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James R Usherwood

Biographic Data

ID5205972
NAMEJames R Usherwood
GIVEN NAMESJames R
FAMILY NAMEUsherwood
SIGNATUREUSHERWOOD J R
AFFILIATIONSFlorida State University
ORCID0000-0001-8794-4677
VERIFIEDYes
TOTAL WORKS1
TOTAL CITATIONS7
AUTHOR COUNT1
EDITOR COUNT0
FIRST PUBLICATION YEAR2003
LATEST PUBLICATION YEAR2003
H-INDEX1
  • Mechanisms of force and power production in unsteady ricochetal brachiation

    Open Access•James R Usherwood, G Larson et al.•ARTICLE•American Journal of Physical…•2003•Cited by: 7•References: 9

    Brachiators travel by swinging beneath handholds, and it is not obvious how these animals manage to accelerate and decelerate in a horizontal direction, especially when moving rapidly. Most previous analyses focused on brachiation in highly constrained laboratory conditions that induced steady‐state locomotion. Emerging understanding of brachiation suggests that much of gibbon locomotory behavior and morphology must be considered within the conte…

  • Mechanisms of force and power production in unsteady ricochetal brachiation

    Open Access•James R Usherwood, G Larson et al.•ARTICLE•American Journal of Physical…•2003•Cited by: 7•References: 9

    Brachiators travel by swinging beneath handholds, and it is not obvious how these animals manage to accelerate and decelerate in a horizontal direction, especially when moving rapidly. Most previous analyses focused on brachiation in highly constrained laboratory conditions that induced steady‐state locomotion. Emerging understanding of brachiation suggests that much of gibbon locomotory behavior and morphology must be considered within the conte…

  • Mechanisms of force and power production in unsteady ricochetal brachiation

    Open Access•James R Usherwood, G Larson et al.•ARTICLE•American Journal of Physical…•2003•Cited by: 7•References: 9

    Brachiators travel by swinging beneath handholds, and it is not obvious how these animals manage to accelerate and decelerate in a horizontal direction, especially when moving rapidly. Most previous analyses focused on brachiation in highly constrained laboratory conditions that induced steady‐state locomotion. Emerging understanding of brachiation suggests that much of gibbon locomotory behavior and morphology must be considered within the conte…

Artificial Intelligence (1 works) · Artificial Intelligence (1 works) · Biomimetic flight and propulsion mechanisms (1 works) · Classical mechanics (1 works) · Computer Science (1 works) · Context (archaeology) (1 works) · Control (management) (1 works) · Control theory (sociology) (1 works) · Geology (1 works) · Geology (1 works)

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