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Tal Shomrat

Showing results (1-10 of 16) with videos related to

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The Journal of Experimental Biology|July 4, 2013
An automated training paradigm reveals long-term memory in planarians and its persistence through head regenerationTal Shomrat, Michael Levin
Frontiers in Endocrinology|February 27, 2019
Updated View on the Relation of the Pineal Gland to Autism Spectrum DisordersTal Shomrat, Nir Nesher
The Biological Bulletin|June 28, 2006
The octopus: a model for a comparative analysis of the evolution of learning and memory mechanismsBinyamin Hochner, Tal Shomrat, Graziano Fiorito
The Journal of Experimental Biology|February 4, 2021
Feel the light: sight-independent negative phototactic response in octopus armsItamar Katz, Tal Shomrat, Nir Nesher
Biology Open|July 9, 2024
Neurophysiological measurements of planarian brain activity: a unique model for neuroscience researchOrel Benita, Nir Nesher, Tal Shomrat
Communicative & Integrative Biology|April 12, 2016
The stability of memories during brain remodeling: A perspectiveDouglas J Blackiston, Tal Shomrat, Michael Levin
Current Biology : CB|March 11, 2008
The octopus vertical lobe modulates short-term learning rate and uses LTP to acquire long-term memoryTal Shomrat, Ilaria Zarrella, Graziano Fiorito, et al.
Proceedings. Biological Sciences|August 29, 2019
From synaptic input to muscle contraction: arm muscle cells of Octopus vulgaris show unique neuromuscular junction and excitation-contraction coupling propertiesNir Nesher, Federica Maiole, Tal Shomrat, et al.
Current Biology : CB|October 24, 2023
Embodied mechanisms of motor control in the octopusBinyamin Hochner, Letizia Zullo, Tal Shomrat, et al.
Journal of Neurophysiology|August 15, 2003
A learning and memory area in the octopus brain manifests a vertebrate-like long-term potentiationBinyamin Hochner, Euan R Brown, Marina Langella, et al.
Pageof 2

Showing results (1-10 of 16) with videos related to

Sort By:
Pageof 2
The Journal of Experimental Biology|July 4, 2013
An automated training paradigm reveals long-term memory in planarians and its persistence through head regenerationTal Shomrat, Michael Levin
Frontiers in Endocrinology|February 27, 2019
Updated View on the Relation of the Pineal Gland to Autism Spectrum DisordersTal Shomrat, Nir Nesher
The Biological Bulletin|June 28, 2006
The octopus: a model for a comparative analysis of the evolution of learning and memory mechanismsBinyamin Hochner, Tal Shomrat, Graziano Fiorito
The Journal of Experimental Biology|February 4, 2021
Feel the light: sight-independent negative phototactic response in octopus armsItamar Katz, Tal Shomrat, Nir Nesher
Biology Open|July 9, 2024
Neurophysiological measurements of planarian brain activity: a unique model for neuroscience researchOrel Benita, Nir Nesher, Tal Shomrat
Communicative & Integrative Biology|April 12, 2016
The stability of memories during brain remodeling: A perspectiveDouglas J Blackiston, Tal Shomrat, Michael Levin
Current Biology : CB|March 11, 2008
The octopus vertical lobe modulates short-term learning rate and uses LTP to acquire long-term memoryTal Shomrat, Ilaria Zarrella, Graziano Fiorito, et al.
Proceedings. Biological Sciences|August 29, 2019
From synaptic input to muscle contraction: arm muscle cells of Octopus vulgaris show unique neuromuscular junction and excitation-contraction coupling propertiesNir Nesher, Federica Maiole, Tal Shomrat, et al.
Current Biology : CB|October 24, 2023
Embodied mechanisms of motor control in the octopusBinyamin Hochner, Letizia Zullo, Tal Shomrat, et al.
Journal of Neurophysiology|August 15, 2003
A learning and memory area in the octopus brain manifests a vertebrate-like long-term potentiationBinyamin Hochner, Euan R Brown, Marina Langella, et al.
Pageof 2