KITANO M. | Biotron Institute, Kyushu University
スポンサーリンク
概要
関連著者
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KITANO M.
Biotron Institute, Kyushu University
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Kitano M.
Biotron Institute Kyushu University
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Eguchi H.
Biotron Institute Kyushu University
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Kitano Masaharu
Biotron Institute Kyushu University
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Eguchi Hiromi
Biotron Institute Kyushu University
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EGUCHI H.
Biotron Institute, Kyushu University
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Eguchi H
Res.center For Nuclear Sci. And Tech. Univ Of Tokyo
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KITANO Masaharu
Biotron Institute, Kyushu University
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Kitano M
Faculty Of Agriculture Kochi University
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HAMAKOGA M.
Biotron Institute, Kyushu University
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Hamakoga Michio
Biotron Institute Kyushu University
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Hamakoga M.
Biotron Institute Kyushu University
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ARAKI T.
Biotron Institute, Kyushu University
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Araki Takuya
Biotron Institute, Kyushu University
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Eguchi T
Kyushu Univ. Fukuoka Jpn
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EGUCHI T.
Biotron Institute, Kyushu University
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Eguchi T.
Biotron Institute Kyushu University
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Eguchi Toshihiko
Biotron Application Center Kyushu University
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YOSHIDA S.
Biotron Institute, Kyushu University
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Yoshida Satoshi
Biotron Institute Kvushu University
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YOSHIDA Satoshi
Biotron Application Center, Kyushu University
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TOH K.
Biotron Institute, Kyushu University
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YOKOMAKURA F.
Biotron Institute, Kyusyu Univercity
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Nagasuga Kiyoshi
Graduate School Of Bioresource And Bioenvironmental Sciences Kyushu Univ.
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TOH Kunji
Biotron Institute, Kyushu University
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Toh K
Kyushu Univ. Fukuoka Jpn
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Yokomakura F.
Biotron Institute Kyushu University
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YASUTAKE D.
Graduate School of Bioresource and Bioenvironmental Sciences, Kyushu University
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NAGASUGA K.
Graduate School of Bioresource and Bioenvironmental Sciences, Kyushu University
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Nagasuga K.
Graduate School Of Bioresource And Bioenvironmental Sciences Kyushu University
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Yasutake D.
Graduate School Of Bioresource And Bioenvironmental Sciences Kyushu University
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Toh K.
Biotron Institute Kyushu University
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Yasutake Daisuke
Graduate School of Bioresource and Bioenvironmental Sciences, Kyushu University
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SUZUKI Y.
Faculty of Agriculture, Kyushu University
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TATEISHI J.
Biotron Institute, Kyushu University
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Tateishi J.
Biotron Institute Kyushu University
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Tateishi Junichi
Biotron Institute, Kyushu University
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Suzuki Yoshinori
Faculty of Agriculture, Kyushu University
著作論文
- MEASUREMENT OF DIURNAL CHANGE IN TUBER GROWTH OF SWEET POTATO PLANTS
- EFFECT OF AIR HUMIDITY AROUND TUBEROUS ROOT ON SINK STRENGTH IN SWEET POTATO PLANTS GROWN IN A SOLUTION-AIR CULTURE SYSTEM
- EFFECT OF ROOT TEMPERATURE ON SINK STRENGTH OF TUBEROUS ROOT IN SWEET POTATO PLANTS (IPOMOEA BATATAS LAM.)
