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PUBMED FOR HANDHELDS

Journal Abstract Search


317 related items for PubMed ID: 17030540

  • 21. Sex-specific physiological, allocation and growth responses to water availability in the subdioecious plant Honckenya peploides.
    Sánchez-Vilas J, Retuerto R.
    Plant Biol (Stuttg); 2009 Mar; 11(2):243-54. PubMed ID: 19228331
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  • 25. 3D measurement and representation of pear canopy for modelling air-assisted orchard spraying.
    Melese Endalew A, Hertog M, Delele MA, Baetens K, Vercammen J, Gomand A, Baelmans M, Ramon H, Nicolaï BM, Verboven P.
    Commun Agric Appl Biol Sci; 2007 Mar; 72(1):245-8. PubMed ID: 18018896
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  • 26. Full waveform hyperspectral LiDAR for terrestrial laser scanning.
    Hakala T, Suomalainen J, Kaasalainen S, Chen Y.
    Opt Express; 2012 Mar 26; 20(7):7119-27. PubMed ID: 22453394
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  • 27. The role of mesophyll conductance during water stress and recovery in tobacco (Nicotiana sylvestris): acclimation or limitation?
    Galle A, Florez-Sarasa I, Tomas M, Pou A, Medrano H, Ribas-Carbo M, Flexas J.
    J Exp Bot; 2009 Mar 26; 60(8):2379-90. PubMed ID: 19321646
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  • 28. A new paradigm in leaf-level photosynthesis: direct and diffuse lights are not equal.
    Brodersen CR, Vogelmann TC, Williams WE, Gorton HL.
    Plant Cell Environ; 2008 Jan 26; 31(1):159-64. PubMed ID: 18028265
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  • 30. Image-based dynamic quantification and high-accuracy 3D evaluation of canopy structure of plant populations.
    Hui F, Zhu J, Hu P, Meng L, Zhu B, Guo Y, Li B, Ma Y.
    Ann Bot; 2018 Apr 18; 121(5):1079-1088. PubMed ID: 29509841
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  • 31. Multispectral fluorescence and reflectance imaging at the leaf level and its possible applications.
    Lenk S, Chaerle L, Pfündel EE, Langsdorf G, Hagenbeek D, Lichtenthaler HK, Van Der Straeten D, Buschmann C.
    J Exp Bot; 2007 Apr 18; 58(4):807-14. PubMed ID: 17118970
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  • 33. Crop 3D-a LiDAR based platform for 3D high-throughput crop phenotyping.
    Guo Q, Wu F, Pang S, Zhao X, Chen L, Liu J, Xue B, Xu G, Li L, Jing H, Chu C.
    Sci China Life Sci; 2018 Mar 18; 61(3):328-339. PubMed ID: 28616808
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  • 35. Reconstruction and analysis of a deciduous sapling using digital photographs or terrestrial-LiDAR technology.
    Delagrange S, Rochon P.
    Ann Bot; 2011 Oct 18; 108(6):991-1000. PubMed ID: 21515607
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  • 37. Canopy chlorophyll fluorescence applied to stress detection using an easy-to-build micro-lidar.
    Moya I, Loayza H, López ML, Quiroz R, Ounis A, Goulas Y.
    Photosynth Res; 2019 Oct 18; 142(1):1-15. PubMed ID: 31129867
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  • 38. Convergent structural responses of tropical forests to diverse disturbance regimes.
    Kellner JR, Asner GP.
    Ecol Lett; 2009 Sep 18; 12(9):887-97. PubMed ID: 19614757
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  • 39. A Simulation Study Using Terrestrial LiDAR Point Cloud Data to Quantify Spectral Variability of a Broad-Leaved Forest Canopy.
    Cifuentes R, Van der Zande D, Salas-Eljatib C, Farifteh J, Coppin P.
    Sensors (Basel); 2018 Oct 08; 18(10):. PubMed ID: 30297651
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  • 40. Effects of tree height on branch hydraulics, leaf structure and gas exchange in California redwoods.
    Ambrose AR, Sillett SC, Dawson TE.
    Plant Cell Environ; 2009 Jul 08; 32(7):743-57. PubMed ID: 19210642
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