Effects of Air Circulation in Clothing Inside on Thermoregulatory Responses at Farming Under Heat Environmental Conditions

The purpose of this study was to examine the effects of air circulation in clothing inside on thermoregulatory responses at farming under heat environmental conditions. The subject used ten male university students of 19–20 years old and performed 60-minutes farming. The subject divided it into two...

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Published inJAPANESE JOURNAL OF BIOMETEOROLOGY Vol. 49; no. 2; pp. 83 - 92
Main Authors Kashimura, Osamu, Suzuki, Eigo, Takahashi, Hirohiko, Minami, Kazuhiro, Nakai, Seiichi
Format Journal Article
LanguageEnglish
Japanese
Published Japanese Society of Biometeorology 2012
日本生気象学会
Subjects
Online AccessGet full text
ISSN0389-1313
1347-7617
DOI10.11227/seikisho.49.83

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Abstract The purpose of this study was to examine the effects of air circulation in clothing inside on thermoregulatory responses at farming under heat environmental conditions. The subject used ten male university students of 19–20 years old and performed 60-minutes farming. The subject divided it into two groups of the eco-fan group and work clothes group and did it with each five subjects. The measurement items were environmental temperature, the weight, heart rate, energy consumption, quantity of total sweat, quantity of hydration, increase of tympanic temperature, thirst VAS method, temperature humidity in clothes. The increases of in clothing inside temperature and humidity after farming in the eco group were significantly lower than that in working group, respectively (p < 0.05). Mean heart rate during the farming in the eco group was significantly lower than in working group (p < 0.05). Increase of tympanic temperature due to farming in the eco group was significantly lower than that in working group (p < 0.05). Total sweating rate during farming in the eco group was significantly lower than that in working group (p < 0.05). Volume of fluid intake thirst sensation at the farming in the eco group was significantly lower than that in working group (p < 0.05). The wearing of the eco-fan was effective prevention for heat disorders in the heat environment that could not carry out measures to become light clothes from the problem of at the time of farming under the heat environment and the safety.
AbstractList The purpose of this study was to examine the effects of air circulation in clothing inside on thermoregulatory responses at farming under heat environmental conditions. The subject used ten male university students of 19–20 years old and performed 60-minutes farming. The subject divided it into two groups of the eco-fan group and work clothes group and did it with each five subjects. The measurement items were environmental temperature, the weight, heart rate, energy consumption, quantity of total sweat, quantity of hydration, increase of tympanic temperature, thirst VAS method, temperature humidity in clothes. The increases of in clothing inside temperature and humidity after farming in the eco group were significantly lower than that in working group, respectively (p < 0.05). Mean heart rate during the farming in the eco group was significantly lower than in working group (p < 0.05). Increase of tympanic temperature due to farming in the eco group was significantly lower than that in working group (p < 0.05). Total sweating rate during farming in the eco group was significantly lower than that in working group (p < 0.05). Volume of fluid intake thirst sensation at the farming in the eco group was significantly lower than that in working group (p < 0.05). The wearing of the eco-fan was effective prevention for heat disorders in the heat environment that could not carry out measures to become light clothes from the problem of at the time of farming under the heat environment and the safety.
