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静電場スクリーン研究会

Research Association of
Electric Field Screen Supporters
TEL.+81-0742-43-5223


English books

Phytoprotection Science and Technology: comprehensive approaches to crop protection. Edited by Hideyoshi Toyoda and Yoshinori Matsuda; RAEFSS Publishing Department, Nara, Japan, 2015, pp. 1-299
Contents
Chapter 1: Introduction of unremitting wide-ranging applications to crop protection
Chapter 2: An electric field screen for cultivating crop plants in spore-free and pest-free spaces
Chapter 3: Electrostatic devices for eradicating pathogens and insect pests on leaves
Chapter 4: Chemical treatments for suppressing multiplication or growth of bacterial and fungal phytopathogens
Chapter 5: Tissue culture-based plant breeding for resistance to viral, bacterial and fungal diseases
Chapter 6: Biological control of bacterial and fungal pathogens by use of antagonistic microroganisms
Chapter 7: Biological control of phytophagous insect pests by chitinolytic bacteria








Electric field screen; Principles and applications.
Edited by Hideyoshi Toyoda and Yoshinori Matsuda; Nobunkyo Production, Tokyo, Japan, 2015, pp. 1-238.

Contents
Unit 1: Introduction
Chapter 1: Basic concepts for constructing an electric field screen
Unit 2 Single-charged monopolar electric field screen (SM-screen)
Chapter 2: Trapping of air-borne spores with an electrified insulated conductor (electrostatic spore precipitator): Breakthrough invention for creating a single-charged monopolar electric field screen
Chapter 3: Construction of a spore-free electrostatic nursery shelter with SM-screens
Chapter 4: An ozone generative electrostatic nursery shelter for dual control of rhizosphere and phyllosphere pathogens of hydroponic tomatoes
Unit 3: Single-charged dipolar electric field screen (SD-screen)
Chapter 5: Electrostatic trapping of insect pests permeating a conventional woven insect net: Invention of single-charged dipolar electric field screen
Chapter 6: Insect electricity deprivation as an initial event for pest trapping in a static electric field of SD-screen
Chapter 7: Mechanism for insect attraction and restriction in a static electric field of SD-screen
Chapter 8: Electrostatic trap with an insect-discharge recorder for multiple real-time monitoring of pests prowling in a warehouse
Chapter 9: Practical application of SD-screen to an exclusion of flying insect pests and airborne fungal conidia from greenhouses with a good air penetration
Chapter 10: Dual functions of SD-screen: Repelling and capturing of insects reaching the electric field screen
Chapter 11: Avoidance of an electric field by insects: Fundamental biological phenomenon for an electrostatic pest-exclusion strategy
Unit 4: Double-charged dipolar electric field screen (DD-screen)
Chapter 12: Double-charged dipolar electric field screen (DD-screen): An oppositely charged insect exclusion screen with gap-free multiple electric fields
Chapter 13: Electrostatic measurement of dischargeable electricity and bioelectric potentials produced by insect muscular movements
Chapter 14: Electric lines of force as an additional explanation for an electric dipolar screen with oppositely polarized insulators for excluding whiteflies from greenhouses
Chapter 15: Prevention of whitefly entry from a greenhouse entrance by furnishing an airflow-oriented pre-entrance room guarded with DD-screens
Chapter 16: Complete capturing of wind-carried airborne fungal spores by three-layered DD-screens
Chapter 17: An electrostatic nursery shelter for raising pest-free and pathogen-free tomato seedlings in an open-window greenhouse environment
Chapter 18: Safe housing ensured by an electric field screen that excludes insect-net permeating haematophagous mosquitoes carrying human pathogens
Unit 5: Supplementary electrostatic devices: Electrostatic insect-sweeper and corona-discharger probe
Chapter 19: Electrostatic insect-sweeper for eliminating pests colonizing host plants: a complementary pest control technique in an electric field screen-guarded greenhouse
Chapter 20: Corona discharger probe for instantaneously eradicating fungal colonies on plant leaves Unit 6 Recapitulation of electric field screen researches and related electrostatic techniques
Chapter 21: Summarization of total works of electric field screens and related techniques

