[1]. A strawberry yield prediction scheme suitable for non-parametric regression using general purpose IoT nodes Discover Internet of Things 5/135 - (2025) [Refereed] refereed [Internationally co-authored papers] non-internationally co-authored paper [Lead author or co-author] co-author [Author] Satoshi Yamazaki, Masaki Aono and Yoshikazu Kiriiwa [DOI] [2]. Intumescence: A Serious Physiological Disorder in Plants Reviews in Agricultural Science 12/ 182-212 (2024) [Refereed] refereed [Internationally co-authored papers] internationally co-authored paper [Lead author or co-author] co-author [Author] Natassia Clara Sita, Iriawati, Yoshikazu Kiriiwa, Katsumi Suzuki [DOI] [3]. Decrease of boron cross-linking ratio and morphological change in tomato plants under boron deficiency The Journal of Horticultural Science and Biotechnology / - (2024) [Refereed] refereed [Internationally co-authored papers] non-internationally co-authored paper [Lead author or co-author] co-author [Author] Katsumi Suzuki,Natassia Clara Sita,Daichi Suzuki,Mami Numajiri,Azusa Kinoshita &Yoshikazu Kiriiwa [DOI] [4]. Determination of fossil-derived carbon ratio of tomato plants in greenhouse with CO2 enrichment using biobased content method Scientia Horticulturae 327/ 112872- (2024) [Refereed] refereed [Internationally co-authored papers] non-internationally co-authored paper [Lead author or co-author] co-author [Author] Katsumi Suzuki , Takaaki Yamakawa, Shigeru Itoh, Naoki Ohishi, Yoshikazu Kiriiwa [DOI] [5]. Incidence of Intumescence Injury in Several Tomato Cultivars Under Different Calcium Conditions The Horticulture Journal 92/4 476-484 (2023) [Refereed] refereed [Internationally co-authored papers] internationally co-authored paper [Lead author or co-author] co-author [Author] Natassia Clara Sita, Asuka Kousaka, Risa Tamoi, Chiaki Ozawa, Iriawati, Yoshikazu Kiriiwa, Katsumi Suzuki [DOI]
|
[1]. (2025) [Book type]book(research) [Sole author, co-author, or author and editor] contributor [Author]NPO法人日本養液栽培研究会編 [Total page number] 212 [REP page number] 87-90 [2]. (2018) [Book type]book(research) [Sole author, co-author, or author and editor] editor [Author]日本養液栽培研究会編 [Total page number] 185 [REP page number] 42-43 [3]. (2015) [Book type]book(research) [Sole author, co-author, or author and editor] joint work [Author]切岩祥和 [Total page number] 1165 [REP page number] 875-885 [4]. (2014) [Book type]book(educational) [Sole author, co-author, or author and editor] joint work [Author]切岩 祥和 [Notes] 「少量培地耕の理論とDトレイシステム」P191-201 [5]. (2012) [Book type]book(educational) [Sole author, co-author, or author and editor] joint work [Author]農業施設学会
|
[1]. 超音波照射時のキャビテー ションによる活性酸素種発 生調査と発芽の特性評価 園芸学会 (2026/3/) other [Presenter]杉山玄大・木下あずさ・大野幸子・鈴木克己・切岩祥和 [2]. 超音波の照射タイミングお よび照射部位が発芽と初期 生育に及ぼす影響 園芸学会 (2026/3/) other [Presenter]木下あずさ・陳怡霏・大宮瑞香・大野幸子・ 鈴木克己・切岩祥和 [3]. 超音波種子処理したフリル レタスにおけるチップバー ン発生を軽減する作用機構 の検討 園芸学会 (2026/3/) other [Presenter]和田萌絵・木下あずさ・大野幸子・鈴木克己・ 切岩祥和 [4]. シリコン樹脂, HPC, ローダミンB 等を利用した気孔の開発方法の開発 園芸学会 (2026/3/) other [Presenter]中野真那・切岩祥和・鈴木克己 [5]. トマト切断葉における水泡症発生の品種間差異 園芸学会 (2026/3/) other [Presenter]鈴木克己・清水聖充・切岩祥和
|
[1]. joint (with other institution) ( 2010/4 ~ 2011/3 ) [2]. funded (private) ( 2009/4 ) [3]. funded (private) ( 2007/4 ) [4]. joint (with other institution) ( 2006/11 ~ 2007/3 ) [5]. funded (private) ( 2006/6 ~ 2007/2 )
|
[1]. 急変する気象条件に対する植物適応能力を強化する超音波処理技術の開発 ( 2022/4 ~ 2025/3 ) Grant-in-Aid for Scientific Research (C) leader [2]. 高温耐性に優れる植物養成における超音波照射利用技術の開発 ( 2019/4 ~ 2022/3 ) Grant-in-Aid for Scientific Research (C) leader [3]. トマトの夏期着色不良果の発生要因の解明とその対策技術の確立 ( 2016/4 ) Grant-in-Aid for Scientific Research (C) leader [4]. 担子菌類-植物共生メカニズムの解明及び劣悪環境下における食糧生産への応用 ( 2015/4 ) Grant-in-Aid for Scientific Research (B) member [5]. 近未来予測型農業を拓くIoTビッグデータの研究と実証 ( 2015/4 ) Grant-in-Aid for Scientific Research (C) member |
[1]. 作物栽培環境制御のための遅延蛍光を用いた新規光合成活性測定システムの構築 (2016/4 ) [Offer orgnization] 一般財団法人東海産業技術振興財団 [2]. 農業ビジネス経営体育成のための教育体制・プログラムの構築・検証 (2010/4 ) [Offer orgnization] 経済産業省 [System name] 平成22年度産学連携人材育成事業(産学人材育成パートナーシップ事業) [3]. 養液栽培培地の極少量化技術による省力・軽労化および安定化技術の開発 (2010/4 ) [Offer orgnization] 農林水産省 [System name] 農作業の軽労化に向けた農業自動化・アシストシステムの開発 [4]. 無気泡酸素の添加による水耕栽培葉菜類の生育・収量促進と品質改善のための栽培システムに関する研究開発 (2006/4 ) [Offer orgnization] 財団法人しずおか産業創造機構 [System name] 経営革新等研究開発事業 [5]. 高輝度LEDと亜臨界水抽出法による薬用植物生産プロセスの構築 (2006/4 ) [Offer orgnization] 経済産業省 [System name] 地域新生コンソーシアム研究開発事業 |
[1]. (2016/3) [Notes] 国立大学法人静岡大学
|
[1]. 日本養液栽培研究会主催夏の学校「実用技術編」開催 (2017/9) [Role at conference, etc.] is leader [Site of conference, etc.] 静岡大学 [Notes] 養液栽培技術の普及を目的とした技術研修会(9/27-29)
|
[1]. 学術雑誌等の編集(日本養液栽培研究会) (2009/4 ) [Notes] 編集委員 |