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Transcranial Direct Current Stimulation Improves Audioverbal Memory in Stroke Patients
Kazuta, T., Takeda, K., Osu, R., Tanaka, S., Oishi, A., Kondo, K. & Liu, M., 2017 Aug 1, In: American Journal of Physical Medicine and Rehabilitation. 96, 8, p. 565-571 7 p.Research output: Contribution to journal › Article › peer-review
8 Citations (Scopus) -
Transcranial direct current stimulation modulates the spinal plasticity induced with patterned electrical stimulation
Fujiwara, T., Tsuji, T., Honaga, K., Hase, K., Ushiba, J. & Liu, M., 2011 Sep, In: Clinical Neurophysiology. 122, 9, p. 1834-1837 4 p.Research output: Contribution to journal › Article › peer-review
24 Citations (Scopus) -
Transcranial direct current stimulation over the medial prefrontal cortex and left primary motor cortex (MPFC-lPMC) affects subjective beauty but not ugliness
Nakamura, K. & Kawabata, H., 2015 Dec 8, In: Frontiers in Human Neuroscience. 9, DEC, 654.Research output: Contribution to journal › Article › peer-review
17 Citations (Scopus) -
Transcranial direct current stimulation over the primary and secondary somatosensory cortices transiently improves tactile spatial discrimination in stroke patients
Fujimoto, S., Kon, N., Otaka, Y., Yamaguchi, T., Nakayama, T., Kondo, K., Ragert, P. & Tanaka, S., 2016 Mar 31, In: Frontiers in Neuroscience. 10, MAR, 128.Research output: Contribution to journal › Article › peer-review
24 Citations (Scopus) -
Transcranial extracellular impedance control (tEIC) modulates behavioral performances
Matani, A., Nakayama, M., Watanabe, M., Furuyama, Y., Hotta, A. & Hoshino, S., 2014 Jul 21, In: PloS one. 9, 7, e102834.Research output: Contribution to journal › Article › peer-review
Open Access1 Citation (Scopus) -
Transcranial magnetic stimulation for bipolar disorder with catatonic stupor: A case report
Takamiya, A., Kishimoto, T., Watanabe, K., Mimura, M. & Kito, S., 2015 Nov, In: Brain Stimulation. 8, 6, p. 1236-1237 2 p.Research output: Contribution to journal › Letter › peer-review
4 Citations (Scopus) -
Transcranial magnetic stimulation-induced changes in EEG and responses recorded from the scalp of healthy humans
Izumi, S. I., Takase, M., Arita, M., Masakado, Y., Kimura, A. & Chino, N., 1997 Aug 1, In: Electroencephalography and Clinical Neurophysiology. 103, 2, p. 319-322 4 p.Research output: Contribution to journal › Article › peer-review
36 Citations (Scopus) -
Transcranial magnetic stimulation modulates resting EEG functional connectivity between the left dorsolateral prefrontal cortex and limbic regions in medicated patients with treatment-resistant depression
Kito, S., Hasegawa, T., Takamiya, A., Noda, T., Nakagome, K., Higuchi, T. & Koga, Y., 2017 Mar 1, In: Journal of Neuropsychiatry and Clinical Neurosciences. 29, 2, p. 155-159 5 p.Research output: Contribution to journal › Article › peer-review
Open Access19 Citations (Scopus) -
Transcranial magnetic stimulation neurophysiology of patients with major depressive disorder: A systematic review and meta-analysis
Kinjo, M., Wada, M., Nakajima, S., Tsugawa, S., Nakahara, T., Blumberger, D. M., Mimura, M. & Noda, Y., 2021 Jan, In: Psychological Medicine. 51, 1, p. 1-10 10 p.Research output: Contribution to journal › Review article › peer-review
2 Citations (Scopus) -
Transcranial magnetic stimulation of the accessory nerve. Investigation of the site and mechanism of excitation in the cat
Gotoh, K., Ohira, T., Ishihara, M., Kobayashi, M., Nakamura, A., Toya, S. & Takase, M., 1995 Jan 1, In: Brain and Nerve. 47, 4, p. 363-367 5 p.Research output: Contribution to journal › Article › peer-review