An illustrated manual of electric field screens: their structures and functions.
Edited by Hideyoshi Toyoda; RAEFSS Publishing Department, Nara, Japan, 2019, pp. 1-112.
Contents

Chapter 1: Basic knowledge  in electrostatics
Chapter 2 : Structures of electric field screens
Chapter 3: Air-shielding by an electric field screen
Chapter 4: Single-charged dipolar electric field screen and capture of insect pests
Chapter 5: Practical implementation of single-charged dipolar electric field screen
Chapter 6: Pest repelling function of an electric field screen
Chapter 7: Earth net-free electric field screens
Chapter 8: Practical application of earth net-free electric field screens
Chapter 9: Structures and functions of discharge-generating screens





CD-Manual

Principles and applications of electric field screen.

Edited by Hideyoshi Toyoda. RAEFSS Publishing Department, Nara, Japan, 2016.
Contents

CD1: Electrostatic strategy for pathogen control, Part 1.
CD2: Electrostatic strategy for pathogen control, Part 2.
CD3: Electrostatic strategy for pathogen control, Part 3.
CD4: Electrostatic strategy for pathogen control, Part 4.
CD5: Electrostatic strategy for pest control, Part 1.
CD6: Electrostatic strategy for pest control, Part 2.
CD7: Electrostatic strategy for pest control, Part 3.
CD8:
Electrostatic strategy for pest control, Part 4.





和文書(Japanese Books)

静電場スクリーンによる農作物防除システム:空間遮蔽のための静電気工学入門.
豊田秀吉、松田克礼
著, 農文協, 東京, 2014, pp. 247.
目次

1章
静電気工学を利用した静電場スクリーンの開発.
2章 静電場スクリーンのためのモデル病害虫と標的生物.
3章 単印加・単極型静電場スクリーン(SM-スクリーン)の開発とその利用.
4章 単印加・双極型静電場スクリーン(SD-スクリーン)の開発とその利用.
5章 両印加・双極型静電場スクリーン(DD-スクリーン)の開発とその利用.
6章 静電気工学における関連技術の展開(1)静電捕捉技術の応用.
7章 静電気工学における関連技術の展開(2)放電技術の応用.








図解
静電場スクリーン その構造と機能
.
豊田秀吉
他著, 静電場スクリーン研究会出版部. 奈良, 2019, pp. 109.
目次

1章 静電気学の基礎知識.
2章 静電場スクリーンの構造.
3章 静電場スクリーンによる空間遮蔽.
4章 単印加・双極型静電場スクリーンと害虫捕捉.
5章 単印加・双極型静電場スクリーンの実用化.
6章 静電場スクリーンの害虫追払い機能.
7章 アース金網をもたない静電場スクリーン.
8章 アース金網をもたない静電場スクリーンの応用例.
9章 放電発生型スクリーンの構造と機能.




CD 教本

目で見る静電場スクリーンの構造と機能.
豊田秀吉他, 静電場スクリーン研究会出版部, 2015, 奈良.
第1部:学習編
.
第
2部:活用編.
第
3部:付録.














研究会紀要 (Internal bulletin issued by the RAEFSS)
(from 2019 to 2024)


目 次
Volume 1
Review: Applied electrostatic engineering for creating a novel physical system to manage biotic and abiotic nuisances in environments
(Yoshinori Matsuda1 and Hideyoshi Toyoda)

Bibliographical Sources: Books and academic papers for electric field screens and related electrostatic devices published for these 13 years
(Hideyoshi Toyoda)

Case Report: コロナ放電発生型スクリーンによるオゾン生成とアンモニアに対する脱臭効果の検討
(森川 真由・高島 綾華)
Case Report:タバコシバンムシおよびココクゾウムシにおける電場認識機構の解析
(岡田 陽佑・山地 洋輝)
Case Report: 絶縁被覆材の抵抗値がショウジョウバエの捕捉と殺虫に及ぼす影響
(
玉麻 春花)
Case Report: 異なるサイズの害虫に対するアーク放電を利用した殺虫条件の検討
(沖田 美悠)

