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Cognitive Behavioral Neuroscience Lab

PUBLICATIONS

papers list
26

Task-related ‘cortical’ bursting depends critically on basal ganglia input and is linked to vocal plasticity.

Kojima, S., Kao, M.H. and Doupe, A.J. [Proc. Natl. Acad. Sci. USA   (2013) ]

Abstract
25

From likes to dislikes: conditioned taste aversion in the pond snail Lymnaea stagnalis.

Ito, E., Kojima, S., Lukowiak, K. and Sakakibara, M. [Canadian Journal of Zoology   (2013) ]

Abstract
24

Neural mechanisms of birdsong learning: basal ganglia circuits and reinforcement learning model.

Kojima, S. [Comparative Physiology and Biochemistry   (2012) ]

Abstract
23

Social performance reveals unexpected vocal competency in young songbirds.

Kojima, S., and Doupe, A.J. [Proc. Natl. Acad. Sci. USA   (2011) ]

Abstract
22

Activity propagation in an avian basal ganglia-thalamocortical circuit essential for vocal learning.

Kojima, S., and Doupe, A.J. [The Journal of Neuroscience   (2009) ]

Abstract
21

Neural encoding of auditory temporal context in a songbird basal ganglia nucleus, and its independence of birds' song experience.

Kojima, S., and Doupe, A.J. [European Journal of Neuroscience   (2008) ]

Abstract
20

Song selectivity in the pallial-basal ganglia song circuit of zebra finches raised without tutor song exposure.

Kojima, S., and Doupe, A.J. [Journal of Neurophysiology   (2007) ]

Abstract
19

Retinotectal transmission in the optic tectum of rainbow trout.

Kinoshita, M., Fukaya, M., Tojima, T., Kojima, S., Ando, H., Watanabe, M., Urano, A., and Ito, E. [Journal of Comparative Neurology   (2005) ]

Abstract
18

Intrinsic and synaptic properties of the dorsomedial nucleus of the intercollicular complex, an area known to be involved in distance call production in Bengalese finches.

Kojima, S., and Aoki, K. [Brain Research   (2003) ]

Abstract
17

Multiple-site optical recording for characterization of functional synaptic organization of the optic tectum of rainbow trout.

Kinoshita, M., Ueda, R., Kojima, S., Sato, K., Watanabe, M., Urano, A., and Ito, E. [European Journal of Neuroscience   (2002) ]

Abstract
16

Neuroethological analyses of associative learning in the pond snail, Lymnaea stagnalis.

Kojima, S. [The Bulletin of Sophia University   (2001) ]

Abstract
15

Optical detection of neuromodulatory effects of conditioned taste aversion in the pond snail Lymnaea stagnalis.

Kojima, S., Hosono, T., Fujito, Y., and Ito, E. [Journal of Neurobiology   (2001) ]

Abstract
14

Neuron-independent Ca2+ signaling in glial cells of snail's brain.

Kojima, S., Ogawa, H., Kouuchi, T., Nidaira, T., Hosono, T., and Ito, E. [Neuroscience   (2000) ]

Abstract
13

Complement receptor 3-like immunoreactivity in the light green cells and the canopy cells of the pond snail, Lymnaea stagnalis.

Hatakeyama, D., Ito, I., Kojima, S., Fujito, Y., and Ito, E. [Brain Research   (2000) ]

Abstract
12

Developmental study of anatomical substrate for conditioned taste aversion in Lymnaea stagnalis.

Sadamoto, H., Yamanaka, M., Hatakeyama, D., Nagayama, S., Kojima, S., Yamashita, M., and Ito, E. [Zoological Science   (2000) ]

Abstract
11

Optical detection of synaptically induced glutamate transport in hippocampal slices.

Kojima, S., Nakamura, T., Nidaira, T., Nakamura, K., Ooashi, N., Ito, E., Watase, K., Tanaka, K., Wada, K., Kudo, Y., et al. [The Journal of Neuroscience   (1999) ]

Abstract
10

Histological characterization of lip and tentacle nerves in Lymnaea stagnalis.

Nakamura, H., Ito, I., Kojima, S., Fujito, Y., Suzuki, H., and Ito, E. [Neuroscience Research   (1999) ]

Abstract
9

PKA-dependent regulation of synaptic enhancement between buccal motor neuron and its regulatory interneuron in Lymnaea stagnalis.

Nakamura, H., Kobayashi, S., Kojima, S., Urano, A., and Ito, E. [Zoological Science   (1999) ]

Abstract
8

Physiological characterization of lip and tentacle nerves in Lymnaea stagnalis.

Nakamura, H., Kojima, S., Kobayashi, S., Ito, I., Fujito, Y., Suzuki, H., and Ito, E. [Neuroscience Research   (1999) ]

Abstract
7

Developmental changes in conditioned taste aversion in Lymnaea stagnalis.

Yamanaka, M., Sadamoto, H., Hatakeyama, D., Nakamura, H., Kojima, S., Kimura, T., Yamashita, M., Urano, A., and Ito, E. [Zoological Science   (1999) ]

Abstract
6

Associative learning in the pond snail, Lymnaea stagnalis.

Ito, E., Kobayashi, S., Kojima, S., Sadamoto, H., and Hatakeyama, D. [Zoological Science   (1999) ]

Abstract
5

Sensory preconditioning for feeding response in the pond snail, Lymnaea stagnalis.

Kojima, S., Kobayashi, S., Yamanaka, M., Sadamoto, H., Nakamura, H., Fujito, Y., Kawai, R., Sakakibara, M., and Ito, E. [Brain Research   (1998) ]

Abstract
4

Histochemical study on the relation between NO-generative neurons and central circuitry for feeding in the pond snail, Lymnaea stagnalis.

Sadamoto, H., Hatakeyama, D., Kojima, S., Fujito, Y., and Ito, E. [Neuroscience Research   (1998) ]

Abstract
3

Operant conditioning of escape behavior in the pond snail, Lymnaea stagnalis.

Kobayashi, S., Kojima, S., Yamanaka, M., Sadamoto, H., Nakamura, H., Fujito, Y., Kwai, R., Skakibara, M., and Ito, E. [Zoological Science   (1998) ]

Abstract
2

Enhancement of an inhibitory input to the feeding central pattern generator in Lymnaea stagnalis during conditioned taste-aversion learning.

Kojima, S., Nanakamura, H., Nagayama, S., Fujito, Y., and Ito, E. [Neuroscience Letters   (1997) ]

Abstract
1

Differential neuroethological effects of aversive and appetitive reinforcing stimuli on associative learning in Lymnaea stagnalis.

Kojima, S., Yamanaka, M., Fujito, Y., and Ito, E. [Zoological Science   (1996) ]

Abstract