
1. Do TT, Siegert A, Domart F, Hahn F, Zeising C, Muth S, Pape C, Kusch K, Dresbach T, Rizzoli SO, Petrovic A, Fernández-Busnadiego R.
A correlative workflow for synaptic imaging by cryo-electron tomography
Structure. 2026 Mar 24:S0969-2126(26)00059-6. doi: 10.1016/j.str.2026.02.017. Online ahead of print.
2. Hashemi S, Shafiee S, Tetzlaff C.
Robust input disentanglement through dendritic
calcium–mediated action potentials
calcium–mediated action potentials
Proc Natl Acad Sci USA. 2026 Feb 24;123(8):e2515371123. doi: 10.1073/pnas.2515371123. Epub 2026 Feb 20.
3. Luboeinski J, Schmitt S, Shafiee S, Hater T, Bösch F, Tetzlaff C.
Plastic Arbor: A modern simulation framework for synaptic plasticity –
From single synapses to networks of morphological neurons
From single synapses to networks of morphological neurons
PLoS Comput Biol. 2026 Feb 12;22(2):e1013926. doi: 10.1371/journal.pcbi.1013926
4. Petkovic J, Eggl MF, Pathirana D, Chater TE, Hasenauer J, Rizzoli SO, Tchumatchenko T.
Push-and-pull protein dynamics leads to log-normal synaptic sizes
and probabilistic multi-spine plasticity
and probabilistic multi-spine plasticity
bioRxiv. 2026.01. 29.702571. doi: doi.org/10.64898/2026.01.29.702571
5. Pöschel S, Müller M.
Quantitative imaging of mitochondrial redox conditions
at the single-organelle level
at the single-organelle level
Mitochondrion. 2026 Mar 13:102147. doi: 10.1016/j.mito.2026.102147. Online ahead of print.
6. Shafiee S, Schmitt S, Tetzlaff C.
Dendritic heterosynaptic plasticity arises from calcium-based input learning
Commun Biol. 2026 Feb 20;9(1):382. doi: 10.1038/s42003-026-09719-3.
7. Taban D, Jungblut M, Budiarta M, Helmerich DA, Kiesel C, Plutkis SE, Lavis LD,
Krah D, Shaib AH, Doose S, Kollmannsberger P, Rizzoli SO, Beliu G, Sauer M.
Krah D, Shaib AH, Doose S, Kollmannsberger P, Rizzoli SO, Beliu G, Sauer M.
Nanoscale imaging of expanded cells and proteins
with spontaneously blinking dyes
with spontaneously blinking dyes
BioRxiv 2026.doi: 10.64898/2026.02.23.707413