Volume 2
Review: A promising physical pest-control system demonstrated in a greenhouse equipped with simple electrostatic devices that excluded all insect pests (Yoshihiro Takikawa1, Koji Kakutani, Yoshinori Matsuda, Teruo Nonomura, Shin-ichi Kusakari and Hideyoshi Toyoda)
Review: Changes in my research objective: from construction of crop protection strategy to solution of public health problems by applied electrostatic engineering
(Hideyoshi Toyoda)

Bibliographical Sources: Books and academic papers for electric field screens and related electrostatic devices published for these 15 years
(Hideyoshi Toyoda)

Case Report: コロナ放電発生型スクリーンから発生する負イオン風がチンゲンサイの生育に与える影響(安宗 実乃里)
Case Report:ドローンを利用したリモート式静電バグキャッチャーの検討
(堀江 周平・多田 優奈)
Case Report:パルス型アーク放電を利用した蔓性雑草防除装置の検討
(今津 智絵)
Case Report:静電場を利用したミスト捕捉条件の検討
(根来 ちおり)
Case Report:霧電場スクリーンの捕捉効果の評価系
(角谷 晃司)
Technical Report:微小水滴を計測するモイスチャーセンサ:霧電場スクリーン研究への適用は可能か?(資料紹介)
(瀧川 義浩)
Technical Report:レナード効果による水滴の帯電と生成される大気イオン (資料紹介)
(松田 克礼)
Research Proposition:Proposition of a mist-integrated corona discharge-generating electric field screen for trapping air-borne human pathogens
(Hideyoshi Toyoda)

Volume 3
Letter to Members:私にとっての応用静電気工学研究:その在り方と進め方の一試考
(豊田 秀吉)
Letter to Members:静電気を利用した応用科学と応用工学から応用医学へ:大きな壁
(高見 武志)
Letter to Members:オール近大"新型コロナウイルス感染症対策支援プロジェクトへの取り組みについて−コロナウイルス対策における誘電体空間遮蔽装置「静電ブラインド」の提案−
(松田 克礼)
Research Proposition:水導体印加方式で帯電させた軟質塩化ビニルチューブは何に使えるか
(豊田 秀吉)
Review:High voltage electric fields have potential as physical pest control system
(Hideyoshi Toyoda)
Bibliographical Sources:Books and academic papers for electric field screens and related electrostatic devices published for these 15 years
(Hideyoshi Toyoda)
Case Report:ココクゾウムシの振動認識機構を利用した静電殺虫装置の検討
(松田 克礼)
Case Report:静的電場実験に供試するキイロショウジョウバエの生態観察
(野々村 照雄)
Case Report:In vitro 帯電化培養がゼニゴケの油体形成に及ぼす影響
(水本 航平, 中尾 柚葉, 瀧川 義浩)

Volume 4
Letter to Members:私達の応用静電気工学研究:これまでの経緯と今後の新展開について
(豊田 秀吉)
Review:Impact of hypertension on heart failure with preserved ejection fraction: Pathophysiology and treatment
(Takeshi Takami)
Commentary:高血圧の心血管リモデリング、心不全に及ぼす影響
(高見 武志)
Commentary:ヒト血管に近い人工血管の研究―静電気学的側面からのアプローチ
(高見 武志)
Commentary:COVID-19 感染症における ACE2の役割
(高見 武志)
Technical Report:Paired soft polyvinyl chloride tubes oppositely electrified with charged water comprise an active static electric field
(Hideyoshi Toyoda & Yoshinori Matsuda)
Technical Report:液体を電極として利用した樹脂チューブの電気特性について
(村上 響佳・松田 克礼)
Technical Report:負電荷表面に付着させたヒト培養細胞の帯電状態の影響
(角谷 晃司)
Research Proposition:導体被覆に用いる絶縁体の体積抵抗値と標的捕捉能力との関係
(豊田 秀吉)
Research Proposition:水面へのアーク放電を利用したボウフラ殺虫装置の検討
(渋谷 元気・松田 克礼)
Research Proposition:昆虫の生活環における静電場の影響
(野々村 照雄・松田 克礼)
Research Proposition:植物が静電場刺激を受容するメカニズムの解明に向けて: ゼニゴケをモデルにした静電場刺激応答研究への展開
(瀧川 義浩・魚波 和真)
Case Report:Immobilization of houseflies by CO2 anesthesia: anesthetized insects are an ideal material for bioelectrical measurement of insect-derived electric current in a static electric field
(Yoshinori Matsuda & Hideyoshi Toyoda)
Bibliographical Sources:Books and academic papers for electric field screens and related electrostatic devices published for these 15 years
(Hideyoshi Toyoda)

