G. Almeida, S. Gagné, and R. E. Hernández, A NMR study of water distribution in hardwoods at several equilibrium moisture contents, Wood Sci Technol, vol.41, pp.293-307, 2007.

G. Almeida, S. Leclerc, and P. Perré, NMR imaging of fluid pathways during drainage of softwood in a pressure membrane chamber, Int J Multiph Flow, vol.34, pp.312-321, 2008.
URL : https://hal.archives-ouvertes.fr/hal-01482134

P. Ball, Watching wood dry, Nat Mater, vol.13, p.922, 2014.

J. Bessières, V. Maurin, and B. George, Wood-coating layer studies by X-ray imaging, Wood Sci Technol, vol.47, pp.853-867, 2013.

A. J. Bolton, A reexamination of some deviations from Darcy's Law in coniferous wood, Wood Sci Technol, vol.22, pp.311-322, 1988.

L. D. Bonner and R. J. Thomas, The ultrastructure of intercellular passageways in vessels of yellow poplar (Liriodendron tulipifera, L.) part I: Vessel pitting, Wood Sci Technol, vol.6, pp.196-203, 1972.

M. Bonnet, D. Courtier-murias, and P. Faure, NMR determination of sorption isotherms in earlywood and latewood of Douglas fir. Identification of bound water components related to their local environment, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01711369

G. Bramhall, The validity of Darcy's law in the axial penetration of wood, Wood Sci Technol, vol.5, pp.121-134, 1971.

C. A. Carrillo, D. Saloni, and L. A. Lucia, Capillary flooding of wood with microemulsions from Winsor I systems, J Colloid Interface Sci, vol.381, pp.171-179, 2012.

B. Choat, A. R. Cobb, and S. Jansen, Structure and function of bordered pits: New discoveries and impacts on whole-plant hydraulic function, New Phytol, vol.177, pp.608-626, 2008.

A. Choo, T. M. Paridah, and A. Karimi, Study on the longitudinal permeability of oil palm wood, Ind Eng Chem Res, vol.52, pp.9405-9410, 2013.

D. Chu, L. Xue, and Y. Zhang, Surface Characteristics of Poplar Wood with High-Temperature Heat Treatment : Wettability and Surface, BioResources, vol.11, pp.6948-6967, 2016.

J. Cox, P. J. Mcdonald, and B. A. Gardiner, A study of water exchange in wood by means of 2D NMR relaxation correlation and exchange, Holzforschung, vol.64, pp.259-266, 2010.

J. Crank, The mathematics of diffusion, 1975.

D. Meijer, M. Haemers, S. Cobben, W. Militz, and H. , Surface energy determinations of wood: Comparison of methods and wood species, Langmuir, vol.16, pp.9352-9359, 2000.

G. Desmarais, M. S. Gilani, and P. Vontobel, Transport of Polar and Nonpolar Liquids in Softwood Imaged by Neutron Radiography, Transp Porous Media, vol.113, pp.383-404, 2016.

S. V. Dvinskikh, M. Henriksson, and A. L. Mendicino, NMR imaging study and multi-Fickian numerical simulation of moisture transfer in Norway spruce samples, Eng Struct, vol.33, pp.3079-3086, 2011.

E. T. Engelund, L. G. Thygesen, S. Svensson, and C. Hill, A critical discussion of the physics of woodwater interactions, Wood Sci Technol, vol.47, pp.141-161, 2013.

P. Faure and S. Rodts, Proton NMR relaxation as a probe for setting cement pastes, Magn Reson Imaging, vol.26, pp.1183-1196, 2008.
URL : https://hal.archives-ouvertes.fr/hal-00528660

H. L. Frandsen, L. Damkilde, and S. Svensson, A revised multi-Fickian moisture transport model to describe non-Fickian effects in wood, Holzforschung, vol.61, pp.563-572, 2007.

Ö. Gezici-koç, S. Erich, and H. P. Huinink, Bound and free water distribution in wood during water uptake and drying as measured by 1D magnetic resonance imaging, Cellulose, vol.24, pp.535-553, 2017.

G. González and J. Siau, Longitudinal liquid permeability of American beech and eucalyptus, Wood Sci, vol.11, pp.105-110, 1978.

S. Gruener, Z. Sadjadi, and H. E. Hermes, Anomalous front broadening during spontaneous imbibition in a matrix with elongated pores, Proc Natl Acad Sci, vol.109, pp.10245-10250, 2012.

S. Hameury and M. Sterley, Magnetic resonance imaging of moisture distribution in Pinus sylvestris L. exposed to daily indoor relative humidity fluctuations, Wood Mater Sci Eng, vol.1, pp.116-126, 2006.

P. M. Kekkonen, A. Ylisassi, and V. V. Telkki, Absorption of water in thermally modified pine wood as studied by nuclear magnetic resonance, J Phys Chem C, vol.118, pp.2146-2153, 2014.

K. Krabbenhoft, Moisture Transport in Wood -A study of Physical-Mathematical Models and their Numerical Implementation. Technical University of Denmark Kretschmann D (2003) Nature materials: Velcro mechanics in wood, Nat Mater, vol.2, pp.775-776, 2003.

I. Kucerova, Methods to measure the penetration of consolidant solutions into "dry" wood, J Cult Herit, vol.13, pp.191-195, 2012.

