Hua Yunfeng, Laserstein Philip, Helmstaedter Moritz
Department of Connectomics, Max Planck Institute of Brain Research, Max-von-Laue-Strasse 4, D-60438 Frankfurt, Germany.
Nat Commun. 2015 Aug 3;6:7923. doi: 10.1038/ncomms8923.
Large-scale connectomics requires dense staining of neuronal tissue blocks for electron microscopy (EM). Here we report a large-volume dense en-bloc EM staining protocol that overcomes the staining gradients, which so far substantially limited the reconstructable volumes in three-dimensional (3D) EM. Our protocol provides densely reconstructable tissue blocks from mouse neocortex sized at least 1 mm in diameter. By relaxing the constraints on precise topographic sample targeting, it makes the correlated functional and structural analysis of neuronal circuits realistic.
大规模连接组学需要对神经元组织块进行密集染色以用于电子显微镜(EM)研究。在此,我们报告了一种大体积密集整块EM染色方案,该方案克服了染色梯度问题,而染色梯度迄今为止在很大程度上限制了三维(3D)EM中可重建的体积。我们的方案能够从直径至少为1毫米的小鼠新皮质中提供可密集重建的组织块。通过放宽对精确地形学样本靶向的限制,它使神经元回路的相关功能和结构分析成为现实。