4 Citations (Scopus) -
Transcranial magnetic stimulation of the central and peripheral motor pathways to the lingual muscles in cats
Kobayashi, M., Ohira, T., Ochiai, M., Mihara, B. & Kawase, T., 1999 Mar 1, In: Clinical Neurophysiology. 110, 3, p. 445-448 4 p.Research output: Contribution to journal › Article › peer-review
3 Citations (Scopus) -
Transcranial magnetic stimulation of the facial nerve - Identification of the actual excitation site in the cat
Gotoh, K., Ohira, T., Namiki, J., Ajimi, Y., Ishikawa, M., Shiobara, R., Toya, S. & Takase, M., 1993 Jan 1, In: Brain and Nerve. 45, 7, p. 655-660 6 p.Research output: Contribution to journal › Article › peer-review
1 Citation (Scopus) -
Transcranial magnetic stimulation of the oculomotor and abducens nerves: Determining the site of excitation in the cat
Kobayashi, M., Ohira, T., Ishihara, M., Kawase, T. & Takase, M., 1998 Jan 1, In: Journal of Clinical Neurophysiology. 15, 4, p. 358-363 6 p.Research output: Contribution to journal › Article › peer-review
1 Citation (Scopus) -
Transcranial magnetic stimulation of the parietal cortex facilitates spatial working memory: Near-infrared spectroscopy study
Yamanaka, K., Yamagata, B., Tomioka, H., Kawasaki, S. & Mimura, M., 2010 May, In: Cerebral Cortex. 20, 5, p. 1037-1045 9 p.Research output: Contribution to journal › Article › peer-review
46 Citations (Scopus) -
Transcript copy number estimation using a mouse whole-genome oligonucleotide microarray.
Carter, M. G., Sharov, A. A., VanBuren, V., Dudekula, D. B., Carmack, C. E., Nelson, C. & Ko, M. S. H., 2005, In: Genome biology. 6, 7, p. R61Research output: Contribution to journal › Article › peer-review
98 Citations (Scopus) -
Transcriptional Activation by Oct4 Is Sufficient for the Maintenance and Induction of Pluripotency
Hammachi, F., Morrison, G. M., Sharov, A. A., Livigni, A., Narayan, S., Papapetrou, E. P., O'Malley, J., Kaji, K., Ko, M. S. H., Ptashne, M. & Brickman, J. M., 2012 Feb 23, In: Cell Reports. 1, 2, p. 99-109 11 p.Research output: Contribution to journal › Article › peer-review
50 Citations (Scopus) -
Transcriptional activation of ATF6 by endoplasmic reticulum stressors
Namba, T., Ishihara, T., Tanaka, K. I., Hoshino, T. & Mizushima, T., 2007 Apr 6, In: Biochemical and Biophysical Research Communications. 355, 2, p. 543-548 6 p.Research output: Contribution to journal › Article › peer-review
41 Citations (Scopus) -
Transcriptional activation of heme oxygenase-1 gene in mouse spleen, liver and kidney cells after treatment with lipopolysaccharide or hemoglobin
Oshiro, S., Takeuchi, H., Matsumoto, M. & Kurata, S. I., 1999 Jul, In: Cell Biology International. 23, 7, p. 465-474 10 p.Research output: Contribution to journal › Article › peer-review
20 Citations (Scopus) -
Transcriptional blockade induces p53-dependent apoptosis associated with translocation of p53 to mitochondria
Arima, Y., Nitta, M., Kuninaka, S., Zhang, D., Fujiwara, T., Taya, Y., Nakao, M. & Saya, H., 2005 May 13, In: Journal of Biological Chemistry. 280, 19, p. 19166-19176 11 p.Research output: Contribution to journal › Article › peer-review
127 Citations (Scopus) -
Transcriptional control of the heme oxygenase gene during mouse spermatogenesis
KURATA, S. ., MATSUMOTO, M., HOSHI, M. & NAKAJIMA, H., 1993 Oct, In: European Journal of Biochemistry. 217, 2, p. 633-638 6 p.Research output: Contribution to journal › Article › peer-review
7 Citations (Scopus) -
