Chen Haitao, Li Kevin, Kreiss Lucas, Reamey Paul, Pierce Lain X, Zhang Ralph, Da Luz Ricardo, Chaware Amey, Kim Kanghyun, Cook Clare B, Yang Xi, Lerner Joshua F, Doman Jed, Bègue Aurélien, Efromson John, Harfouche Mark, Horstmeyer Gregor, McCarroll Matthew N, Horstmeyer Roarke
Department of Biomedical Engineering, Duke University, Durham, NC, USA.
Ramona Optics Inc., Durham, NC, USA.
bioRxiv. 2025 Jul 8:2025.07.07.661868. doi: 10.1101/2025.07.07.661868.
Understanding the behavioral and morphological dynamics of freely moving model organisms like the zebrafish larvae requires accurate, high-throughput 3D analysis. However, traditional single-view 2D video tracking fails to capture the full scope of natural 3D movements and postural dynamics. Here, we present a novel high-throughput 24-camera array microscope with a co-designed "mirrored well plate" that allows for snapshot imaging of up to 48 wells over a 118 mm × 82 mm field of view from two orthogonal directions (i.e., a top-view and side-view). Accurate 3D position estimation and tracking is achieved with an efficient machine learning algorithm that scales well to high-throughput measurements. The proposed approach automates parallelized 3D model organism behavioral analysis, providing 3D skeletal tracking, swim bladder morphological dynamics, and kinematics of up to 48 freely swimming zebrafish larvae at up to several hundred frames per second. The result is an efficient and scalable solution for high-throughput 3D behavioral studies with broad compatibility with standard workflows across laboratories and procedures working with pharmacology, toxicology, and neuroscience.
了解像斑马鱼幼虫这样自由游动的模式生物的行为和形态动力学需要精确的高通量三维分析。然而,传统的单视角二维视频跟踪无法捕捉自然三维运动和姿势动力学的全貌。在这里,我们展示了一种新型的高通量24相机阵列显微镜,它带有一个共同设计的“镜像孔板”,可以从两个正交方向(即顶视图和侧视图)在118毫米×82毫米的视野范围内对多达48个孔进行快照成像。通过一种高效的机器学习算法实现了精确的三维位置估计和跟踪,该算法能够很好地扩展到高通量测量。所提出的方法实现了并行化三维模式生物行为分析的自动化,提供三维骨骼跟踪、鳔形态动力学以及多达48条自由游动的斑马鱼幼虫的运动学,速度可达每秒数百帧。其结果是一种高效且可扩展的高通量三维行为研究解决方案,与跨实验室的标准工作流程以及涉及药理学、毒理学和神经科学的程序具有广泛的兼容性。