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The Nature of Reaction Wood II. The Cell Wall Organization of Compression Wood Tracheids

AB Wardrop and HE Dadswell
3(1) pp.1 - 13


21 articles found in Crossref database.

Principles of Wood Science and Technology (1968)
Côté Wilfred A.
Effect of ionic liquid treatment on the ultrastructural and topochemical features of compression wood in Japanese cedar (Cryptomeria japonica)
Kanbayashi Toru, Miyafuji Hisashi
Scientific Reports. 2016 6(1).
Recent progress in the chemistry and topochemistry of compression wood
Timell T. E.
Wood Science And Technology. 1982 16(2). p.83
Compression Wood in Gymnosperms (1986)
Timell T. E.
Presence of a Distinct S3 Layer in Mild Compression Wood Tracheids of Pinus radiata
Singh A. P., Kim Y. S., Park B. D., Chung G. C., Wong A. H. H.
Holzforschung. 2003 57(3). p.243
Studies on opposite wood in conifers part II: Histology and ultrastructure
Timell T. E.
Wood Science and Technology. 1973 7(2). p.79
SOME OBSERVATIONS ON THE MECHANISM OF ORIENTATION MOVEMENT OF WOODY STEMS
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Plant Microtubules (2000)
Funada Ryo
Recent progress in the chemistry of wood hemicelluloses
Timell T. E.
Wood Science and Technology. 1967 1(1). p.45
Lignification of wood from deformed Pinus radiata
Downes Geoff M., Turvey Nigel D.
Forest Ecology and Management. 1990 37(1-3). p.123
Cellular Aspects of Wood Formation (2013)
Donaldson L. A., Singh A. P.
Characteristics of Compression Wood Tracheid of Loblolly Pine Induced by Artificial Inclination
Liu Ya Mei, Liu Sheng Quan, Zhou Liang, Qian Liang Cun
Advanced Materials Research. 2012 528 p.113
Compression wood has a minor effect on the climate signal in tree-ring stable isotope records of montane Norway spruce
Janecka Karolina, Kaczka Ryszard J, Gärtner Holger, Harvey Jill E, Treydte Kerstin
Tree Physiology. 2020 40(8). p.1014
Helical fissures in compression wood cells: Causative factors and mechanics of development
Boyd J. D.
Wood Science and Technology. 1973 7(2). p.92
Beobachtungen an Holzstrahlen im Druckholz
Timell T. E.
Holz als Roh- und Werkstoff. 1972 30(7). p.267
Super-resolution imaging of Douglas fir xylem cell wall nanostructure using SRRF microscopy
Donaldson Lloyd A.
Plant Methods. 2022 18(1).
Induced compression wood formation in Douglas fir (Pseudotsuga menziesii) in microgravity
Kwon Mi, Bedgar Diana L., Piastuch William, Davin Laurence B., Lewis Norman G.
Phytochemistry. 2001 57(6). p.847
Strain distribution, growth eccentricity, and tension wood distribution in the plagiotropic and orthotropic branches of Koelreuteria henryi Dummer
Hung Li-Fen, Tsai Ching-Chu, Chen Shiang-Jiuun, Huang Yan-San, Kuo-Huang Ling-Long
Trees. 2017 31(1). p.149
Variations in tracheid length and morphological changes in tracheid tips associated with the development of compression wood
Yoshizawa N., Kiyomiya M., Idei T.
Wood Science and Technology. 1987 21(1). p.1
Studies on compression wood—Part I: Distribution of lignin in compression wood of red spruce (Picea rubens Sarg.)
Côté W. A., Timell T. E., Zabel R. A.
Holz als Roh- und Werkstoff. 1966 24(10). p.432
Principles of Wood Science and Technology (1968)
Côté Wilfred A.
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