Updated on 2024/10/01

写真a

 
SUZUKI Naoya
 
Organization
Graduate School of Science Assistant Professor
Graduate School
Graduate School of Science
Undergraduate School
School of Science
Title
Assistant Professor
Contact information
メールアドレス

Degree 1

  1. 理学博士 ( 1989.3   名古屋大学 ) 

Research Interests 2

  1. synapse

  2. neuron

Research Areas 1

  1. Others / Others  / 生物物理学

Current Research Project and SDGs 1

  1. The Mechanism of the plasticity at the synapse

Education 2

  1. Nagoya University   Graduate School, Division of Natural Science

    1984.4 - 1989.3

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    Country: Japan

  2. Nagoya University   Faculty of Science

    1980.4 - 1984.3

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    Country: Japan

Professional Memberships 3

  1. 日本生物物理学会

  2. 日本神経科学学会

  3. 日本生理学会

Committee Memberships 1

  1. 名古屋工業大学後援会   常任幹事  

    2022.4 - 2023.3   

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    Committee type:Other

 

Papers 24

  1. Effects of intravesicular loading of a Ca2+ chelator and depolymerization of actin fibers Reviewed

    K.Narita, N.Suzuki, N.Himi, T.Murayama, T.Nakagawa, N.Okabe, E.Nakamura-Maruyama, N.Hayashi, I.Sakamoto, O.Miyamoto, and K.Kuba

    Eur. J. Neurosci.   Vol. 50 ( 1 ) page: 1700-1711   2019.7

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    Language:English   Publishing type:Research paper (scientific journal)  

    DOI: 10.1111/ejn.14353

  2. Short-term synaptic plasticity and residual Ca2+ hypothesis on its origin

    Brain Science   Vol. 23 ( 8 ) page: 691-695   2001

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    Language:Japanese  

  3. Control of transmitter release by Ca2+ and Ca2+ buffering

    Brain Science   Vol. 23 ( 4 ) page: 287-295   2001

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    Language:Japanese  

  4. Facilitation of neurotransmitter release at the spiny lobster neuromuscular junction Reviewed

    S. Ogawa, T. Takeuchi, K. Ohnuma, N. Suzuki, A. Miwa, N. Kawai, H. Kijima

    Neuroscience Reseach   Vol. 37 ( 1 ) page: 33-48   2000

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    Language:English   Publishing type:Research paper (scientific journal)  

  5. *Ca^2+^ dynamics at the frog motor terminal (共著) Reviewed

    Pflugers Archiv - European Journal of Physiology   Vol. 440 ( 3 ) page: 351-365   2000

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    Language:English   Publishing type:Research paper (scientific journal)  

  6. Cooperative Ca^2+^ Removal from Presynaptic Terminals of the Spiny Lobster Neuromuscular Junction (共著)

    Biophysical Journal   Vol. 76 ( 4 ) page: 1819-1834   1999

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    Language:English  

  7. Ca^2+^ dynamics in presynaptic terminal

    Clinical Calcium   Vol. 8 ( 2 ) page: 170-179   1998

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    Language:Japanese  

  8. Ca^2+^ Dynamics and Transmitter Release at the Presynaptic Nerve Terminal

    Cell Technology   Vol. 16 ( 1 ) page: 40-47   1997

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    Language:Japanese  

  9. Visualization and time course measurement of [Ca^2+^] in the presynaptic terminal

    Biophysics   Vol. 37 ( 5 ) page: 223-224   1997

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    Language:Japanese  

  10. *Preparation of Bead-Tailed Action Filaments:Estimation of the Torque Produced by the Sliding Force in an In Vitro Motility Assay (共著) Reviewed

    Biophysical Journal   Vol. 70 ( 1 ) page: 401-408   1996

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    Language:English   Publishing type:Research paper (scientific journal)  

  11. Presynaptic Effects of a Trinitrobenzene Analogue at the Frog Neuromuscular Junction (共著)

    Journal of Neurophysiology   Vol. 76 ( 3 ) page: 1735-1743   1996

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    Language:English  

  12. Compressibility and specific volume of actin decrease upon G to F transformation (共著)

    Biochemica at Biophysica Acta   Vol. 1292 ( 2 ) page: 265-272   1996

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    Language:English  

  13. Microscopic Analysis of the Nature of Forces in a Single Actomyosin motor and its Assemblage (共著)

    Neurochemistry(Moscow)   Vol. 13 ( 4 ) page: 305-313   1996

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    Language:English  

  14. Mechanical measurements of single actomyosin motor force (共著)

    Biophysical Journal   Vol. 68 ( 4 ) page: 286S-290S   1995

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    Language:English  

  15. *Stepwise motion of an actin filament over a small number of heavy meromyosin molecules is revealed in an in vitro motility assay (共著) Reviewed