N. Labbe, D. Jeso, B. Lartigue, and J. C. , Moisture content and extractive materials in maritime pine wood by low field H-1 NMR, Holzforschung, vol.56, pp.25-31, 2002.

M. Levitt, P. Maduh, and C. Hughes, Cogwheel phase cycling, J Magn Reson, vol.155, pp.300-306, 2002.

A. Mader, A. Schirò, M. Brischetto, and B. Pizzo, Interactions and penetration of polymers and nanolatexes into wood: An overview, Prog Org Coatings, vol.71, pp.123-135, 2011.

D. Mannes, W. Sonderegger, and S. Hering, Non-destructive determination and quantification of diffusion processes in wood by means of neutron imaging, Holzforschung, vol.63, pp.589-596, 2009.

B. Mazela, J. Kowalczuk, I. Ratajczak, and K. Szentner, Moisture content (MC) and multinuclear magnetic resonance imaging (MRI) study of water absorption effect on wood treated with aminofunctional silane, Eur J Wood Wood Prod, vol.72, pp.243-248, 2014.

R. S. Menon, A. L. Mackay, S. Flibotte, and J. Hailey, Quantitative separation of NMR images of water in wood on the basis of T2, J Magn Reson, vol.82, pp.205-210, 1989.

R. S. Menon, A. L. Mackay, and J. Hailey, An NMR determination of the physiological water distribution in wood during drying, J Appl Polym Sci, vol.33, pp.1141-1155, 1987.

W. Olek, P. Perré, and J. Weres, Inverse analysis of the transient bound water diffusion in wood, Holzforschung, vol.59, pp.38-45, 2005.

L. Passarini, C. Malveau, and R. E. Hernández, Water State Study of Wood Structure of Four Hardwoods Below Fiber Saturation Point with Nuclear Magnetic Resonance, Wood Fiber Sci, vol.46, pp.480-488, 2014.

P. Perré, Fluid-Flow through the Vessels and Intervascular Pits of Sycamore Wood, COST Action E15, vol.35, pp.213-216, 1981.

J. A. Petty, Relation between Immersion Time and Absorption of Petroleum Distillate in a VacuumPressure Process, Holzforschung, vol.29, pp.113-118, 1975.

S. Provencher, A constrained regularization method for inverting data represented by linear algebraic or integral equations, Comput Phys Commun, vol.27, pp.213-227, 1982.

J. Salin, Almost all wooden pieces have a damaged surface layer -impact on some properties and quality, Conference COST E53, vol.3, pp.102-108, 2008.

C. Schneider, W. Rasband, and K. Eliceiri, Image to ImageJ: 25 years of image analysis, Nat Methods, vol.9, pp.671-675, 2012.

M. Sedighi-gilani, M. Griffa, and D. Mannes, Visualization and quantification of liquid water transport in softwood by means of neutron radiography, Int J Heat Mass Transf, vol.55, pp.6211-6221, 2012.

M. Sedighi-gilani, P. Vontobel, and E. Lehmann, Liquid uptake in Scots pine sapwood and heartwood visualized and quantified by neutron radiography, Mater Struct, vol.47, pp.1097-1097, 2014.

I. Segerholm and J. Claesson, Unexpected experimental results for capillary suction in wood: Analysis on the fibre level, Wood Mater Sci Eng, vol.3, pp.109-118, 2008.

J. Siau, Wood: influence of moisture on physical properties, 1984.

C. Silva, J. M. Branco, A. Camões, and P. B. Lourenço, Dimensional variation of three softwood due to hygroscopic behavior, Constr Build Mater, vol.59, pp.25-31, 2014.

W. Simpson and J. Liu, Dependence of the water vapor diffusion coefficient of aspen (Populus spec.) on moisture content, Wood Sci Technol, vol.26, pp.9-21, 1991.

C. Skaar, . Relations, B. Springer-verlag, J. H. Van-houts, S. Wang et al., Moisture movement and thickness swelling in oriented strandboard, part 1. Analysis using nuclear magnetic resonance microimaging, Wood Sci Technol, vol.38, pp.617-628, 1988.

O. Vincent, P. Marmottant, P. A. Quinto-su, and C. D. Ohl, Birth and growth of cavitation bubbles within water under tension confined in a simple synthetic tree, Phys Rev Lett, vol.108, pp.1-5, 2012.
URL : https://hal.archives-ouvertes.fr/hal-00752084

O. Vincent, D. A. Sessoms, and E. J. Huber, Drying by cavitation and poroelastic relaxations in porous media with macroscopic pores connected by nanoscale throats, Phys Rev Lett, vol.113, pp.1-5, 2014.

M. Wålinder and G. Ström, Measurement of wood wettability by the Wilhelmy method. Part 2. Determination of apparent contact angles, Holzforschung, vol.55, pp.33-41, 2001.

E. W. Washburn, The dynamics of capillary flow, Phys Rev, vol.17, pp.273-283, 1921.

E. A. Wheeler, InsideWood -a web resource for hardwood anatomy, IAWA J, vol.32, pp.199-211, 2011.

E. A. Wheeler, P. Baas, and S. Rodgers, Variations in dicot wood anatomy: A global analysis based on the insidewood database, IAWA J, vol.28, pp.229-258, 2007.

K. P. Whittall and A. L. Mackay, Quantitative interpretation of NMR relaxation data, J Magn Reson, vol.84, pp.134-152, 1989.