Ogawa, K., and Inui, T. (2012).
Reference frame of human medial intraparietal cortex in visually guided movements.
Journal of Cognitive Neuroscience,
24(1), 171-182.
Ogawa, K., and Inui, T. (2011).
Multiple neural representations of object-directed action in an imitative context.
Experimental Brain Research,
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Asakura, N., and Inui, T. (2011).
Disambiguation of mental rotation by spatial frames of reference.
i-Perception,
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Shibata, H., Inui, T., and Ogawa, K. (2011).
Understanding interpersonal action coordination: An fMRI study.
Experimental Brain Research,
211, 569-579.
Ogawa, K., and Inui, T. (2011).
Neural representation of observed actions in the parietal and premotor cortex.
Neuroimage,
56(2), 728-735.
Efremova, N., Asakura, N., Inui, T., and Abdikeev, N. (2011).
Inferotemporal network model for 3D object recognition.
2011 IEEE/ICME International Conference on Complex Medical Engineering.
Nagai, C., Inui, T., and Iwata, M. (2011).
Fading-figure tracing in Williams syndrome.
Brain and Cognition,
75, 10-17.
Ogawa K., Nagai C., and Inui T. (2010).
Brain mechanisms of visuomotor transformation based on deficits in tracing and copying.
Japanese Psychological Research,
52(2), 91-106.
Nagai, C., Inui, T., and Iwata, M. (2010).
Role of Broca's subregions in syntactic processing: a comparative study of Japanese patients with lesions in the pars triangularis and opercularis.
European Neurology,
63, 79-86.
Mushiake, H., Sakamoto, K., Saito, N., Inui, T., Aihara, K., and Tanji, J. (2010).
Involvement of the prefrontal cortex in problem solving.
International Reviews of Neurobiology,
85, 1-11.
Tarasenko, S., and Inui, T. (2009).
Blind choice.
Perceptual and Motor Skills,
109(3), 791-803.
Ogawa, K., and Inui, T. (2009).
The role of the posterior parietal cortex in drawing by copying.
Neuropsychologia,
47(4), 1013-1022.
Asada, M., Hosoda, K., Kuniyoshi, Y., Ishiguro, H., Inui, T., Yoshikawa, Y., Ogino, M., Yoshida, C. (2009).
Cogntiive Developmental robotics: a survey.
IEEE transactions on autonomous mental development,
1(1), 12-34.
Dominey, P. F., and Inui, T. (2009).
Cortico-striatal function in sentence comprehension: Insights from neurophysiology and modeling.
Cortex,
45(8), 1012-1018.
Dominey, P. F., Inui, T. and Hoen, M.(2008).
Neural network processing of natural language: U. Towards a unified model of corticostriatal function in learning sentence comprehension and non-linguistic sequencing.
Brain and Language, 109, 2-3, 80-92.
Ogawa, K., Inui, T., and Ohba, M. (2008).
Syntactic processing of complex sentences in left lateral premotor cortex.
Neuroreport,
19(8), 811-815.
Ogawa, K., Ohba, M., and Inui, T. (2007).
Neural basis of syntactic processing of simple sentences in Japanese.
Neuroreport,
18(14), 1437-1441.
Nakajima, T., Mushiake, H., Inui, T., and Tanji, J. (2007).
Decoding higher-order motor information from primate non-primary motor cortices.
Technology and Health Care,
15, 103-110.
Ogawa, K., and Inui, T. (2007).
Lateralization of posterior parietal cortex for internal monitoring of self-versus externally generated movements.
Journal of Cognitive Neuroscience,
19, 1827-1835.
Imazu, S., Sugio, T., Tanaka, S., and Inui, T. (2007).
Differences between actual and imagined usage of chopsticks: An fMRI study.
Cortex,
43, 301-308.
Ogawa, K., Inui, T., and Sugio, T. (2007).
Neural correlates of state estimation in visually guided movements: An event-related fMRI study.
Cortex,
43, 289-300.
Inui, T., Ogawa, K., and Ohba, M. (2007).
Role of left inferior frontal gyrus in the processing of particles in Japanese.
NeuroReport,
18, 431-434.
Dominey, P. F., Hoen, M., and Inui, T. (2006).
A neurolinguistic model of grammatical construction processing.
Journal of Cognitive Neuroscience,
18(12), 1-20.
Fukui, T., Takemura, N., Inui, T. (2006).
Visuomotor transformation process in goal-directed prehension: Utilization of online vision during preshaping phase of grasping.
Japanese Psychological Research,
48(3), 188-203.
Inui, T. (2006).
Editorial: Experimental approach to embodied cognition.
Japanese Psychological Research,
48(3), 123-125.
