An Overview of Methods for Cardiac Rhythm Detection in Zebrafish

斑马鱼 节奏 生物 计算机科学 计算生物学 内科学 医学 遗传学 基因
作者
Fiorency Santoso,Ali Farhan,Agnes L. Castillo,Nemi Malhotra,Ferry Saputra,Kevin Adi Kurnia,Kelvin H.‐C. Chen,Jong‐Chin Huang,Jung‐Ren Chen,Chung‐Der Hsiao
出处
期刊:Biomedicines [Multidisciplinary Digital Publishing Institute]
卷期号:8 (9): 329-329 被引量:29
标识
DOI:10.3390/biomedicines8090329
摘要

The heart is the most important muscular organ of the cardiovascular system, which pumps blood and circulates, supplying oxygen and nutrients to peripheral tissues. Zebrafish have been widely explored in cardiotoxicity research. For example, the zebrafish embryo has been used as a human heart model due to its body transparency, surviving several days without circulation, and facilitating mutant identification to recapitulate human diseases. On the other hand, adult zebrafish can exhibit the amazing regenerative heart muscle capacity, while adult mammalian hearts lack this potential. This review paper offers a brief description of the major methodologies used to detect zebrafish cardiac rhythm at both embryonic and adult stages. The dynamic pixel change method was mostly performed for the embryonic stage. Other techniques, such as kymography, laser confocal microscopy, artificial intelligence, and electrocardiography (ECG) have also been applied to study heartbeat in zebrafish embryos. Nevertheless, ECG is widely used for heartbeat detection in adult zebrafish since ECG waveforms' similarity between zebrafish and humans is prominent. High-frequency ultrasound imaging (echocardiography) and modern electronic sensor tag also have been proposed. Despite the fact that each method has its benefits and limitations, it is proved that zebrafish have become a promising animal model for human cardiovascular disease, drug pharmaceutical, and toxicological research. Using those tools, we conclude that zebrafish behaviors as an excellent small animal model to perform real-time monitoring for the developmental heart process with transparent body appearance, to conduct the in vivo cardiovascular performance and gene function assays, as well as to perform high-throughput/high content drug screening.
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