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Magnetic Resonance Imaging|April 6, 2004
Imaging freely moving subjects using continuous interleaved orthogonal magnetic resonance imagingDavid M Neustadter, Hillel J ChielThe Journal of Experimental Biology|March 28, 2002
Kinematics of the buccal mass during swallowing based on magnetic resonance imaging in intact, behaving Aplysia californicaDavid M Neustadter, Richard F Drushel, Hillel J ChielThe Journal of Experimental Biology|January 11, 2007
The kinematics of multifunctionality: comparisons of biting and swallowing in Aplysia californicaDavid M Neustadter, Robert L Herman, Richard F Drushel, et al.The Journal of Experimental Biology|September 18, 2002
A kinematic model of swallowing in Aplysia californica based on radula/odontophore kinematics and in vivo magnetic resonance imagesDavid M Neustadter, Richard F Drushel, Patrick E Crago, et al.Journal of Comparative Physiology. A, Neuroethology, Sensory, Neural, and Behavioral Physiology|April 6, 2006
Mechanical reconfiguration mediates swallowing and rejection in Aplysia californicaValerie A Novakovic, Gregory P Sutton, David M Neustadter, et al.Biological Cybernetics|November 2, 2004
Neural control exploits changing mechanical advantage and context dependence to generate different feeding responses in AplysiaGregory P Sutton, Elizabeth V Mangan, David M Neustadter, et al.The Journal of Experimental Biology|July 28, 2019
Soft-surface grasping: radular opening in Aplysia californicaCatherine E Kehl, Joey Wu, Sisi Lu, et al.The Journal of Experimental Biology|June 29, 2002
Radula-centric and odontophore-centric kinematic models of swallowing in Aplysia californicaRichard F Drushel, Greg P Sutton, David M Neustadter, et al.Pageof 1