Ogawa, K., Inui, T., and Sugio, T. (2006).
Separating brain regions involved in internally guided and visual feedback control of moving effectors: an event-related fMRI study.
NeuroImage,
32(4), 1760-1770.
Fukui, T., and Inui, T. (2006).
The effect of viewing the moving limb and target object during the early phase of movement on the online control of grasping.
Human Movement Science,
25, 349-371.
Minami, M., and Inui, T. (2005).
Roles of the prefrontal neurons in delayed matching-to-category task: a modeling study.
Neurocomputing,
65-66, 609-616.
Inui, T. (2004).
Editorial for the special issue.
Psychologia,
47, 59-62.
Yoshida, C., and Inui, T. (2004).
Transformation process of the visuomotor memory representation of a target in far space after body rotation.
Psychologia,
47, 79-95.
Minami, T., and Inui, T. (2004).
A recurrent neural network model of rule-guided delayed tasks.
Neurocomputing,
58-60, 761-767.
Minami, T., and Inui, T. (2004).
A neural architecture for rule-guided behavior: A simulation of physiological experiments.
Psychologia,
46, 268-283.
Sugio, T., Ogawa, K., and Inui, T. (2003).
Neural correlates of semantic effects on grasping familiar objects.
Neuroreport,
14(18), 2297-2301.
Okada, T., Tanaka, S., Nakai, T., Nishizawa, S., Inui, T., Yonekura, Y., Konishi, J., and Sadato, N. (2003).
Facial recognition reactivates the primary visual cortex: an functional magnetic resonance imaging study in humans.
Neurosci Letters,
350, 21-24.
Doi, E., Inui, T., Lee, T.W., Wachtler, T., and Sejnowski, T.J. (2003)
Spatio-chromatic receptive field properties derived from information-theoretic analyses of cone mosaic responses to natural scenes.
Neural Computation,
15, 397-417.
Tanaka, S., Inui, T. (2002).
Cortical involvement for action imitation of hand/arm postures versus finger cofiguration: An fMRI study.
NeuroReport,
13(13), 1599-1602.
Sakai, K., and Inui, T. (2002).
A feature-segmentation model of short-term visual memory.
Perception,
31, 579-589.
Tanaka, S., Inui, T., Iwaki, S., Konishi, J., and Nakai, T. (2001)
Neural substrates involved in imitating finger configurations: An fMRI study.
NeuroReport,
12, 1171-1174.
Okada, T., Tanaka, S., Nakai, T., Nishizawa, S., Inui, T., Sadato, N., Yonekura, Y., and Konishi, J. (2000).
Naming of animals and tools: A functional magnetic resonance imaging study of categorical differences in the human brain areas commonly used for naming visually presented objects.
Neuroscience Letters,
296, 33-36.
Sugio, T., and Inui, T. (2000).
Perceptual independence between identity and orientation in shape recognition.
Cognitive Studies,
7(4), 275-291.
Hayashi, T., and Inui, T. (2000).
Effect of visual feedback on reaching movements.
International Journal of Psychology,
35, 329.
Inui, T., Tanaka, S., Kato, C., Matsuo, K., Nakai, T., and Sugio, T. (2000).
Neural networks involved in action imitation and prediction learning of a sequence of actions.
International Journal of Psychology,
35, 288.
Misaki, M., and Inui, T. (2000).
Differences in effect of category learning on similarity estimation.
International Journal of Psychology,
35, 133.
Okada, T., Inui, T., Tanaka, S., Nishizawa, S., and Konishi, J. (2000).
Functional magnetic resonance imaging of human cognitive processes.
Japanese Psychological Research,
42, 26-35.
Inui, T., Tanaka, S., Okada, T., Nishizawa, S., Katayama, M., and Konishi, J. (2000).
Neural substrates for depth perception of the necker cube: A functional magnetic resonance imaging study in human subjects.
Neuroscience Letters,
282, 145-148.
Sugio, T., Inui, T., Matsuo, K., Matsuzawa, M., Glover, G. H., and Nakai, T. (1999).
The role of the posterior parietal cortex in human object recognition: A functional magnetic resonance imaging study.
Neuroscience Letters,
276, 45-48.
Nakai, T., Matsuo, K., Kato, C., Matsuzawa, M., Okada, T., Glover, G. H., Moriya, T., and Inui, T. (1999).
A functional magnetic resonance imaging study of listening comprehension of languages in human at 3 tesla-comprehension level and activation of the language areas.
Neuroscience Letters,
263, 33-36.
Asakura, N., and Inui, T. (1999).
A Bayesian model for perception of surfaces from binocular disparity.
Systems and Computers in Japan,
30, 32-42.
