Zebrafish is an intriguing model organism known for its remarkable cardiac regeneration capacity. Studying the contracting heart in vivo is essential for gaining insights into structural and functional changes in response to injuries. However, obtaining high-resolution and high-speed 4-dimensional (4D, 3D spatial + 1D temporal) images of the zebrafish heart to assess cardiac architecture and contractility remains challenging. In this context, an in-house light-sheet microscope (LSM) and customized computational analysis are used to overcome these technical limitations. This strategy, involving LSM system construction, retrospective synchronization, single cell tracking, and user-directed analysis, enables one to investigate the micro-structure and contractile function across the entire heart at the single-cell resolution in the transgenic Tg(myl7:nucGFP) zebrafish larvae. Additionally, we are able to further incorporate microinjection of small molecule compounds to induce cardiac injury in a precise and controlled manner. Overall, this framework allows one to track physiological and pathophysiological changes, as well as the regional mechanics at the single-cell level during cardiac morphogenesis and regeneration.
4D Light-sheet Imaging of Zebrafish Cardiac Contraction.
斑马鱼心脏收缩的4D光片成像
阅读:10
作者:Zhang Xinyuan, Saberigarakani Alireza, Almasian Milad, Hassan Sohail, Nekkanti Manasa, Ding Yichen
| 期刊: | Jove-Journal of Visualized Experiments | 影响因子: | 1.000 |
| 时间: | 2024 | 起止号: | 2024 Jan 5; (203):10 |
| doi: | 10.3791/66263 | 种属: | Fish |
| 研究方向: | 心血管 | ||
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