    Journal of Biochemistry   Vol. 115 ( 4 ) page: 644-647   1994

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    Language:English   Publishing type:Research paper (scientific journal)  

  16. Adiabatic compressibility of Myosin Subfragment-1 and heavy meromyosin with or without nucleotide (共著)

    Biophysical Journal   Vol. 65 ( 11 ) page: 1899-1905   1993

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    Language:English  

  17. Optical tweezers

    SEITAI NO KAGAKU   Vol. 44 ( 2 ) page: 159-165   1993

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    Language:Japanese  

  18. Micromanipulation of motor proteins using optical tweezers

    Parity   Vol. 7 ( 10 ) page: 37-38   1992

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    Language:Japanese  

  19. Binding mode of cytochalasin B to F-actin is altered by lateral binding of regulatory proteins (共著)

    Journal of Biochemistry   Vol. 109 ( 1 ) page: 19-23   1991

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    Language:English  

  20. High-affinity binding of cytochalasin B to the B-end of F-actin loses its inhibitory effect on subunit exchange when the bound nucleotide is ADP (共著)

    Journal of Biochemistry   Vol. 110 ( 4 ) page: 514-519   1991

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    Language:English  

  21. Dynamic polarity of F-actin (共著)

    BIOPHYSICS   Vol. 30 ( 5 ) page: 6-12 (220-226)   1990

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    Language:Japanese  

  22. Subunit flow in F-actin under steady-state conditions. Application of a novel method to determination of the rate of subunit exchange of F-actin at the terminals (共著)

    Biophysical Chemistry   Vol. 33 ( 2 ) page: 177-193   1989

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  23. Ca^2+^-dependent regulation of the dynamic polarity of F-actin under the influence of tropomyosin and troponin(共著)

    Biophysical Chemistry   Vol. 33 ( 2 ) page: 195-204   1989

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    Language:English  

  24. Dynamic structure of F-actin and its Ca-dependent regulation under the influence of tropomyosin-troponin system (共著)

    Mol. Cell Biol. (Life Sci. Adv. )   Vol. 7   page: 143-148   1988

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    Language:English  

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Books 3

  1. *蛍光分光とイメージングの手法

    御橋廣眞、石井由晴、三木正雄、金城政孝、西村吾朗、船津高志、鈴木直哉、長谷川聡( Role: Joint author)

    学会出版センター  2006.6 

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    Language:Japanese

  2. An analysis of stepwise motion of an actin filament over glass-bound heavy meromyosin (共著)

    Optical methods in biomedical and environmental sciences. H. Ohzu and S. Komatsu, editors. Elsevier Science Publisher  1994 

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    Language:English

  3. Orientation of actin monomers in moving actin filaments (共著)

    Mechanism of myofilament sliding in muscle contraction. H. Sugi and G. H. Pollack, editors. Plenum Publishing Coop. , New York  1993 

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    Language:English

Presentations 12

  1. Investigation of effect of a casein kinase 2 inhibitor on the stimulation induced short-term presynaptic plasticity of transmitter release enhancement at the frog neuromuscular junction International conference

    Naoya Suzuki

    The 47th Annual Meeting of the Japan Neuroscience Society/The 8th FAONS Congress  2024.7.26  Japan Neuroscience Society

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    Event date: 2024.7

    Language:English   Presentation type:Poster presentation  

    Venue:Fukuoka Convention Center   Country:Japan  

  2. カエル神経筋接合部シナプスにおける短期可塑性各成分間の数学的関係性:増進・増強・促通成分の関係性は積なのか和なのか

    鈴木直哉

    第61回日本生物物理学会年会  2023.11.16  日本生物物理学会

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    Event date: 2023.11

    Language:English   Presentation type:Poster presentation  

    Venue:名古屋市 名古屋国際会議場   Country:Japan  

  3. Investigation of effect of a casein kinase 2 inhibitor on the short-term presynaptic plasticity at the frog neuromuscular junction: irreversible enhancement of augmentation and potentiation.

