Register      Login
Australian Journal of Biological Sciences Australian Journal of Biological Sciences Society
Biological Sciences

Articles citing this paper

Tree Growth Stresses

JD Boyd
3(3) pp.270 - 293


9 articles found in Crossref database.

Plants control the properties and actuation of their organs through the orientation of cellulose fibrils in their cell walls
Burgert I., Fratzl P.
Integrative and Comparative Biology. 2009 49(1). p.69
Radial dislocations in the fibre wall of Eucalyptus regnans trees of high growth stress
Chafe S. C.
Wood Science and Technology. 1977 11(1). p.59
Tree growth stresses—Part IV: Visco-elastic strain recovery
Boyd J. D., Schuster K. B.
Wood Science and Technology. 1972 6(2). p.95
Tensile and compressive stresses in tracheids are induced by swelling based on geometrical constraints of the wood cell
Burgert Ingo, Eder Michaela, Gierlinger Notburga, Fratzl Peter
Planta. 2007 226(4). p.981
Dynamic Single Crystals: Kinematic Analysis of Photoinduced Crystal Jumping (The Photosalient Effect)
Naumov Panče, Sahoo Subash Chandra, Zakharov Boris A., Boldyreva Elena V.
Angewandte Chemie. 2013 125(38). p.10174
Evaluating growth strain of Eucalyptus globulus Labill. from SilviScan measurements
Yang Jun Li, Baillères Henri, Evans Robert, Downes Geoff
Holzforschung. 2006 60(5). p.574
The significance of basic and applied research on mechanical fasteners for residential construction in Australia
Boyd J.D.
Building Science. 1965 1(1). p.33
Dynamic Single Crystals: Kinematic Analysis of Photoinduced Crystal Jumping (The Photosalient Effect)
Naumov Panče, Sahoo Subash Chandra, Zakharov Boris A., Boldyreva Elena V.
Angewandte Chemie International Edition. 2013 52(38). p.9990
The distribution of cell wall deformations in fibres adjacent to rays in Eucalyptus pilularis
Wilkins A. P.
Wood Science and Technology. 1986 20(3). p.229
Abstract PDF (14.5 MB) Export Citation

Share

Share on Facebook Share on Twitter Share on LinkedIn Share via Email