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John H Costello

Showing results (11-20 of 52) with videos related to

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Scientific Reports|September 21, 2021
"Indirect development" increases reproductive plasticity and contributes to the success of scyphozoan jellyfish in the oceansIsabella D'Ambra, Louise Merquiol, William M Graham, et al.
The Journal of Experimental Biology|May 31, 2015
Ontogenetic propulsive transitions by Sarsia tubulosa medusaeKakani Katija, Sean P Colin, John H Costello, et al.
The Journal of Experimental Biology|March 23, 2005
Flow patterns generated by oblate medusan jellyfish: field measurements and laboratory analysesJohn O Dabiri, Sean P Colin, John H Costello, et al.
Journal of Visualized Experiments : Jove|November 9, 2011
Quantitatively measuring in situ flows using a self-contained underwater velocimetry apparatus (SCUVA)Kakani Katija, Sean P Colin, John H Costello, et al.
The Biological Bulletin|March 10, 2011
Ontogenetic changes in the bell morphology and kinematics and swimming behavior of rowing medusae: the special case of the limnomedusa Liriope tetraphyllaTasia Blough, Sean P Colin, John H Costello, et al.
Biomimetics (Basel, Switzerland)|September 8, 2019
Maneuvering Performance in the Colonial Siphonophore, <i>Nanomia bijuga</i>Kelly R Sutherland, Brad J Gemmell, Sean P Colin, et al.
Royal Society Open Science|April 30, 2019
A ctenophore (comb jelly) employs vortex rebound dynamics and outperforms other gelatinous swimmersBrad J Gemmell, Sean P Colin, John H Costello, et al.
Nature Communications|November 4, 2015
Suction-based propulsion as a basis for efficient animal swimmingBrad J Gemmell, Sean P Colin, John H Costello, et al.
The Journal of Experimental Biology|September 1, 2023
Nectophore coordination and kinematics by physonect siphonophoresShirah Strock, John H Costello, Joost Daniels, et al.
The Journal of Experimental Biology|March 1, 2019
Propulsive design principles in a multi-jet siphonophoreKelly R Sutherland, Brad J Gemmell, Sean P Colin, et al.
Pageof 6

Showing results (11-20 of 52) with videos related to

Sort By:
Pageof 6
Scientific Reports|September 21, 2021
"Indirect development" increases reproductive plasticity and contributes to the success of scyphozoan jellyfish in the oceansIsabella D'Ambra, Louise Merquiol, William M Graham, et al.
The Journal of Experimental Biology|May 31, 2015
Ontogenetic propulsive transitions by Sarsia tubulosa medusaeKakani Katija, Sean P Colin, John H Costello, et al.
The Journal of Experimental Biology|March 23, 2005
Flow patterns generated by oblate medusan jellyfish: field measurements and laboratory analysesJohn O Dabiri, Sean P Colin, John H Costello, et al.
Journal of Visualized Experiments : Jove|November 9, 2011
Quantitatively measuring in situ flows using a self-contained underwater velocimetry apparatus (SCUVA)Kakani Katija, Sean P Colin, John H Costello, et al.
The Biological Bulletin|March 10, 2011
Ontogenetic changes in the bell morphology and kinematics and swimming behavior of rowing medusae: the special case of the limnomedusa Liriope tetraphyllaTasia Blough, Sean P Colin, John H Costello, et al.
Biomimetics (Basel, Switzerland)|September 8, 2019
Maneuvering Performance in the Colonial Siphonophore, <i>Nanomia bijuga</i>Kelly R Sutherland, Brad J Gemmell, Sean P Colin, et al.
Royal Society Open Science|April 30, 2019
A ctenophore (comb jelly) employs vortex rebound dynamics and outperforms other gelatinous swimmersBrad J Gemmell, Sean P Colin, John H Costello, et al.
Nature Communications|November 4, 2015
Suction-based propulsion as a basis for efficient animal swimmingBrad J Gemmell, Sean P Colin, John H Costello, et al.
The Journal of Experimental Biology|September 1, 2023
Nectophore coordination and kinematics by physonect siphonophoresShirah Strock, John H Costello, Joost Daniels, et al.
The Journal of Experimental Biology|March 1, 2019
Propulsive design principles in a multi-jet siphonophoreKelly R Sutherland, Brad J Gemmell, Sean P Colin, et al.
Pageof 6