The purpose of this study was to examine the effects of air circulation in clothing inside on thermoregulatory responses at farming under heat environmental conditions. The subject used ten male university students of 19–20 years old and performed 60-minutes farming. The subject divided it into two groups of the eco-fan group and work clothes group and did it with each five subjects. The measurement items were environmental temperature, the weight, heart rate, energy consumption, quantity of total sweat, quantity of hydration, increase of tympanic temperature, thirst VAS method, temperature humidity in clothes. The increases of in clothing inside temperature and humidity after farming in the eco group were significantly lower than that in working group, respectively (p < 0.05). Mean heart rate during the farming in the eco group was significantly lower than in working group (p < 0.05). Increase of tympanic temperature due to farming in the eco group was significantly lower than that in working group (p < 0.05). Total sweating rate during farming in the eco group was significantly lower than that in working group (p < 0.05). Volume of fluid intake thirst sensation at the farming in the eco group was significantly lower than that in working group (p < 0.05). The wearing of the eco-fan was effective prevention for heat disorders in the heat environment that could not carry out measures to become light clothes from the problem of at the time of farming under the heat environment and the safety. 研究の目的は,夏季暑熱環境下における農作業において,衣服内空気循環が体温調節反応に及ぼす影響について検討することである.被験者は,健康な年齢 19 歳から 20 歳の男子大学生の 10 名を用い,60 分間の農作業を行った.被験者はエコファン群と作業着群の 2 群に分け,各群 5 名ずつとした.測定項目は,環境温度,体重,心拍数,エネルギー消費量,総発汗量,水分補給量,鼓膜温,口渇感,衣服内温度であった.暑熱環境下農作業時における衣服内温度の上昇量は,作業着群に比較してエコファン群で有意に低値を示した(p < 0.05).農作業時における平均心拍数は,作業着群に比較してエコファン群で有意に低値を示した(p < 0.05).農作業時における鼓膜温の上昇量は,作業着群に比較してエコファン群で有意に低値を示した(p < 0.05).農作業時における総発汗量は,作業着群に比較してエコファン群で有意に低値を示した(p < 0.05).農作業時における水分補給量は,作業着群とエコファン群の間には有意差はみられなかった.農作業時における口渇感は,作業終了直後で作業着群に比較しエコファン群で有意に低値を示した(p < 0.05).これらの結果から,エコファンの着用は,暑熱環境下における農作業時および安全面の問題から軽装化などの処置が実施できない環境においても,熱中症予防対策に有効であることが認められた.
Author Suzuki, Eigo
Kashimura, Osamu
Takahashi, Hirohiko
Minami, Kazuhiro
Nakai, Seiichi
Author_FL 樫村 修生
鈴木 英悟
中井 誠一
南 和広
高橋 弘彦
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  organization: University Center for Intercultural Education, The University of Shiga Prefecture
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  fullname: Nakai, Seiichi
  organization: Faculty of Home Economics, Kyoto Women`s University
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中井誠一,新矢博美,芳田哲也,寄本 明(2006):熱中症発生状況の年齢階級別特徴.日生気誌,43: S6.
American Heart Association, Committee on Exercise (1972): Exercise testing and training of apparently healthy individuals: A handbook for physician. American Heart Association, New York.
川原 貴,森本武利編集(2006):スポーツ活動時の熱中症予防ガイドブック,日本体育協会
新矢博美,芳田哲也,常岡秀行,中井誠一,伊藤 孝(2004):スポーツユニフォームの違いが高温環境下運動時の体温調節反応に及ぼす影響.体力科学,53(3): 347–356.
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新矢博美,芳田哲也,常岡秀行,中井誠一,伊藤 孝(2005):着衣条件の違いによる皮膚温変化が運動時の体温調節反応と温熱ストレスに与える影響.体力科学,54: 259–268.
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References_xml – reference: 今田尚美,平田耕造(2006):水潅流スーツによる皮膚冷却の面積比率が胸部皮膚血流量に及ぼす影響.日生気誌,43(4): 137–144.
– reference: 川原 貴 編(2006):スポーツ活動中の熱中症ガイドブック,日本体育協会.
– reference: 石川慎太郎,久保哲也,藤原博士,砂川正隆,俵積田ゆかり,石野徳子,久光 正(2011):血液流動性に及ぼす運動の影響―暑熱下運動の影響―.体力科学,60(5): 475–482.
– reference: Riehe, D., Maresh, C.M., Armstrong, L.E., Kenefick, R.W., castellani, J.W., Echegaray, M.E., Clark, B.A. and Camaione, D.N. (1997): Effects of oral and intravenous rehydration on ratings of perceive exertion and thirst. Med. Sci. Sports. Exerc., 29: 117–124.
– reference: 農林水産省大臣官房統計経営・構造統計課(2006):農林業センサス農家調査報告書.
– reference: 宮田 洋(1998):新生理心理学 生理心理学の基礎,北大路書房,233.
