R. Xuemin, Relationships between yield characteristics and canopy temperature of peanut [J] Journal of northwest agriculture and forestry university, pp.42-81

D. Baohua, T. Chengf-eng, and Y. , Studies on the changing patterns of CO 2 concentration in winter wheat canopy, Chinese Journal of Agrometeorology, vol.06, pp.26-31, 1996.

S. Xiaoming?dong and G. Yong, Influence of soil water stress on Quercus variabilis leaf temperature and characteristics of chlorophyll fluorescence, Journal of Henan Agricultural University, vol.06, pp.691-697, 2013.

Z. Zifei, Infrared thermometers outline, Metrology and Measurement Technique, pp.3322-3345, 2006.

L. Jiefu, W. Haojing, and F. Lidong, Principle of infrared thermometer and problem of application [J]. Modern Instruments, pp.50-51, 2007.

C. Tanner, Plant Temperatures1, Agronomy Journal, vol.55, issue.2, pp.210-211, 1963.
DOI : 10.2134/agronj1963.00021962005500020043x

D. Xia, S. Wenjuan, and W. Fuming, Design of infrared thermometer based on single-chip microcomputer, Shanxi Electronic Technology, pp.21-23, 2011.

L. Yunhong, S. Xiaogang, and L. Jihong, Research on temperature measurement technology and application of infrared thermal imaging [J]. Modern Electronics Technique, pp.112-115, 2009.

. Kitaya and . M. Y?kawai, The effect of gravity on surface temperatures of plant leaves, Plant, Cell and Environment, vol.26, issue.4, pp.497-503, 2003.
DOI : 10.2480/agrmet.26.137

A. Mustilli and M. , Arabidopsis OST1 Protein Kinase Mediates the Regulation of Stomatal Aperture by Abscisic Acid and Acts Upstream of Reactive Oxygen Species Production, THE PLANT CELL ONLINE, vol.14, issue.12, pp.3089-3099, 2002.
DOI : 10.1105/tpc.007906

URL : https://hal.archives-ouvertes.fr/hal-00145524

S. Merlot and A. Mustilli, Use of infrared thermal imaging to isolate Arabidopsis mutants defective in stomatal regulation, The Plant Journal, vol.88, issue.5, pp.601-609, 2002.
DOI : 10.1105/tpc.13.9.2063

URL : https://hal.archives-ouvertes.fr/hal-00145341

. Rohmy, Environmental control in greenhouse based on phytomonitoring-leaf temperature as a factor controlling greenhouse environments, Acta Horticultura, issue.761, pp.71-76, 2007.

Y. Zhenkun, A simulation model of the relationship between tomato leaf temperature and ambient factors in solar greenhouse, Jiangsu Journal of Agriculture, vol.26, issue.3, pp.587-592, 2010.

T. Li, Solar greenhouse in northern crop leaf temperature and physiological adaptability mechanism model, Journal of Inner Mongolia Agricultural University, vol.01, pp.25-29, 2014.

L. Ting, A new method of lead compensation for three-wire resistance temperature detectors, Electronic Measurement Technology, vol.01, pp.38-39, 2001.

C. Xueli, Analysis and correction method of thermocouple temperature measurement error, Science and technology, vol.11, pp.303-304, 2008.

L. Jilin, Radiation temperature measurement and calibration technology [F]. Beijing: Measuring press, 2009.

P. Enliang, Application and development of infrared thermal imaging technology in intelligent monitoring, pp.66-68, 2014.