each fish at various temperature settings. Next, we synchronize these signals to obtain an average velocity signature that characterizes heart function at each temperature. We observe a 47 ± 5% increase in the heart rate as the breeding temperature increases from 28°C to 38.1°C (n = 10), accompanied by a change of the contraction pattern that is consistent within the population. Specifically, we quantified intra-population variabilities of the velocity amplitude signal (18%–30%) and the heartbeat length (4%–8%). We expect our approach to be highly relevant for early identification of functional abnormalities during heart development, screening fish carrying genetic defects, or for quantitatively evaluating the effect of pharmacological agents.
机译:高通量成像允许表征大量细胞,器官或生物的表型。在类似方式中研究器官的功能仍然是一个挑战。在这里,我们提出了半自动,体内高通量的成像和分析方法,以表征在发育斑马鱼幼虫的胚胎心脏中的心脏功能,经受育种温度的增加。我们通过自动访问在放置在电动显微镜阶段的井矩阵中的胚胎中自动访问胚胎来依次获得跳动心脏的高速电影。然后,我们在各种温度设定下估计每种鱼的径向心脏壁收缩速度随时间随时间估计。接下来,我们将这些信号同步以获得平均速度特征,该速度特征在每个温度下表征心脏功能。我们观察47±由于育种温度从28&#x00b0增加到38.1° c(n = 10)增加了5%的心率增加,伴随着群体内一致的收缩模式的变化。具体地,我们量化了速度幅度信号(18%-30%)和心跳长度(4%-8%)的群体内变形性。我们希望我们的方法对心脏发育期间的功能异常的早期鉴定,筛查携带遗传缺陷的鱼类,或用于定量评估药理剂的效果。

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