Volume 5
Letter to Members:私達の応用静電気工学研究の広がりは如何に:ある事例の紹介
(豊田 秀吉)
Letter to Members:異なる抵抗値の絶縁被覆材による電離イオンの生成が捕捉効率に及ぼす影響について
(松田 克礼)
Review:Electrostatic techniques for insect pest control
(Hideyoshi Toyoda)
Submission-shelved paper:Experimental evidence for pathogen transmission by fruit flies and monitoring performance for postharvest fruits with an electrostatic fly-attractive and capturing instrument
(Hideyoshi Toyoda and Yoshinori Matsuda)
Submission-shelved paper:Electrostatic precipitation of indoor ammonia gas using a simple corona discharge generator
(Koji Kakutani, Yoshinori Matsuda, Teruo Nonomura, Yoshihiro Takikawa and
Hideyoshi Toyoda
)
Bibliographical Sources:Books and academic papers for electric field screens and related electrostatic devices published for these 19 years
(Hideyoshi Toyoda)
Research Proposition:ヒト血管解析への静電気工学的アプローチ:研究構築の為の質疑応答
(角谷 晃司・高見 武志・松田 克礼・豊田 秀吉)
Research Proposition:Electrostatic Engineering Techniques は Mosquito Control の研究発展に貢献できるか
(豊田 秀吉)
Research Proposition:サシバエの選光性の理解に向けた実験の提案
(瀧川 義浩・三野 汰晟)
Case Report:蔓性雑草の侵入を抑制する静電フェンスの実用化試験の状況報告
(松田 克礼)
Case Report:静電雑草防除ネットの機能と使用する電気柵の特徴
(松田 克礼)
Case Report:絶縁性油を用いた帯電試験
(角谷 晃司)
Technical Information:サシバエの生態
(瀧川 義浩・奥山 雄太)

Volume 6
Review:How can we manage pathogens, insect pests and weeds using electrostatic techniques?
(Hideyoshi Toyoda)
Bibliographical Sources:Books and academic papers for electric field screens and related electrostatic devices published for these two decades
(Hideyoshi Toyoda)
Research Proposition:コロナ放電生成装置は静電気工学研究の新しい主役になれるか
(豊田 秀吉)
Research Proposition:提言:動脈硬化を静電気で考える
(高見 武志)
Research Proposition:「提言:動脈硬化を静電気で考える」に基づいた研究構築のための質疑応答
(角谷 晃司・瀧川 義浩・高見 武志・松田 克礼・豊田 秀吉)
Case Report:畜産試験場で実施中の「アーク放電技術によるサシバエ防除試験」の経過報告
(瀧川 義浩)
Case Report:公衆衛生害虫「蚊」の駆除を目的とした放電装置(Electric-discharge device)の開発
(角谷 晃司)
Tevhnical Information:高電圧電流を利用した雑草防除技術の現状
(松田 克礼)
Technical Information:Mulching techniques:Principle, materials and applications
(Hideyoshi Toyoda)
Letter to Members:Is it possible to use organic or plastic materials as electric conductors for pest control devices?
(Hideyoshi Toyoda・Yoshinori Matsuda)