Transcriptional control of the heme oxygenase gene in mouse M1 cells during their TPA-induced differentiation into macrophages
Kurata, S. I., Matsumoto, M. & Nakajima, H., 1996 Sep 1, In: Journal of Cellular Biochemistry. 62, 3, p. 314-324 11 p.Research output: Contribution to journal › Article › peer-review
22 Citations (Scopus) -
Transcriptional factors associated with epithelial-mesenchymal transition in choroidal neovascularization
Hirasawa, M., Noda, K., Noda, S., Suzuki, M., Ozawa, Y., Shinoda, K., Inoue, M., Ogawa, Y., Tsubota, K. & Ishida, S., 2011, In: Molecular vision. 17, p. 1222-1230 9 p.Research output: Contribution to journal › Article › peer-review
45 Citations (Scopus) -
Transcriptional pattern of a novel gene, expressed specifically after the point-of-no-return during sexualization, in planaria
Hase, S., Kobayashi, K., Koyanagi, R., Hoshi, M. & Matsumoto, M., 2003 Jan 1, In: Development Genes and Evolution. 212, 12, p. 585-592 8 p.Research output: Contribution to journal › Article › peer-review
24 Citations (Scopus) -
Transcriptional regulation of a new variant of human platelet-derived growth factor receptor α transcript by E2F-1
Minato, Y., Tashiro, E., Kanai, M., Nihei, Y., Kodama, Y. & Imoto, M., 2007 Nov 15, In: Gene. 403, 1-2, p. 89-97 9 p.Research output: Contribution to journal › Article › peer-review
15 Citations (Scopus) -
Transcriptional Regulation of Choline Acetyltransferase Gene by Cyclic AMP
Misawa, H., Takahashi, R. & Deguchi, T., 1993 Apr, In: Journal of Neurochemistry. 60, 4, p. 1383-1387 5 p.Research output: Contribution to journal › Article › peer-review
41 Citations (Scopus) -
Transcriptional regulation of human fibroblast growth factor receptor 1 by E2F-1
Kanai, M., Tashiro, E., Maruki, H., Minato, Y. & Imoto, M., 2009 Jun 1, In: Gene. 438, 1-2, p. 49-56 8 p.Research output: Contribution to journal › Article › peer-review
13 Citations (Scopus) -
Transcriptional regulation of organic anion transporting polypeptide SLCO4C1 as a new therapeutic modality to prevent chronic kidney disease
Suzuki, T., Toyohara, T., Akiyama, Y., Takeuchi, Y., Mishima, E., Suzuki, C., Ito, S., Soga, T. & Abe, T., 2011 Sep, In: Journal of Pharmaceutical Sciences. 100, 9, p. 3696-3707 12 p.Research output: Contribution to journal › Review article › peer-review
25 Citations (Scopus) -
Transcriptional Regulation of Perinatal Lung Maturation
Whitsett, J. A. & Matsuzaki, Y., 2006 Oct, In: Pediatric Clinics of North America. 53, 5, p. 873-887 15 p.Research output: Contribution to journal › Review article › peer-review
43 Citations (Scopus) -
Transcriptional regulation of SLURP2, a psoriasis-associated gene, is under control of IL-22 in the skin: A special reference to the nested gene LYNX1
Moriwaki, Y., Takada, K., Tsuji, S., Kawashima, K. & Misawa, H., 2015 Feb 12, In: International Immunopharmacology. 29, 1, p. 71-75 5 p.Research output: Contribution to journal › Article › peer-review
10 Citations (Scopus) -
Transcriptional regulation of steroid receptor coactivator-1 (SRC-1) in glucocorticoid action
Kurihara, I., Shibata, H., Suzuki, T., Ando, T., Kobayashi, S., Hayashi, M., Saito, I. & Saruta, T., 2000, In: Endocrine Research. 26, 4, p. 1033-1038 6 p.Research output: Contribution to journal › Article › peer-review
14 Citations (Scopus) -
Transcriptional regulation of the β-casein gene by cytokines: Cross- talk between STAT5 and other signaling molecules
Chida, D., Wakao, H., Yoshimura, A. & Miyajima, A., 1998 Nov 9, In: Molecular Endocrinology. 12, 11, p. 1792-1806 15 p.Research output: Contribution to journal › Article › peer-review
