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Genetics and genome sequencing have supplied an extensive parts list for how to create an embryo, yet it is still impossible to construct a precise description of the process from genome-scale data. Existing models of signaling pathways have too many parameters to fit experimentally, and they ignore the complexities of cell biology. Siggia’s group recently developed mathematical descriptions for embryonic patterning that encapsulate how a field of cells can react to an external signal and choose between three discrete fates. The resulting mathematics is geometric and naturally meshes with the phenomenological concepts from the pre-molecular era of embryology.
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论文共 216 篇作者统计合作学者相似作者
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Teresa Krammer,Hannah T. Stuart,Elena Gromberg,Keisuke Ishihara,Dillon Cislo,Manuela Melchionda, Fernando Becerril Perez, Jingkui Wang,Elena Costantini,Stefanie Lehr, Laura Arbanas,Alexandra Hormann,Ralph A. Neumuller, Nicola Elvassore,Eric Siggia,James Briscoe,Anna Kicheva,Elly M. Tanaka
DEVELOPMENTAL CELLno. 15 (2024)
Development (2024)
bioRxiv (Cold Spring Harbor Laboratory) (2023)
Cell stem cellno. 6 (2022): 962-972.e4
Cell Reports Methodsno. 9 (2022): 100297
DEVELOPMENTno. 20 (2022)
Developmental Cellno. 13 (2021): 1930-1944.e5
Notices of the American Mathematical Societyno. 05 (2021): 1-1
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#Papers: 230
#Citation: 35605
H-Index: 84
G-Index: 188
Sociability: 6
Diversity: 0
Activity: 0
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