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006 m |o d |
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008 180609s2018 gw |||| o |||| 0|eng
010 _a 2019764557
020 _a9783319790992
024 7 _a10.1007/978-3-319-79099-2
_2doi
035 _a(DE-He213)978-3-319-79099-2
040 _aDLC
_beng
_epn
_erda
_cDLC
050 _aQK793
_b.G45 2018
072 7 _aPSB
_2thema
072 7 _aPST
_2bicssc
072 7 _aPST
_2thema
072 7 _aSCI007000
_2bisacsh
082 0 4 _a572.572
_223
245 0 0 _aPlant Biomechanics :
_bFrom Structure to Function at Multiple Scales /
_cedited by Anja Geitmann, Joseph Gril.
250 _a1st ed. 2018.
260 _aCham, Switzerland:
_bSpringer
_c2018
300 _aIX, 441 p.:
_b 140 illustrations, 115 illustrations in color.)';
_c24 cm
505 0 _aOrgan and Tissue Mechanics -- Wood cell wall structure and organization in relation to mechanics -- Modelling, evaluation and biomechanical consequences of growth stress profiles inside tree stems -- Bending stress in plant stems: Models and assumptions -- Tree mechanics and wind loading -- Growth, Morphogenesis and Motion -- The mechanics of leaf growth on large scales -- Twisting growth in plant roots -- Plants at bodybuilding: development of plant "muscles" -- Modeling plant morphogenesis: An introduction -- Mechanical conflicts in growth heterogeneity -- Folding, wrinkling and buckling in plant cell walls -- Structural principles in the design of hygroscopically moving plant cells -- Using modeling to understand the hygromechanical and hysteretic behavior of the S2 cell wall layer of wood -- Molecular Underpinnings of Cell Wall Mechanics -- Calcium-pectin chemistry and biomechanics: Biological background and mathematical modelling -- Cell wall expansion as viewed by the creep method -- Tensile testing of primary plant cells and tissues.+- Water Transport, Mechanosensing and Biomimetics -- Water motion and sugar translocation in leaves -- Molecular mechanisms of mechanosensing and mechanotransduction -- Biomechanics and functional morphology of plants - inspiration for biomimetic materials and structures.
520 _aThis book provides important insights into the operating principles of plants by highlighting the relationship between structure and function. It describes the quantitative determination of structural and mechanical parameters, such as the material properties of a tissue, in correlation with specific features, such as the ability of the tissue to conduct water or withstand bending forces, which will allow advanced analysis in plant biomechanics. This knowledge enables researchers to understand the developmental changes that occur in plant organs over their life span and under the influence of environmental factors. The authors provide an overview of the state of the art of plant structure and function and how they relate to the mechanical behavior of the organism, such as the ability of plants to grow against the gravity vector or to withstand the forces of wind. They also show the sophisticated strategies employed by plants to effect organ movement and morphogenesis in the absence of muscles or cellular migration. As such, this book not only appeals to scientists currently working in plant sciences and biophysics, but also inspires future generations to pursue their own research in this area.
650 0 _aBiological physics.
_94066
650 0 _aBiophysics.
_94067
650 0 _aForest products.
_94068
650 0 _aPlant anatomy.
_93537
650 0 _aPlant biochemistry.
_94069
650 0 _aPlant development.
_94070
650 0 _aPlant physiology.
_94071
650 1 4 _aPlant Biochemistry.
_94072
650 2 4 _aBiological and Medical Physics, Biophysics.
_94073
650 2 4 _aPlant Anatomy/Development.
_94074
650 2 4 _aPlant Physiology.
_94075
650 2 4 _aWood Science & Technology.
_94076
700 1 _aGeitmann, Anja,
_eeditor.
_94077
700 1 _aGril, Joseph,
_eeditor.
_94078
776 0 8 _iPrint version:
_tPlant biomechanics.
_z9783319790985
_w(DLC) 2018938364
776 0 8 _iPrinted edition:
_z9783030077273
776 0 8 _iPrinted edition:
_z9783319790985
776 0 8 _iPrinted edition:
_z9783319791005
906 _a0
_bibc
_corigres
_du
_encip
_f20
_gy-gencatlg
942 _2lcc
_cBK
_hQK793
_kQK793
_m.G45 2018
_01
999 _c6199
_d6199