26 Citations (Scopus) -
Transcriptional repression by methylation: Cooperativity between a CpG cluster in the promoter and remote CpG-rich regions
Hug, M., Silke, J., Georgiev, O., Rusconi, S., Schaffner, W. & Matsuo, K., 1996 Feb 5, In: FEBS Letters. 379, 3, p. 251-254 4 p.Research output: Contribution to journal › Article › peer-review
28 Citations (Scopus) -
Transcriptional repression by the Pho4 transcription factor controls the timing of SNZ1 expression
Nishizawa, M., Komai, T., Morohashi, N., Shimizu, M. & Toh-e, A., 2008 Jun, In: Eukaryotic Cell. 7, 6, p. 949-957 9 p.Research output: Contribution to journal › Article › peer-review
9 Citations (Scopus) -
Transcriptional reprogramming of mature CD4 + helper T cells generates distinct MHC class II-restricted cytotoxic T lymphocytes
Mucida, D., Husain, M. M., Muroi, S., Van Wijk, F., Shinnakasu, R., Naoe, Y., Reis, B. S., Huang, Y., Lambolez, F., Docherty, M., Attinger, A., Shui, J. W., Kim, G., Lena, C. J., Sakaguchi, S., Miyamoto, C., Wang, P., Atarashi, K., Park, Y., Nakayama, T., & 5 others , 2013 Mar, In: Nature Immunology. 14, 3, p. 281-289 9 p.Research output: Contribution to journal › Article › peer-review
214 Citations (Scopus) -
Transcriptional silencing of Dickkopf gene family by CpG island hypermethylation in human gastrointestinal cancer
Maehata, T., Taniguchi, H., Yamamoto, H., Nosho, K., Adachi, Y., Miyamoto, N., Miyamoto, C., Akutsu, N., Yamaoka, S. & Itoh, F., 2008 May 7, In: World Journal of Gastroenterology. 14, 17, p. 2702-2714 13 p.Research output: Contribution to journal › Article › peer-review
67 Citations (Scopus) -
Transcription-associated mutagenesis increases protein sequence diversity more effectively than does random mutagenesis in Escherichia coli
Kim, H., Lee, B. S., Tomita, M. & Kanai, A., 2010, In: PloS one. 5, 5, e10567.Research output: Contribution to journal › Article › peer-review
6 Citations (Scopus) -
Transcription factor achaete-scute homologue 2 initiates follicular T-helper-cell development
Liu, X., Chen, X., Zhong, B., Wang, A., Wang, X., Chu, F., Nurieva, R. I., Yan, X., Chen, P., Van Der Flier, L. G., Nakatsukasa, H., Neelapu, S. S., Chen, W., Clevers, H., Tian, Q., Qi, H., Wei, L. & Dong, C., 2014, In: Nature. 507, 7493, p. 513-518 6 p.Research output: Contribution to journal › Article › peer-review
238 Citations (Scopus) -
Transcription Factor Hematopoietically Expressed Homeobox Protein (Hhex) Negatively Regulates Osteoclast Differentiation by Controlling Cyclin-Dependent Kinase Inhibitors
Watanabe, H., Okada, H., Hirose, J., Omata, Y., Matsumoto, T., Matsumoto, M., Nakamura, M., Saito, T., Miyamoto, T. & Tanaka, S., 2022 Apr, In: JBMR Plus. 6, 4, e10608.Research output: Contribution to journal › Article › peer-review
Open Access -
Transcription factor homeobox d9 drives the malignant phenotype of hpv18-positive cervical cancer cells via binding to the viral early promoter
Hayashi, S., Iwata, T., Imagawa, R., Sugawara, M., Chen, G., Tanimoto, S., Sugawara, Y., Tanaka, I., Matsui, T., Nishio, H., Nakamura, M., Katoh, Y., Mori, S., Kukimoto, I. & Aoki, D., 2021 Sep, In: Cancers. 13, 18, 4613.Research output: Contribution to journal › Article › peer-review
Open Access1 Citation (Scopus) -
Transcription factor homeobox D9 is involved in the malignant phenotype of cervical cancer through direct binding to the human papillomavirus oncogene promoter
