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Hideki Derek Kawai

Explore the profile of Hideki Derek Kawai including associated specialties, affiliations and a list of published articles. Areas
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Articles 6
Citations 36
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Recent Articles
1.
Nakanishi M, Nemoto M, Kawai H
Neurosci Res . 2022 Apr; 181:55-65. PMID: 35381300
Systemic nicotine administration regulates neuronal activities in mouse auditory cortex. How nicotine regulates the spread of the activities across auditory cortical areas is not well known. We investigate this using...
2.
Shin H, Kawai H
PLoS One . 2021 Sep; 16(9):e0257395. PMID: 34534256
Sensory experience modulates proliferation, differentiation, and migration of oligodendrocyte progenitor cells (OPCs). In the mouse primary visual cortex (V1), visual deprivation-dependent modulation of OPCs has not been demonstrated. Here, we...
3.
Shin H, Kawai H
IBRO Neurosci Rep . 2021 Jul; 11:29-41. PMID: 34286312
Sensory experience influences proliferation and differentiation of oligodendrocyte progenitor cells (OPCs). Enhanced sensorimotor experience promoted the lineage progression of OPCs and myelination in the gray matter and white matter (WM)...
4.
Kakizaki M, Yamamoto Y, Otsuka M, Kitamura K, Ito M, Kawai H, et al.
J Biol Chem . 2020 Jul; 295(35):12449-12460. PMID: 32651230
Hepatitis B, a viral infection that affects the liver, is thought to affect over 257 million people worldwide, and long-term infection can lead to life-threatening issues such as cirrhosis or...
5.
Chang M, Kawai H
Brain Struct Funct . 2018 Sep; 223(9):4187-4209. PMID: 30187193
Laminar architecture of primary auditory cortex (A1) has long been investigated by traditional histochemical techniques such as Nissl staining, retrograde and anterograde tracings. Uncertainty still remains, however, about laminar boundaries...
6.
Chang M, Suzuki N, Kawai H
J Comp Neurol . 2018 Aug; 526(14):2257-2284. PMID: 30069894
Proper formation of laminar structures in sensory cortexes is critical for sensory information processing. Previous studies suggested that the timing of neuronal migration and the laminar position of cortical neurons...