Ruan Xiongtao, Mueller Matthew, Liu Gaoxiang, Görlitz Frederik, Fu Tian-Ming, Milkie Daniel E, Lillvis Joshua L, Kuhn Alexander, Gan Chong Johnny, Hong Jason Li, Herr Chu Yi Aaron, Hercule Wilmene, Nienhaus Marc, Killilea Alison N, Betzig Eric, Upadhyayula Srigokul
Department of Molecular and Cell Biology, University of California, Berkeley, Berkeley, CA, US.
Howard Hughes Medical Institute, Berkeley, CA, US.
Nat Methods. 2024 Dec;21(12):2342-2352. doi: 10.1038/s41592-024-02475-4. Epub 2024 Oct 17.
Light sheet microscopy is a powerful technique for high-speed three-dimensional imaging of subcellular dynamics and large biological specimens. However, it often generates datasets ranging from hundreds of gigabytes to petabytes in size for a single experiment. Conventional computational tools process such images far slower than the time to acquire them and often fail outright due to memory limitations. To address these challenges, we present PetaKit5D, a scalable software solution for efficient petabyte-scale light sheet image processing. This software incorporates a suite of commonly used processing tools that are optimized for memory and performance. Notable advancements include rapid image readers and writers, fast and memory-efficient geometric transformations, high-performance Richardson-Lucy deconvolution and scalable Zarr-based stitching. These features outperform state-of-the-art methods by over one order of magnitude, enabling the processing of petabyte-scale image data at the full teravoxel rates of modern imaging cameras. The software opens new avenues for biological discoveries through large-scale imaging experiments.
光片显微镜是一种用于亚细胞动力学和大型生物样本的高速三维成像的强大技术。然而,对于单个实验,它通常会生成大小从数百吉字节到拍字节不等的数据集。传统的计算工具处理此类图像的速度远远慢于获取图像的时间,并且由于内存限制常常完全失败。为应对这些挑战,我们推出了PetaKit5D,这是一种用于高效处理拍字节规模光片图像的可扩展软件解决方案。该软件集成了一套针对内存和性能进行优化的常用处理工具。显著的进步包括快速图像读取器和写入器、快速且内存高效的几何变换、高性能的理查森-鲁西去卷积以及基于Zarr的可扩展拼接。这些功能比最先进的方法性能高出一个数量级以上,能够以现代成像相机的全太体素速率处理拍字节规模的图像数据。该软件通过大规模成像实验为生物学发现开辟了新途径。