– reference: 中井誠一,新矢博美,高橋英一(2000):高温環境下におけるフェンシング実施時の体温調節反応に及ぼす着衣の影響.デサントスポーツ科学,21: 122–129.
– reference: 伊藤 僚,山下直之,中野匡隆,山本彩未,松本孝朗,北川 薫(2010):中性温環境下における降雨と風が歩行運動中のヒトの体温反応及びエネルギー代謝に及ぼす影響.日生気誌,47(4): 149–156.
– reference: 日本体育協会(1994):熱中症予防のための運動指針,日本体育協会.
– reference: Hughson, R.L., Staud, L.A. and Mackie, J.M. (1983): Monitoring road racing in heat. Phys. Sports Med., 11: 94–105.
– reference: 井上真理ほか(2004):環境の湿度変化がスポーツウェア着用時における運動時の体温調節反応に及ぼす影響.デサントスポーツ科学,25: 49–61.
– reference: 新矢博美,芳田哲也,常岡秀行,中井誠一,伊藤 孝(2004):スポーツユニフォームの違いが高温環境下運動時の体温調節反応に及ぼす影響.体力科学,53(3): 347–356.
– reference: 中井誠一,芳田哲也,寄本 明 編著(2007):高温環境とスポーツ・運動―熱中症の発生と予防対策―,pp 32–33,篠原出版新社.
– reference: 中井誠一,新矢博美,芳田哲也,寄本 明(2006):熱中症発生状況の年齢階級別特徴.日生気誌,43: S6.
– reference: Boutelier, C., Bougues, L. and Timbal, J. (1977): Experimental study of convective heat transfer coefficient for the human body in water. J. appl. physiol., 42: 93–100
– reference: 井上芳光(2004):子どもと高齢者の熱中症予防.日生気誌,41(1): 61–66.
– reference: 樫村修生,中井誠一(2005):中年ランナーにおける夏季ランニング時の体重減少の実態―とくに水分補給の面から―.日生気誌,42(4): 137–144.
– reference: 環境省(2010):熱中症保健指導マニュアル,環境省環境保健部環境安全課.
– reference: 栃原 裕,石田壽一,伊藤裕之,岩宮眞一郎,大井尚行,大中忠勝,尾本 章,飛松省三,木里 志,安河内朗,山下由己男(2007):人間環境デザインハンドブック.丸善,pp. 40–45.
– reference: 川原 貴,森本武利編集(2006):スポーツ活動時の熱中症予防ガイドブック,日本体育協会.
– reference: Nybo, L. and Nielsen, B. (2001): Perceived exertion is associated with an altered brain activity during exercise with progressive hyperthermia. J. Appl. Physiol., 91: 2017–2023.
– reference: Wyndham, C.H. and Strydom, N.B. (1969): The danger of an inaduquete water intake during marathon running. S. Afr. Med. J., 43: 893–896.
– reference: American Heart Association, Committee on Exercise (1972): Exercise testing and training of apparently healthy individuals: A handbook for physician. American Heart Association, New York.
– reference: 久米 雅,芳田哲也,常岡秀行,木村直人,伊藤 孝(2009):水循環スーツを着用した運動時の 体温調節反応と冷却面積,冷却容量との関係.体力科学,58: 109–122.
– reference: Kaufman, W.C. and Bothe, D.j. (1986): Wind chill reconsidered, Siple revisited. Aviat. Space. Environ., 57: 23–26.
– reference: 小池勲夫編(2006): 地球温暖化はどこまで解明されたか.丸善(東京).
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Snippet The purpose of this study was to examine the effects of air circulation in clothing inside on thermoregulatory responses at farming under heat environmental...
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SubjectTerms Farming
Fluid intake
Heat disorders
Heat environmental conditions
Thermoregulatory response
Thirst sensation
Tympanic temperature
体温調節反応
口渇感
暑熱環境
水分補給
熱中症
農作業
鼓膜温
Title Effects of Air Circulation in Clothing Inside on Thermoregulatory Responses at Farming Under Heat Environmental Conditions
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