Semi-automatic classification of birdsong elements using a linear support vector machine RO Tachibana, N Oosugi, K Okanoya PloS one 9 (3), e92584, 2014 | 67 | 2014 |
USVSEG: A robust method for segmentation of ultrasonic vocalizations in rodents RO Tachibana, K Kanno, S Okabe, KI Kobayasi, K Okanoya PloS one 15 (2), e0228907, 2020 | 52 | 2020 |
Transitioning between preparatory and precisely sequenced neuronal activity in production of a skilled behavior VK Daliparthi, RO Tachibana, BG Cooper, RHR Hahnloser, S Kojima, ... eLife 8, e43732, 2019 | 33 | 2019 |
Fast retrograde access to projection neuron circuits underlying vocal learning in songbirds DN Düring, F Dittrich, MD Rocha, RO Tachibana, C Mori, K Okanoya, ... Cell reports 33 (6), 2020 | 25 | 2020 |
Relative contributions of spectral and temporal resolutions to the perception of syllables, words, and sentences in noise-vocoded speech RO Tachibana, Y Sasaki, H Riquimaroux Acoustical Science and Technology 34 (4), 263-270, 2013 | 22 | 2013 |
Capturing the effects of domestication on vocal learning complexity T O'Rourke, PT Martins, R Asano, RO Tachibana, K Okanoya, C Boeckx Trends in cognitive sciences 25 (6), 462-474, 2021 | 21 | 2021 |
Multichannel instantaneous frequency analysis of ultrasound propagating in cancellous bone Y Nagatani, RO Tachibana The Journal of the Acoustical Society of America 135 (3), 1197-1206, 2014 | 19 | 2014 |
Acoustical cues for perception of emotional vocalizations in rats Y Saito, RO Tachibana, K Okanoya Scientific Reports 9 (1), 10539, 2019 | 18 | 2019 |
Variability in the temporal parameters in the song of the Bengalese finch (Lonchura striata var. domestica) RO Tachibana, T Koumura, K Okanoya Journal of Comparative Physiology A 201, 1157-1168, 2015 | 18 | 2015 |
Regulation of action selection based on metacognition in humans via a ventral and dorsal medial prefrontal cortical network S Yuki, H Nakatani, T Nakai, K Okanoya, RO Tachibana Cortex 119, 336-349, 2019 | 16 | 2019 |
Measuring context dependency in birdsong using artificial neural networks T Morita, H Koda, K Okanoya, RO Tachibana PLoS computational biology 17 (12), e1009707, 2021 | 15* | 2021 |
Maturation‐dependent control of vocal temporal plasticity in a songbird RO Tachibana, M Takahasi, NA Hessler, K Okanoya Developmental neurobiology 77 (8), 995-1006, 2017 | 15 | 2017 |
Loudness calibration of monosyllabic speech sounds in FW03 Y Nagatani, R Tachibana, T Sakaguchi, H Hosoi J Acoust Soc Jpn 64, 647-649, 2008 | 14 | 2008 |
Performance-dependent consolidation of learned vocal changes in adult songbirds RO Tachibana, D Lee, K Kai, S Kojima Journal of Neuroscience 42 (10), 1974-1986, 2022 | 10 | 2022 |
Undirected singing rate as a non-invasive tool for welfare monitoring in isolated male zebra finches H Yamahachi, AT Zai, RO Tachibana, AE Stepien, DI Rodrigues, ... PloS one 15 (8), e0236333, 2020 | 10 | 2020 |
Unconscious and distinctive control of vocal pitch and timbre during altered auditory feedback M Xu, RO Tachibana, K Okanoya, H Hagiwara, R Hashimoto, F Homae Frontiers in Psychology 11, 1224, 2020 | 8 | 2020 |
Novel approach for understanding the neural mechanisms of auditory-motor control: Pitch regulation by finger force RO Tachibana, M Yanagida, H Riquimaroux Neuroscience letters 482 (3), 198-202, 2010 | 8 | 2010 |
Differences in articulatory movement between voiced and voiceless stop consonants RO Tachibana, T Kitamura, M Fujimoto Acoustical Science and Technology 33 (6), 391-393, 2012 | 6 | 2012 |
Arousal state-dependent alterations in neural activity in the zebra finch VTA/SNc S Yanagihara, M Ikebuchi, C Mori, RO Tachibana, K Okanoya Frontiers in Neuroscience 14, 897, 2020 | 5 | 2020 |
Spontaneous variability predicts compensative motor response in vocal pitch control RO Tachibana, M Xu, R Hashimoto, F Homae, K Okanoya Scientific Reports 12 (1), 17740, 2022 | 3* | 2022 |