Temporal and Spatial Variability of Water Status in Plant Leaves by Terahertz Imaging
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H. Cui | Zheyu Song | Shihan Yan | Ziyi Zang | Yun Fu | Dongshan Wei | Puxiang Lai
[1] M. Proctor,et al. PHOTOSYNTHESIS, RESPIRATION AND WATER CONTENT IN BRYOPHYTES , 1979 .
[2] Fawwaz T. Ulaby,et al. Microwave Dielectric Properties of Plant Materials , 1984, IEEE Transactions on Geoscience and Remote Sensing.
[3] RELATIONSHIP OF EXCISED-LEAF WATER LOSS RATE AND YIELD OF DURUM WHEAT IN DIVERSE ENVIRONMENTS , 1989 .
[4] J. Sperry,et al. Water Relations of Plants and Soils , 1995 .
[5] M. Nuss,et al. Imaging with terahertz waves. , 1995, Optics letters.
[6] L. Schreiber,et al. Cuticular permeability of the three tree species Prunus Iaurocerasus L., Ginkgo biloba L. and Juglans regia L.: comparative investigation of the transport properties of intact leaves, isolated cuticles and reconstituted cuticular waxes , 1997 .
[7] L. S. Karatzas,et al. Measurements of leaf water content using terahertz radiation , 1999 .
[8] D. Straeten,et al. Imaging techniques and the early detection of plant stress. , 2000, Trends in plant science.
[9] J. Coutaz,et al. Influence of noise on the characterization of materials by terahertz time-domain spectroscopy , 2000 .
[10] APPLICATIONS AND PROSPECTS OF TERAHERTZ TECHNOLOGY , 2001 .
[11] G. Farquhar,et al. 18O Spatial Patterns of Vein Xylem Water, Leaf Water, and Dry Matter in Cotton Leaves , 2002, Plant Physiology.
[12] J. A. Smith,et al. Circadian rhythms in crassulacean acid metabolism: phase relationships between gas exchange, leaf water relations and malate metabolism in Kalanchoë daigremontiana , 1984, Planta.
[13] Jerry L Prince,et al. Medical Imaging Signals and Systems , 2005 .
[14] M. Koch,et al. Determination of additive content in polymeric compounds with terahertz time-domain spectroscopy , 2007 .
[15] Wai Lam Chan,et al. Imaging with terahertz radiation , 2007 .
[16] Christopher D. Stoik,et al. Nondestructive evaluation of aircraft composites using transmissive terahertz time domain spectroscopy. , 2008, Optics express.
[17] C. Joerdens,et al. Evaluation of leaf water status by means of permittivity at terahertz frequencies , 2009, Journal of biological physics.
[18] Jordi Sardans,et al. Changes in water content and distribution in Quercus ilex leaves during progressive drought assessed by in vivo 1H magnetic resonance imaging , 2010, BMC Plant Biology.
[19] F. Workneh,et al. Wheat Streak Mosaic: A Classic Case of Plant Disease Impact on Soil Water Content and Crop Water-Use Efficiency. , 2010, Plant disease.
[20] A Doi,et al. Real-time terahertz near-field microscope. , 2011, Optics express.
[21] M. Koch,et al. Terahertz spectroscopy and imaging – Modern techniques and applications , 2011 .
[22] Anatomical Structure Dynamics of Ginkgo biloba L. Leaves during Annual Growth and Development , 2011 .
[23] Martin Koch,et al. Introducing terahertz technology into plant biology: A novel method to monitor changes in leaf water status , 2011 .
[24] Vincent P Wallace,et al. Classification of terahertz-pulsed imaging data from excised breast tissue. , 2012, Journal of biomedical optics.
[25] Miriam S. Vitiello,et al. Terahertz confocal microscopy with a quantum cascade laser source , 2012 .
[26] M. Palomar,et al. Leaf water dynamics of Arabidopsis thaliana monitored in-vivo using terahertz time-domain spectroscopy , 2013, Scientific Reports.
[27] Mapping of Leaf Water Content Using Near-Infrared Hyperspectral Imaging , 2013, Applied spectroscopy.
[28] L. Sack,et al. The Heterogeneity and Spatial Patterning of Structure and Physiology across the Leaf Surface in Giant Leaves of Alocasia macrorrhiza , 2013, PloS one.
[29] S. Bhattacharjee,et al. Plant Water-Stress Response Mechanisms , 2014 .
[30] Martin Koch,et al. Monitoring Plant Drought Stress Response Using Terahertz Time-Domain Spectroscopy[C][W] , 2014, Plant Physiology.
[31] Pedro Melo-Pinto,et al. ASSESSMENT OF GRAPEVINE WATER STATUS FROM HYPERSPECTRAL IMAGING OF LEAVES , 2014 .
[32] Qin Zhang,et al. A Review of Imaging Techniques for Plant Phenotyping , 2014, Sensors.
[33] Wei Li,et al. Spectroscopic study of terahertz reflection and transmission properties of carbon-fiber-reinforced plastic composites , 2015 .
[34] Puxiang Lai,et al. Photoacoustically guided wavefront shaping for enhanced optical focusing in scattering media , 2014, Nature Photonics.
[35] Martin Koch,et al. Monitoring leaf water content with THz and sub-THz waves , 2015, Plant Methods.
[36] Aoife Gowen,et al. A Study on the Application of Near Infrared Hyperspectral Chemical Imaging for Monitoring Moisture Content and Water Activity in Low Moisture Systems , 2015, Molecules.
[37] Thomas Witzel,et al. Low-Cost High-Performance MRI , 2015, Scientific Reports.
[38] Javier Tardáguila,et al. Thermal imaging to detect spatial and temporal variation in the water status of grapevine (Vitis vinifera L.) , 2016 .
[39] H. Cui,et al. Determination of Critical Micelle Concentrations of Surfactants by Terahertz Time-Domain Spectroscopy , 2016, IEEE Transactions on Terahertz Science and Technology.
[40] Mehdi Anwar,et al. Developing terahertz imaging equation and enhancement of the resolution of terahertz images using deconvolution , 2016, SPIE Commercial + Scientific Sensing and Imaging.
[41] Wei Li,et al. Nondestructive Evaluation of Carbon Fiber Reinforced Polymer Composites Using Reflective Terahertz Imaging , 2016, Sensors.
[42] Mario Pagano,et al. Non-invasive absolute measurement of leaf water content using terahertz quantum cascade lasers , 2017, Plant Methods.
[43] Xinxin Yang,et al. Room-temperature, low-impedance and high-sensitivity terahertz direct detector based on bilayer graphene field-effect transistor , 2017 .
[44] H. Cui,et al. Nondestructive examination of polymethacrylimide composite structures with terahertz time-domain spectroscopy , 2017 .
[45] Hong-Liang Cui,et al. Void and crack detection of polymethacrylimide foams based on terahertz time-domain spectroscopic imaging , 2017 .
[46] B. Jin,et al. Heterodyne detection at 216, 432, and 648 GHz based on bilayer graphene field-effect transistor with quasi-optical coupling , 2017 .
[47] H. Cui,et al. Nondestructive evaluation of glass fiber honeycomb sandwich panels using reflective terahertz imaging , 2019 .