Asakura, N., and Inui, T. (1999).
Computational analysis of disparity modulation sensitivity: an explanation in terms of a Bayesian surface reconstruction.
Vision Research,
39, 1881-1887.
Umemura, H., and Inui, T. (1999).
Integration of multiple cues in shape from texture.
IEICE Transactions on Information and Systems,
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Inui, T., Otsu, Y., Tanaka, S., Okada, T., Nishizawa, T., and Konishi, J. (1998).
A functional MRI analysis of comprehension processes of Japanese sentences.
NeuroReport,
9, 3328-3328.
Makioka, S., Inui, T., and Yamashita, H. (1996).
Internal representation of two-dimensional shape.
Perception,
25, 949-966.
Inui, T., Morisaki, A., and Sugio, T. (1996).
How does the brain represent and categorize visual shapes?
Proceedings of the International Symposium: Concept Formation, Thinking
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Inui, T. (1996).
Mechanisms of Information integration in the brain.
In T. Inui, and J.L. McClelland (Eds.), Attention and Performance XVI (pp.3-12). The MIT Press.
Inui, T. (1994).
Visual reconstruction in the human modular systems.
In Ishiguro (Ed.), Cognitive Processing for Vision and Voice (pp.27-33). Philadelphia.
Kawato, M., Hayakawa, H., and Inui, T. (1993).
A forward-inverse optics model of reciprocal connections between visual cortical areas.
Network,
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Hongo, S., Kawato, M., Inui, T., and Miyake, S. (1992).
Contour extraction by local parallel and stochastic algorithm which has energy learning faculty.
Systems and Computers in Japan,
23(4), 26-35.
Kawato, M., Inui, T., Hongo, S., and Hayakawa, H. (1991).
Computational theory and neural network models of interaction between visual cortical areas.
ATR Technical Report A-0105.
Matsushita, H., Mori, Y., and Inui, T. (1991).
Hierarchical shape description using skeletons and hierarchical shape discrimination by neural networks.
Systems and Computers in Japan,
22(7), 75-83.
Kawato, M., Inui, T. (1991).
Computational theory and neural network model of interaction between visual cortical areas.
ATR Workshop on Modeling Human Visual Perception and Cognition, 36-40.
Inui, T., Hongo, S., and Kawato, M. (1990).
A computational model of brightness illusion and its implementation.
Perception,
19, 401.
Oyama, T., and Inui, T. (1990).
A multi-resolution network model of virtual line generation for dot patterns.
Perception,
19(3), 401.
Inui, T. (1989).
A model of human visual memory: data compression with multi-resolution.
Proceedings of the 6th Scandinavian Conference on Image analysis.
Inui, T. (1988).
Properties of human visual memory for block patterns.
Biological Cybernetics,
59, 179-187.
Miyake, S. and Inui, T. (1988).
Neural Computation Research for Vision-Simulation on a parallel Processing Computer.
In R. Trappl (Ed.), Cybernetics and Systems '88,
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Mimura, O, Inui, T., Kani, K., and Ohmi, E. (1984).
Retinal sensitivity and spatial summation in amblyopia.
Japanese Journal of Ophthalmology,
28, 389-400.
Inui, T., Ohmi, E., and Kani, K. (1984).
Analysis of small vergence eye-movement in stereopsis with random-dot stereograms.
Japanese Journal of Psychonomic Science,
3, 1-7.
Inui, T., and Miyamoto, K. (1984).
The effect of changes in visible area on facial recognition.
Perception,
13, 49-56.
Inui, T. (1983).
The constant field size of lateral interference between detectors at any eccentricity.
Japanese Journal of Psychonomic Science,
2, 17-19.
Inui, T. and Ohmi, E. (1982).
Length perception in Degeneratio Pigmentosa Retinae cases and normal subjects with limited visual field.
Japanese Journal of Ophthalmology,
26, 199-204.
Inui, T. and Miyamoto, K. (1981).
The time needed to judge the order of a meaningful string of pictures.
Journal of Experimental Psychology: Human Learning and Memory,
7, 393-396.
Mimura, O., Kani, K., and Inui, T. (1981).
Spatial summation in the foveal and parafo-veal region: Normal and amblyopic eye.
In E.L. Grave and G. Verriest (Eds.), Documenta Ophthalmologica Proceeding Series,
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Inui, T., Mimura, O., and Kani, K. (1981).
Retinal sensitivity and spatial summation in the foveal and parafoveal region.
Journal of the Optical Society of America,
71, 151-154.
Inui, T., Kawato, M., and Suzuki, R. (1978).
The mechanism of mental scanning in foveal vision.
Biological Cybernetics,
30, 147-155.