Rchr
J-GLOBAL ID:200901059186140071   Update date: Jan. 30, 2024

Goto Naoshige

ゴトウ ナオシゲ | Goto Naoshige
Affiliation and department:
Research field  (4): Aquaculture ,  Space and planetary science ,  Atmospheric and hydrospheric science ,  Environmental dynamics
Research keywords  (6): 物質循環 ,  生物地球化学 ,  環境科学 ,  Material Cycle ,  Geochemistry ,  limnology
Research theme for competitive and other funds  (9):
  • 2020 - 2023 Influence of changes in lake water circulation processes due to global warming on denitrification in the sediment at Lake Biwa
  • 2019 - 2022 Monitoring observation aimed at elucidating of a new phenomena in the phytoplankton community dynamics using the optical measurement methods
  • 2018 - 2021 Relationship between nutrient loading and fisheries yield: Does water quality control cause fisheries yield to deteriorate?
  • 2012 - 2015 Continuous measurement of primary production by phytoplankton using the optical method
  • 2002 - 2005 陸水域におけるシリカシンクに関する研究~ 河川・湖沼におけるシリカ循環の生物地球化学過程に関する研究~
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Papers (11):
  • Maho Iwaki, Kazuhide Hayakawa, Naoshige Goto. An Estimation of Precipitation Retention Time Using Depth Metres in the Northern Basin of Lake Biwa. Atmosphere. 2022. 13. 5
  • Ken'ichi Osaka, Rei Yokoyama, Takaaki Ishibashi, Naoshige Goto. Effect of dissolved oxygen on nitrogen and phosphorus fluxes from lake sediments and their thresholds based on incubation using a simple and stable dissolved oxygen control method. Limnology and Oceanography: Methods. 2022. 20. 1. 1-14
  • Peixue Song, Rong Yi, Shoko Tanabe, Naoshige Goto, Kensuke Seto, Maiko Kagami, Syuhei Ban. Temporal variation in community structure of zoosporic fungi in Lake Biwa, Japan. Aquatic Microbial Ecology. 2021. 87. 17-28
  • Naoshige Goto, Yuka Tanaka, Osamu Mitamura. Relationships between carbon flow through freshwater phytoplankton and environmental factors in Lake Biwa, Japan. FUNDAMENTAL AND APPLIED LIMNOLOGY. 2014. 184. 4. 261-275
  • OTA Yohei, GOTO Naoshige, BAN Syuhei. Estimation of in situ primary productivity using chlorophyll fluorescence technique in phytoplankton and its verification. Japanese Journal of Limnology (Rikusuigaku Zasshi). 2013. 74. 3. 173-181
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MISC (35):
  • 後藤 直成. びわ湖をみるリモートセンシング技術. 滋賀県立大学環境科学部環境科学研究科年報. 2021. 25. 8-10
  • ハヤカワ カズヒデ, サトウ ユウイチ, オカモト タカヒロ, ナガタ タカマル, ゴトウ ナオシゲ, トミオカ ノリコ, ナカノ シンイチ. 琵琶湖における水質管理のあり方に関する研究と課題. 2020. 25. 1・2. 79-86
  • TSUKAMOTO Hiroki, GOTO Naoshige, YOSHIHARA Ayu, TAKAGI Yuta, ARAI Nari, HAYASHI Masataka, ISHIZAKA Joji. An Assessment of Chlorophyll a Concentration using Satellite Remote Sensing in Lake Biwa. Journal of The Remote Sensing Society of Japan. 2019. 39. 2. 103-111
  • 後藤 直成. びわ湖を調べる. 滋賀県立大学環境科学部環境科学研究科年報. 2019. 23. 13-15
  • Naoshigc Goto, Kaname Fukuda, Saori Omura, Aoi Yoshimura, Shuhei Ban. Sediment oxygen demand and bottom sediment environment in the northern part of the North Basin of Lake Biwa, Japan. Japanese Journal of Limnology. 2017. 78. 2. 169-178
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Education (2):
  • - 2000 Nagoya University
  • - 2000 Nagoya University Graduate School, Division of Natural Science
Professional career (1):
  • (BLANK) (Nagoya University)
Work history (7):
  • 2022 - 現在 The University of Shiga Prefecture
  • 2009 - 2022 - 滋賀県立大学環境科学部准教授
  • 2007 - 2009 The University of Shiga Prefecture School of Environmental Science
  • 2001 - 2007 The University of Shiga Prefecture School of Environmental Science
  • 2001 - 2001 日本学術振興会特別研究員
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Association Membership(s) (2):
日本水環境学会 ,  日本陸水学会
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