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Universal calcium fluctuations in Hydra morphogenesis
Oded Agam
, Erez Braun
*
*
Corresponding author for this work
Racah Institute of Physics
Research output
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Article
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peer-review
5
Scopus citations
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Keyphrases
Ca2+
100%
Morphogenesis
100%
Calcium Oscillations
100%
Hydra
100%
Ca2+ Activity
100%
Spatial Correlation
50%
Morphological Transition
50%
Spatial Fluctuations
50%
Heptanol
50%
Electric Field (E-field)
25%
Coefficient of Variation
25%
Regenerative Process
25%
Physical Processes
25%
Higher Excited States
25%
External Electric Field
25%
Double-well Potential
25%
Theoretical Modeling
25%
Tissue Sampling
25%
Universal Characteristic
25%
Gap Junction
25%
Bistability
25%
Animal Development
25%
Local Ca2+
25%
Low-lying Excited States
25%
Universal Property
25%
Statistical Features
25%
Hydra Regeneration
25%
Skewness Coefficient
25%
Shape Distribution
25%
Biochemistry, Genetics and Molecular Biology
Morphogenesis
100%
Morphology
66%
Electric Field
66%
Heptanol
66%
Regeneration
33%
Physical Phenomena
33%
Chemistry
Electric Field
100%
Excited State
50%
Double Well Potential
50%
Neuroscience
Morphogenesis
100%
Gap Junction
33%
Material Science
Morphology
100%