    Naoya Suzuki

    The 100th Aniversary Annual Meeting of The Physiological Society of Japan   2023.3.14  The Physiological Society of Japan

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    Event date: 2023.3

    Language:English   Presentation type:Poster presentation  

    Venue:Kyoto   Country:Japan  

  4. Investigation of the mathematical relationship among components of short-term synaptic plasticity, augmentation, potentiation, and facilitation, at the frog neuromuscular junction International conference

    Naoya Suzuki

    The 1st CJK International Meeting  2021.7.31 

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    Event date: 2021.7

    Language:English   Presentation type:Poster presentation  

  5. Investigation of the mathematical relationship among components of short-term synaptic plasticity, relationship of augmentation and potentiation with facilitation, at the frog neuromuscular junction

    Naoya Suzuki

    2021.3.28 

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    Event date: 2021.3

    Language:English   Presentation type:Poster presentation  

  6. TNBS, a denaturing reagent, mimics the actions of Botulinunum neurotoxins on the synaptic plasticity

    Yasuhiro Imafuku, Naoya Suzuki, Koh-ichi Enomoto, Hiroko Kataoka, Isao Ito, Takashi Maeno

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    Event date: 2019.7

    Language:English   Presentation type:Poster presentation  

    Country:Japan  

  7. The mathematical relationship between fast- and slow-component of facilitation at the frog NMJ is additive, multiplicative, or power of their summation

    Naoya Suzuki, Junpei Yamaguchi

    2018.7.27 

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    Event date: 2018.7

    Language:English   Presentation type:Poster presentation  

  8. Investigation of the mathematical relationship among components of facilitation at the frog neuromuscular junction: Additive or multiplicative

    Naoya Suzuki

    2017.3.30 

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    Event date: 2017.3

    Language:English  

  9. Binomial distribution analysis of short-term synaptic plasticity at the frog neuromuscular junction: n increases in facilitation and p increases in potentiation

    Naoya Suzuki

    2014.9.12  日本神経科学学会

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    Event date: 2014.9

    Language:English   Presentation type:Poster presentation  

  10. Binomial distribution analysis of two components of short-term synaptic plasticity, facilitation and potentiation, at the frog neuromuscular junction

    Naoya Suzuki

    2014.3.17 

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    Event date: 2014.3

    Language:English   Presentation type:Poster presentation  

  11. Binomial distribution analysis of one component of the short-term synaptic plasticity, facilitacion, at the frog neuromuscular junction.

    Naoya Suzuki

    2011.9.15 

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    Event date: 2011.9

    Language:English   Presentation type:Poster presentation  

  12. 共焦点レーザー走査顕微鏡法

    鈴木直哉

    日本分光学会 第43回夏期セミナー 蛍光分光とイメージングの手法 

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    Event date: 2007.8

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

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Teaching Experience (On-campus) 30

  1. 物理学実験Ⅱ

    2024

  2. 物理学実験Ⅰ

    2024

  3. 物理学実験Ⅱ

    2023

  4. 物理学実験Ⅰ

    2023

  5. 物理学実験Ⅱ

    2022

  6. 物理学実験Ⅰ

    2022

  7. 物理学実験Ⅱ

    2021

  8. 物理学実験Ⅰ

    2021

  9. 物理学実験Ⅱ

    2020

  10. 物理学実験Ⅰ

    2020

  11. 物理学実験Ⅰ

    2019

  12. 物理学実験Ⅱ

    2019

  13. 物理学実験Ⅱ

    2018

  14. 物理学実験Ⅰ

    2018

  15. 物理学実験Ⅱ

    2017

  16. 物理学実験Ⅰ

    2017

  17. 物理学実験Ⅱ

    2016

  18. 物理学実験Ⅰ

    2016

  19. 物理学実験Ⅱ

    2015

  20. 物理学実験Ⅰ

    2015

  21. 物理学実験Ⅱ

    2014

  22. 物理学実験Ⅰ

    2014

  23. 物理学実験Ⅱ

    2013

  24. 物理学実験Ⅰ

    2013

  25. 物理学実験Ⅱ

    2012

  26. 物理学実験Ⅰ

    2012

  27. 物理学実験Ⅰ

    2011

  28. 物理学実験Ⅱ

    2011

  29. 物理学実験

    2010

  30. 分子集合体の物性セミナー

    2010

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