Accès ouvert
2026
article
OpenAlex
Jinghui Liu, Elisa Nerli, Charlie Duclut, Amit Singh Vishen et autres
Organ injury triggers nonneuronal electric currents essential for regeneration. However, the mechanisms by which electrical signals are generated, sensed, and transmitted upon damage to promote organ growth remain unclear. Here, we uncover that organ repair relies on dynamic electrochemical coupling between membrane …
de, fr
(code pays fourni par la source)
Accès ouvert
2026
article
OpenAlex
Jaakko I. Lehtimäki, Jingtao Lilue, Margarida R. Cruz, Mario Del Rosario et autres
Multipolar migration is a conserved neuronal migration mode in the developing brain, enabling emerging neurons to navigate in crowded environments and reach precise laminar positions. Yet, how these cells interpret external cues to guide their migration is not fully understood. We investigate …
pt, de, gb
(code pays fourni par la source)
Accès ouvert
2025
preprint
OpenAlex
Jaakko I. Lehtimäki, Jingtao Lilue, Mario Del Rosario, Elisa Nerli et autres
Summary Multipolar migration is a conserved neuronal migration mode in the developing brain, enabling emerging neurons to navigate crowded environments and reach precise laminar positions. Yet how these cells interpret external cues to guide their migration remains unclear. We investigate this question …
fi, pt, cn, us, de, gb
(code pays fourni par la source)
Accès ouvert
2025
preprint
OpenAlex
Sascha M. Kuhn, Elisa Nerli, Jifeng Liu, Sylvia Kaufmann et autres
Abstract Genetically encoded fluorescent biosensors are widely used to monitor small molecule and ion levels in living cells. Quantitative FRET and FLIM sensors and highly sensitive intensiometric sensors have been developed for many analytes. Notwithstanding notable advances over the last years, a …
de, ch
(code pays fourni par la source)
Accès ouvert
2025
preprint
OpenAlex
Jinghui Liu, Elisa Nerli, Charlie Duclut, Amit Singh Vishen et autres
Abstract Organ injury triggers non-neuronal electric currents essential for regeneration. Yet, the mechanisms by which electrical signals are generated, sensed and transmitted upon damage to promote organ growth remain unclear. Here, we uncover that organ regeneration relies on dynamic electrochemical coupling between …
de, fr
(code pays fourni par la source)
Accès ouvert
2023
article
OpenAlex
Maurício Rocha-Martins, Elisa Nerli, Jenny Kretzschmar, MARTIN G. WEIGERT et autres
de, pt, ch
(code pays fourni par la source)
Accès ouvert
2023
article
OpenAlex
Elisa Nerli, Jenny Kretzschmar, Tommaso Bianucci, Maurício Rocha-Martins et autres
de, pt
(code pays fourni par la source)
Accès ouvert
2022
preprint
OpenAlex
Elisa Nerli, Jenny Kretzschmar, Tommaso Bianucci, Maurício Rocha-Martins et autres
Summary Correct nervous system development depends on the timely differentiation of progenitor cells into neurons. While the output of progenitor differentiation is well investigated at the population and clonal level, the possibilities and constraints for fate decisions of specific progenitors over development …
de, pt
(code pays fourni par la source)
Accès ouvert
2021
preprint
OpenAlex
Maurício Rocha-Martins, Jenny Kretzschmar, Elisa Nerli, MARTIN G. WEIGERT et autres
Abstract While the design of industrial products is often optimized for the sequential assembly of single components, organismal development is hallmarked by the concomitant occurrence of tissue growth and organization. Often this means that proliferating and differentiating cells occur at the same …
de, pt
(code pays fourni par la source)
Accès ouvert
2020
article
OpenAlex
Elisa Nerli, Maurício Rocha-Martins, Caren Norden
During brain development, progenitor cells need to balanceproliferation and differentiation in order to generate different neurons in the correct numbers and proportions. Currently, the patterns of multipotent progenitor divisions that lead to neurogenic entry and the factors that regulate them are not …
de, pt
(code pays fourni par la source)
Accès ouvert
2020
peer-review
OpenAlex
Elisa Nerli, Maurício Rocha-Martins, Caren Norden
A quantitative live imaging approach unveils that earliest neurogenic progenitors in the vertebrate retina arise from asymmetric divisions and that this asymmetry involves Notch signalling through the endocytic pathway.
de, pt
(code pays fourni par la source)
Accès ouvert
2020
article
OpenAlex
Christoph Zechner, Elisa Nerli, Caren Norden
During development, cells need to make decisions about their fate in order to ensure that the correct numbers and types of cells are established at the correct time and place in the embryo. Such cell fate decisions are often classified as deterministic …
de, pt
(code pays fourni par la source)