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Extreme impact and cavitation forces of a biological hammer: strike forces of the peacock mantis shrimp Odontodactylus scyllarus.

Publication ,  Journal Article
Patek, SN; Caldwell, RL
Published in: The Journal of experimental biology
October 2005

Mantis shrimp are renowned for their unusual method of breaking shells with brief, powerful strikes of their raptorial appendages. Due to the extreme speeds of these strikes underwater, cavitation occurs between their appendages and hard-shelled prey. Here we examine the magnitude and relative contribution of the impact and cavitation forces generated by the peacock mantis shrimp Odontodactylus scyllarus. We present the surprising finding that each strike generates two brief, high-amplitude force peaks, typically 390-480 micros apart. Based on high-speed imaging, force measurements and acoustic analyses, it is evident that the first force peak is caused by the limb's impact and the second force peak is due to the collapse of cavitation bubbles. Peak limb impact forces range from 400 to 1501 N and peak cavitation forces reach 504 N. Despite their small size, O. scyllarus can generate impact forces thousands of times their body weight. Furthermore, on average, cavitation peak forces are 50% of the limb's impact force, although cavitation forces may exceed the limb impact forces by up to 280%. The rapid succession of high peak forces used by mantis shrimp suggests that mantis shrimp use a potent combination of cavitation forces and extraordinarily high impact forces to fracture shells. The stomatopod's hammer is fundamentally different from typical shell-crushing mechanisms such as fish jaws and lobster claws, and may have played an important and as yet unexamined role in the evolution of shell form.

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Published In

The Journal of experimental biology

DOI

EISSN

1477-9145

ISSN

0022-0949

Publication Date

October 2005

Volume

208

Issue

Pt 19

Start / End Page

3655 / 3664

Related Subject Headings

  • Video Recording
  • Physiology
  • Feeding Behavior
  • Extremities
  • Decapoda
  • Biomechanical Phenomena
  • Animals
  • Analysis of Variance
  • Acoustics
  • 31 Biological sciences
 

Citation

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Patek, S. N., & Caldwell, R. L. (2005). Extreme impact and cavitation forces of a biological hammer: strike forces of the peacock mantis shrimp Odontodactylus scyllarus. The Journal of Experimental Biology, 208(Pt 19), 3655–3664. https://doi.org/10.1242/jeb.01831
Patek, S. N., and R. L. Caldwell. “Extreme impact and cavitation forces of a biological hammer: strike forces of the peacock mantis shrimp Odontodactylus scyllarus.The Journal of Experimental Biology 208, no. Pt 19 (October 2005): 3655–64. https://doi.org/10.1242/jeb.01831.
Patek SN, Caldwell RL. Extreme impact and cavitation forces of a biological hammer: strike forces of the peacock mantis shrimp Odontodactylus scyllarus. The Journal of experimental biology. 2005 Oct;208(Pt 19):3655–64.
Patek, S. N., and R. L. Caldwell. “Extreme impact and cavitation forces of a biological hammer: strike forces of the peacock mantis shrimp Odontodactylus scyllarus.The Journal of Experimental Biology, vol. 208, no. Pt 19, Oct. 2005, pp. 3655–64. Epmc, doi:10.1242/jeb.01831.
Patek SN, Caldwell RL. Extreme impact and cavitation forces of a biological hammer: strike forces of the peacock mantis shrimp Odontodactylus scyllarus. The Journal of experimental biology. 2005 Oct;208(Pt 19):3655–3664.
Journal cover image

Published In

The Journal of experimental biology

DOI

EISSN

1477-9145

ISSN

0022-0949

Publication Date

October 2005

Volume

208

Issue

Pt 19

Start / End Page

3655 / 3664

Related Subject Headings

  • Video Recording
  • Physiology
  • Feeding Behavior
  • Extremities
  • Decapoda
  • Biomechanical Phenomena
  • Animals
  • Analysis of Variance
  • Acoustics
  • 31 Biological sciences