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Aging Cell|September 28, 2025
Age-Associated Transcriptomic and Epigenetic Alterations in Mouse HippocampusMerve Bilgic, Rinka Obata, Vlada-Iuliana Panfil, et al.Proceedings of the National Academy of Sciences of the United States of America|April 8, 2024
Developmental trajectories of GABAergic cortical interneurons are sequentially modulated by dynamic <i>FoxG1</i> expression levelsGoichi Miyoshi, Yoshifumi Ueta, Yuki Yagasaki, et al.Iscience|January 5, 2026
LPLAT11/MBOAT7-driven phosphatidylinositol remodeling ensures radial glial cell integrity in developing neocortexYuki Ishino, Yusuke Kishi, Taiga Iwama, et al.Molecular Neurodegeneration|September 5, 2017
Quantification of plasma phosphorylated tau to use as a biomarker for brain Alzheimer pathology: pilot case-control studies including patients with Alzheimer's disease and down syndromeHarutsugu Tatebe, Takashi Kasai, Takuma Ohmichi, et al.Development (Cambridge, England)|June 12, 2025
In vivo transition in chromatin accessibility during differentiation of deep-layer excitatory neurons in the neocortexSeishin Sakai, Yurie Maeda, Mai Saeki, et al.Drug Discoveries & Therapeutics|March 8, 2021
Ezh1 regulates expression of Cpg15/Neuritin in mouse cortical neuronsShun Utsunomiya, Yusuke Kishi, Masafumi Tsuboi, et al.Proceedings of the National Academy of Sciences of the United States of America|May 13, 2016
PDK1-Akt pathway regulates radial neuronal migration and microtubules in the developing mouse neocortexYasuhiro Itoh, Maiko Higuchi, Koji Oishi, et al.Proceedings of the National Academy of Sciences of the United States of America|May 2, 2012
Apoptotic marginal zone deletion of anti-Sm/ribonucleoprotein B cellsYusuke Kishi, Tetsuya Higuchi, Shirly Phoon, et al.Cell Reports|September 16, 2020
Setd1a Insufficiency in Mice Attenuates Excitatory Synaptic Function and Recapitulates Schizophrenia-Related Behavioral AbnormalitiesKenichiro Nagahama, Kazuto Sakoori, Takaki Watanabe, et al.Nature Communications|June 19, 2021
FoxG1 regulates the formation of cortical GABAergic circuit during an early postnatal critical period resulting in autism spectrum disorder-like phenotypesGoichi Miyoshi, Yoshifumi Ueta, Akiyo Natsubori, et al.Pageof 5