Biomechanics: deadly strike mechanism of a mantis shrimp.
Publication
, Journal Article
Patek, SN; Korff, WL; Caldwell, RL
Published in: Nature
April 2004
Stomatopods (mantis shrimp) are well known for the feeding appendages they use to smash shells and impale fish. Here we show that the peacock mantis shrimp (Odontodactylus scyllarus) generates an extremely fast strike that requires major energy storage and release, which we explain in terms of a saddle-shaped exoskeletal spring mechanism. High-speed images reveal the formation and collapse of vapour bubbles next to the prey due to swift movement of the appendage towards it, indicating that O. scyllarus may use destructive cavitation forces to damage its prey.
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Published In
Nature
DOI
EISSN
1476-4687
ISSN
0028-0836
Publication Date
April 2004
Volume
428
Issue
6985
Start / End Page
819 / 820
Related Subject Headings
- Predatory Behavior
- Movement
- General Science & Technology
- Extremities
- Eating
- Decapoda
- Biomechanical Phenomena
- Animals
Citation
APA
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MLA
NLM
Patek, S. N., Korff, W. L., & Caldwell, R. L. (2004). Biomechanics: deadly strike mechanism of a mantis shrimp. Nature, 428(6985), 819–820. https://doi.org/10.1038/428819a
Patek, S. N., W. L. Korff, and R. L. Caldwell. “Biomechanics: deadly strike mechanism of a mantis shrimp.” Nature 428, no. 6985 (April 2004): 819–20. https://doi.org/10.1038/428819a.
Patek SN, Korff WL, Caldwell RL. Biomechanics: deadly strike mechanism of a mantis shrimp. Nature. 2004 Apr;428(6985):819–20.
Patek, S. N., et al. “Biomechanics: deadly strike mechanism of a mantis shrimp.” Nature, vol. 428, no. 6985, Apr. 2004, pp. 819–20. Epmc, doi:10.1038/428819a.
Patek SN, Korff WL, Caldwell RL. Biomechanics: deadly strike mechanism of a mantis shrimp. Nature. 2004 Apr;428(6985):819–820.
Published In
Nature
DOI
EISSN
1476-4687
ISSN
0028-0836
Publication Date
April 2004
Volume
428
Issue
6985
Start / End Page
819 / 820
Related Subject Headings
- Predatory Behavior
- Movement
- General Science & Technology
- Extremities
- Eating
- Decapoda
- Biomechanical Phenomena
- Animals