- ON-LINE SYSTEM FOR VOLUME MEASUREMENT IN SWEET POTATO TUBER
- NEW SYSTEM OF HYDROPONICS FOR GROWTH ANALYSIS OF SWEET POTATO TUBER
- GROWTH OF CUCUMBER PLANTS (CUCUMIS SATIVUS L.) UNDER DIURNAL CONTROL OF AIR TEMPERATURE
- GROWTH OF SWEETPOTATO TUBER AS AFFECTED BY THE AMBIENT HUMIDITY
- ANALYSIS OF GROWTH, WATER BALANCE AND RESPIRATION OF TOMATO FRUITS UNDER WATER DEFICIT BY USING A MULTIPLE CHAMBER SYSTEM
- TEMPERATURE DEPENDENCE OF POSTPHLOEM TRANSPORT REGULATED BY RESPIRATION IN TOMATO FRUITS
- RESPIRATION, SAP FLUX, WATER BALANCE AND EXPANSIVE GROWTH IN TOMATO FRUIT
- ON-LINE MEASUREMENTS OF CO_2 AND H_2O GAS FLUXES, SAP FLUX AND EXPANSIVE GROWTH IN AN INTACT TOMATO FRUIT
- GROWTH OF LETTUCE PLANTS (LACTUCA SATIVA L.) UNDER CONTROL OF DISSOLVED O_2 CONCENTRATION IN HYDROPONICS
- EVALUATION OF PHOTOASSIMILATE FLUX THROUGH A TOMATO PEDICEL
- GROWTH OF LETTUCE PLANTS (LACTUCA SATIVA L.) UNDER VARIABLE-VALUE CONTROL OF AIR TEMPERATURE BY USING NATURAL LIGHT INTENSITY AS FEEDBACK SIGNAL
- INTERACTIVE DYNAMICS OF FRUIT AND STEM GROWTH IN TOMATO PLANTS AS AFFECTED BY ROOT WATER CONDITION II. RELATION WITH SUCROSE TRANSLOCATION
- INTERACTIVE DYNAMICS OF FRUIT AND STEM GROWTH IN TOMATO PLANTS AS AFFECTED BY ROOT WATER CONDITION I. EXPANSION AND CONTRACTION OF FRUIT AND STEM
- GROWTH OF CUCUMBER PLANTS (CUCUMIS SATIVUS L.) UNDER VARIABLE-VALUE CONTROL OF AIR TEMPERATURE BY USING NATURAL LIGHT INTENSITY AS FEEDBACK SIGNAL
- CONTROL OF EVAPORATIVE DEMAND ON TRANSPIRING PLANTS III. TRANSPIRATION AND GROWTH OF CUCUMBER UNDER CONTROLLED EVAPORATIVE DEMAND
- CONTROL OF EVAPORATIVE DEMAND ON TRANSPIRING PLANTS II. CONTROL ALGORITHM AND PERFORMANCE
- METHODOLOGICAL ESTABLISHMENT FOR INDIVIDUAL EVALUATIONS OF HYDRAULIC CONDUCTANCES OF NODE, INTERNODE AND LEAF INSERTION IN A NODAL COMPLEX
- AN IMPROVED CUVETTE FOR INDIVIDUAL EVALUATIONS OF GAS EXCHANGE PARAMETERS ON ADAXIAL AND ABAXIAL LEAF SURFACES UNDER DIFFERENT AIR CURRENTS
- PHYSICAL EVALUATION OF EFFECTIVE EVAPORATIVE DEMAND WITH REFERENCE TO PLANT WATER RELATIONS
- EVALUATION OF LEAF BOUNDARY LAYER CONDUCTANCE OF A WHOLE PLANT BY APPLICATION OF ABSCISIC ACID INHIBITING TRANSPIRATION
- DYNAMIC ANALYSES OF WATER RELATIONS AND LEAF GROWTH IN CUCUMBER PLANTS UNDER MIDDAY WATER DEFICIT
- AIR HUMIDITY WITHIN BOUNDARY LAYER OF A TRANSPIRING LEAF : I. RELATIONSHIP BETWEEN TRANSPIRATION AND WATER VAPOR DENSITY AT LEAF SURFACE
- AN IMPACT COEFFICIENT OF EVAPORATIVE DEMAND ON PLANT WATER BALANCE
- CONTROL OF EVAPORATIVE DEMAND ON TRANSPIRING PLANTS : I. SENSITIVITIES OF EVAPORATIVE DEMAND TO ENVIRONMENTAL FACTORS
- DYNAMICS OF WHOLE-PLANT WATER BALANCE AND LEAF GROWTH IN RESPONSE TO EVAPORATIVE DEMAND. II. EFFECT OF CHANGE IN WIND VELOCITY
- AIR HUMIDITY WITHIN BOUNDARY LAYER OF A TRANSPIRING LEAF : II. PROFILE OF WATER VAPOR DENSITY WITHIN THE BOUNDARY LAYER
- DYNAMICS OF WHOLE-PLANT WATER BALANCE AND LEAF GROWTH IN RESPONSE TO EVAPORATIVE DEMAND. I. EFFECT OF CHANGE IN IRRADIANCE
- HYDROACTIVE AND HYDROPASSIVE MOVEMENTS OF STOMATA RESPONDING TO VISIBLE AND INFRARED RADIATIONS