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Development, Growth & Differentiation|April 7, 2004
The mechanism of Drosophila leg development along the proximodistal axisTetsuya KojimaCurrent Opinion in Insect Science|May 20, 2017
Developmental mechanism of the tarsus in insect legsTetsuya KojimaJournal of Visualized Experiments : Jove|February 3, 2025
Long-Term Live Imaging of Drosophila Pupal Leg Development After Puparium RemovalShotaro Hiraiwa, Tetsuya KojimaDevelopmental Biology|March 1, 2005
A concerted action of a paired-type homeobox gene, aristaless, and a homolog of Hox11/tlx homeobox gene, clawless, is essential for the distal tip development of the Drosophila legTetsuya Kojima, Takuya Tsuji, Kaoru SaigoBMC Evolutionary Biology|January 27, 2018
The pivotal role of aristaless in development and evolution of diverse antennal morphologies in moths and butterfliesToshiya Ando, Haruhiko Fujiwara, Tetsuya KojimaMechanisms of Development|July 1, 2008
Hox genes regulate the same character by different strategies in each segmentTakuya Tsubota, Kaoru Saigo, Tetsuya KojimaCommunications Biology|January 20, 2021
A corset function of exoskeletal ECM promotes body elongation in DrosophilaReiko Tajiri, Haruhiko Fujiwara, Tetsuya KojimaMechanisms of Development|October 10, 2006
Fate map of the distal portion of Drosophila proboscis as inferred from the expression and mutations of basic patterning genesKeiichiro Yasunaga, Kaoru Saigo, Tetsuya KojimaDevelopmental Biology|June 14, 2011
Dramatic changes in patterning gene expression during metamorphosis are associated with the formation of a feather-like antenna by the silk moth, Bombyx moriToshiya Ando, Tetsuya Kojima, Haruhiko FujiwaraThe International Journal of Prosthodontics|July 12, 2003
Marginal and internal fit of Cerec 3 CAD/CAM all-ceramic crownsTakashi Nakamura, Nobuyoshi Dei, Tetsuya Kojima, et al.Pageof 6