Yukiko Asaka

Affiliations: 
Yale University, New Haven, CT 
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"Yukiko Asaka"
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Publications

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Einstein EB, Asaka Y, Yeckel MF, et al. (2013) Galanin-induced decreases in nucleus accumbens/striatum excitatory postsynaptic potentials and morphine conditioned place preference require both galanin receptor 1 and galanin receptor 2. The European Journal of Neuroscience. 37: 1541-9
Asaka Y, Jugloff DG, Zhang L, et al. (2006) Hippocampal synaptic plasticity is impaired in the Mecp2-null mouse model of Rett syndrome. Neurobiology of Disease. 21: 217-27
Asaka Y, Mauldin KN, Griffin AL, et al. (2005) Nonpharmacological amelioration of age-related learning deficits: the impact of hippocampal theta-triggered training. Proceedings of the National Academy of Sciences of the United States of America. 102: 13284-8
Rabenstein RL, Addy NA, Caldarone BJ, et al. (2005) Impaired synaptic plasticity and learning in mice lacking beta-adducin, an actin-regulating protein. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 25: 2138-45
Huff KD, Asaka Y, Griffin AL, et al. (2004) Differential mastication kinematics of the rabbit in response to food and water: implications for conditioned movement. Integrative Physiological and Behavioral Science : the Official Journal of the Pavlovian Society. 39: 16-23
Griffin AL, Asaka Y, Darling RD, et al. (2004) Theta-contingent trial presentation accelerates learning rate and enhances hippocampal plasticity during trace eyeblink conditioning. Behavioral Neuroscience. 118: 403-11
Asaka Y, Griffin AL, Berry SD. (2002) Reversible septal inactivation disrupts hippocampal slow-wave and unit activity and impairs trace conditioning in rabbits (Oryctolagus cuniculus). Behavioral Neuroscience. 116: 434-42
Seager MA, Johnson LD, Chabot ES, et al. (2002) Oscillatory brain states and learning: Impact of hippocampal theta-contingent training. Proceedings of the National Academy of Sciences of the United States of America. 99: 1616-20
Asaka Y, Seager MA, Griffin AL, et al. (2000) Medial septal microinfusion of scopolamine disrupts hippocampal activity and trace jaw movement conditioning. Behavioral Neuroscience. 114: 1068-77
Seager MA, Asaka Y, Berry SD. (1999) Scopolamine disruption of behavioral and hippocampal responses in appetitive trace classical conditioning. Behavioural Brain Research. 100: 143-51
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