Kiyosawa Keitaro | Department Of Biophysical Engineering Faculty Of Engineering Science Osaka University
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概要
関連著者
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Kiyosawa Keitaro
Department Of Biophysical Engineering Faculty Of Engineering Science Osaka University
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Kiyosawa Keitaro
Department of Biophysical Engineering. Faculty of Engineering Science, Osaka University
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OKIHARA Kiyoshi
Department of Applied Physiology, National Institute of Agrobiological Resources
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Okihara Kiyoshi
Department Of Applied Physiology National Institute Of Agrobiological Resources
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Hosokawa Yutaka
Department of Neurophysiology,Medical Research Institute,Tokyo Medical and Dental University
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Hosokawa Yutaka
Department Of Biophysical Engineering Faculty Of Engineering Science Osaka University
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Tanaka Hideaki
Department Of Biopharmaceutics Kyoto Pharmaceutical University
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Okihara Kiyoshi
Department Of Biophysical Engineering. Faculty Of Engineering Science Osaka University
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Okihara Kiyoshi
Department Of Biophysical Engineering Faculty Of Engineering Science Osaka University
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Kiyosawa K
Osaka Univ. Osaka Jpn
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Kiyosawa Keitaro
Department Of Biophysical Engineering. Faculty Of Engineering Science Osaka University
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Ogata Koreaki
Department of Biology,Faculty of Science, Osaka University
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Ogata K
Department Of Physiology College Of Medical Technology:(present)department Of Biochemistry School Of
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Ogata Koreaki
Department Of Biology Faculty Of Science Osaka University
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Tanaka Hideaki
Department Of Biophysical Engineering Faculty Of Engineering Science Osaka University
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Tanaka Hideaki
Department Of Applied Chemistry & Biochemistry Faculty Of Engineering Kumamoto University
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Kiyosawa Keitaro
Department of Biophysical Engineering, Faculty of Engineering Science, Osaka University
著作論文
- Ion Composition of the Chara Internode
- Examination of analytical methods for ions and saccharides in the extract of Phaseolus pulvini
- Osmotic and lonic Regulation in Chara L-cell Fragments
- Change in potassium distribution in a Phaseolus pulvinus during circadian movement of the leaf
- Unequal distribution of potassium and anions within the Phaseolus pulvinus during circadian leaf movement
- Diurnal Geotropic responses of the Primary Leaves of Phaseolus vulgaris
- Influence of External samotic Pressure on Water Permeability and Electrical Conductance of Chara Cell Membrane
- H^+ tolerance of Chara Internodal Cells and Apparent Net Influx of H+ in Weakly Acidic Solutions: Implication of the Net Flux of H^+ as a Minor Component among the Total Net Flux of lons across the Intact Cell Membrane of Chara
- Diurnal K^+ and Anion Transport in Phaseolus Pulvinus