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Updated: May 29, 2026

Multimodal Optical Microscopy Methods Reveal Polyp Tissue Morphology and Structure in Caribbean Reef Building Corals
Published on: September 5, 2014
Coral growth, retraction, defense, and regenerative strategies revealed by live microCT
Karina Araslanova1, Marketa Kaiser2, Anton Fetisov1
1Department of Neuroimmunology, Center for Brain Research, Medical University Vienna, 1090 Vienna, Austria.
Abstract:
Understanding how corals build and remodel their skeletons is key to explaining reef resilience, yet most insights come from static imaging. Using longitudinal live microCT, we tracked the same coral colonies over weeks to months at micrometer resolution. Coral skeleton formation is not a uniform accretion process but a dynamic integration of multiple programs, including vertical and horizontal patterned growth, previously undescribed defensive wall-building against competitors, exploratory edge behavior with reversible expansions and retractions, and skeletal regeneration favoring rapid, imprecise yet effective matrix expansion. Time-resolved imaging links colony-scale growth to microscale events, showing that all modes depend on balances between fusion of skeletal microparticles and layered matrix deposition, guided by tissue prepatterning. Beyond corals, this framework generalizes to studying skeletal dynamics across diverse biomineralizing organisms.
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