Hirao, N., Iwata, T., Tanaka, K., Nishio, H., Nakamura, M., Morisada, T., Morii, K., Maruyama, N., Katoh, Y., Yaguchi, T., Ohta, S., Kukimoto, I., Aoki, D. & Kawakami, Y., 2019 Nov, In: Gynecologic Oncology. 155, 2, p. 340-348 9 p.Research output: Contribution to journal › Article › peer-review
6 Citations (Scopus) -
Transcription Factor MafB Coordinates Epidermal Keratinocyte Differentiation
Miyai, M., Hamada, M., Moriguchi, T., Hiruma, J., Kamitani-Kawamoto, A., Watanabe, H., Hara-Chikuma, M., Takahashi, K., Takahashi, S. & Kataoka, K., 2016 Sep 1, In: Journal of Investigative Dermatology. 136, 9, p. 1848-1857 10 p.Research output: Contribution to journal › Article › peer-review
30 Citations (Scopus) -
Transcription factor mutations and congenital hypothyroidism: Systematic genetic screening of a population-based cohort of Japanese patients
Narumi, S., Muroya, K., Asakura, Y., Adachi, M. & Hasegawa, T., 2010 Apr, In: Journal of Clinical Endocrinology and Metabolism. 95, 4, p. 1981-1985 5 p.Research output: Contribution to journal › Article › peer-review
77 Citations (Scopus) -
Transcription factor protein expression patterns by neural or neuronal progenitor cells of adult monkey subventricular zone
Tonchev, A. B., Yamashima, T., Sawamoto, K. & Okano, H., 2006, In: Neuroscience. 139, 4, p. 1355-1367 13 p.Research output: Contribution to journal › Article › peer-review
19 Citations (Scopus) -
Transcription Factors and Epigenetic Modulation: Its Therapeutic Implication in Chronic Kidney Disease
Hayashi, K. & Itoh, H., 2015 Jun 1, In: Archivum Immunologiae et Therapiae Experimentalis. 63, 3, p. 193-196 4 p.Research output: Contribution to journal › Review article › peer-review
6 Citations (Scopus) -
Transcription factors as therapeutic targets in chronic kidney disease
Hishikawa, A., Hayashi, K. & Itoh, H., 2018, In: Molecules. 23, 5, 1123.Research output: Contribution to journal › Review article › peer-review
Open Access15 Citations (Scopus) -
Transcription factor single-minded 2 (SIM2) is ubiquitinated by the RING-IBR-RING-type E3 ubiquitin ligases
Okui, M., Yamaki, A., Takayanagi, A., Kudoh, J., Shimizu, N. & Shimizu, Y., 2005 Sep 10, In: Experimental Cell Research. 309, 1, p. 220-228 9 p.Research output: Contribution to journal › Article › peer-review
16 Citations (Scopus) -
Transcription factors in osteoclast differentiation
Matsuo, K. & Irie, N., 2005 Sep, In: Nippon rinsho. Japanese journal of clinical medicine. 63, 9, p. 1541-1546 6 p.Research output: Contribution to journal › Review article › peer-review
5 Citations (Scopus) -
Transcription Factor Smad-Independent T Helper 17 Cell Induction by Transforming-Growth Factor-β Is Mediated by Suppression of Eomesodermin
Ichiyama, K., Sekiya, T., Inoue, N., Tamiya, T., Kashiwagi, I., Kimura, A., Morita, R., Muto, G., Shichita, T., Takahashi, R. & Yoshimura, A., 2011 May 27, In: Immunity. 34, 5, p. 741-754 14 p.Research output: Contribution to journal › Article › peer-review
97 Citations (Scopus) -
Transcription initiation mediated by initiator binding protein in Saccharomyces cerevisiae
Ohishi-Shofuda, T., Suzuki, Y., Yano, K. I., Sakurai, H. & Fukasawa, T., 1999 Feb 5, In: Biochemical and Biophysical Research Communications. 255, 1, p. 157-163 7 p.Research output: Contribution to journal › Article › peer-review
3 Citations (Scopus) -
Transcription regulation of the rRNA gene by a multifunctional nucleolar protein, B23/nucleophosmin, through its histone chaperone activity
Murano, K., Okuwaki, M., Hisaoka, M. & Nagata, K., 2008 May, In: Molecular and cellular biology. 28, 10, p. 3114-3126 13 p.Research output: Contribution to journal › Article › peer-review
115 Citations (Scopus)