Eva Deinum

Affiliations: 
2008-2013 FOM Institute AMOLF, Amsterdam, Noord-Holland, Netherlands 
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"Eva Deinum"
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Bela M. Mulder grad student 2008-2013 Wageningen University
 (Thesis: Simple models for complex questions on plant development)
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Publications

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Deinum EE, Jacobs B. (2023) ROP Patterning: Linking Mathematical Models and Molecular Diversity. Journal of Experimental Botany
Jacobs B, Schneider R, Molenaar J, et al. (2022) Microtubule nucleation complex behavior is critical for cortical array homogeneity xylem wall patterning. Proceedings of the National Academy of Sciences of the United States of America. 119: e2203900119
Schneider R, Klooster KV, Picard KL, et al. (2021) Long-term single-cell imaging and simulations of microtubules reveal principles behind wall patterning during proto-xylem development. Nature Communications. 12: 669
Jacobs B, Molenaar J, Deinum EE. (2020) Robust banded protoxylem pattern formation through microtubule-based directional ROP diffusion restriction. Journal of Theoretical Biology. 110351
Deinum EE, Mulder BM, Benitez Alfonso Y. (2019) From plasmodesma geometry to effective symplasmic permeability through biophysical modelling. Elife. 8
Deinum EE, Tindemans SH, Lindeboom JJ, et al. (2017) How selective severing by katanin promotes order in the plant cortical microtubule array. Proceedings of the National Academy of Sciences of the United States of America
Tindemans SH, Deinum EE, Lindeboom JJ, et al. (2014) Efficient event-driven simulations shed new light on microtubule organization in the plant cortical array Frontiers of Physics. 2: 1-15
Deinum EE, Mulder BM. (2013) Modelling the role of microtubules in plant cell morphology. Current Opinion in Plant Biology. 16: 688-92
Lindeboom JJ, Lioutas A, Deinum EE, et al. (2013) Cortical microtubule arrays are initiated from a nonrandom prepattern driven by atypical microtubule initiation. Plant Physiology. 161: 1189-201
Deinum EE, Geurts R, Bisseling T, et al. (2012) Modeling a cortical auxin maximum for nodulation: different signatures of potential strategies. Frontiers in Plant Science. 3: 96
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