Lu Chixiang, Chen Kai, Qiu Heng, Chen Xiaojun, Chen Gu, Qi Xiaojuan, Jiang Haibo
Department of Chemistry, The University of Hong Kong, Hong Kong, China.
School of Molecular Sciences, The University of Western Australia, Perth, WA, Australia.
Nat Commun. 2024 Jun 1;15(1):4677. doi: 10.1038/s41467-024-49125-z.
Electron microscopy (EM) revolutionized the way to visualize cellular ultrastructure. Volume EM (vEM) has further broadened its three-dimensional nanoscale imaging capacity. However, intrinsic trade-offs between imaging speed and quality of EM restrict the attainable imaging area and volume. Isotropic imaging with vEM for large biological volumes remains unachievable. Here, we developed EMDiffuse, a suite of algorithms designed to enhance EM and vEM capabilities, leveraging the cutting-edge image generation diffusion model. EMDiffuse generates realistic predictions with high resolution ultrastructural details and exhibits robust transferability by taking only one pair of images of 3 megapixels to fine-tune in denoising and super-resolution tasks. EMDiffuse also demonstrated proficiency in the isotropic vEM reconstruction task, generating isotropic volume even in the absence of isotropic training data. We demonstrated the robustness of EMDiffuse by generating isotropic volumes from seven public datasets obtained from different vEM techniques and instruments. The generated isotropic volume enables accurate three-dimensional nanoscale ultrastructure analysis. EMDiffuse also features self-assessment functionalities on predictions' reliability. We envision EMDiffuse to pave the way for investigations of the intricate subcellular nanoscale ultrastructure within large volumes of biological systems.
电子显微镜(EM)彻底改变了可视化细胞超微结构的方式。体积电子显微镜(vEM)进一步拓展了其三维纳米级成像能力。然而,EM成像速度与质量之间固有的权衡限制了可实现的成像面积和体积。对大体积生物样本进行各向同性的vEM成像仍然无法实现。在此,我们开发了EMDiffuse,这是一套利用前沿图像生成扩散模型来增强EM和vEM能力的算法。EMDiffuse能够生成具有高分辨率超微结构细节的逼真预测结果,并且仅通过一对300万像素的图像就能在去噪和超分辨率任务中进行微调,展现出强大的可转移性。EMDiffuse在各向同性vEM重建任务中也表现出色,即使在没有各向同性训练数据的情况下也能生成各向同性体积。我们通过从不同vEM技术和仪器获得的七个公共数据集生成各向同性体积,证明了EMDiffuse的稳健性。生成的各向同性体积能够实现精确的三维纳米级超微结构分析。EMDiffuse还具有对预测可靠性的自我评估功能。我们设想EMDiffuse为研究大体积生物系统内复杂的亚细胞纳米级超微结构铺平道路。