16 Wooden Material and Environmental Sciences
377
35. A. Sandak, I. Modzelewska, J. Sandak, Fourier transform near infrared analysis of waste paper
with the addition of cereal bran biodegraded by Ascomycetes fungi. J. Near Infrared Spectrosc.
19(5), 369–379 (2011)
36. T. Inagaki, Y. Asanuma, S. Tsuchikawa, Selective assessment of duplex heat-treated wood by
near-infrared spectroscopy with principal component and kinetic analyses. J. Wood Sci. 64(1),
6–15 (2018)
37. G.M. Downes, C.E. Harwood, J. Wiedemann, N. Ebdon, H. Bond, R. Meder, Radial variation
in Kraft pulp yield and cellulose content in Eucalyptus globulus wood across three contrasting
sites predicted by near infrared spectroscopy. Can. J. For. Res. 42(8), 1577–1586 (2012)
38. J. GlGAC, M. F ˇ lserova, Identification of semichemical fluting properties by application of near
infrared spectroscopy. Wood Res. 56(2), 189–202 (2011)
39. R. Meder, J.T. Brawner, G.M. Downes, N. Ebdon, Towards the in-forest assessment of Kraft
pulp yield: comparing the performance of laboratory and hand-held instruments and their value
in screening breeding trials. J. Near Infrared Spectrosc. 19(5), 421–429 (2011)
40. J.A. Tyson, L.R. Schimleck, A.M. Aguiar, J.I. Muro Abad, G.D.S.P. Rezende, O.M. Filho,
Development of near infrared calibrations for physical and mechanical properties of eucalypt
pulps of mill-line origin. J. Near Infrared Spectrosc. 20(2), 287–294 (2012)
41. J.W.B. Braga, T.C.M. Pastore, V.T.R. Coradin, J.A.A. Camargos, A.R. da Silva, The use of
near infrared spectroscopy to identify solid wood specimens of swietenia macrophylla0 (Cites
Appendix II). Iawa J. 32(2), 285–296 (2011)
42. P.A. Cooper, D. Jeremic, S. Radivojevic, Y.T. Ung, B. Leblon, Potential of near-infrared
spectroscopy to characterize wood products 1. Can. J. For. Res. 41(11), 2150–2157 (2011)
43. Z. Yang, B. Lü, A. Huang, Rapid identification of softwood and hardwood by near infrared
spectroscopy of cross-sectional surfaces. Spectrosc. Spectr. Anal. 32(7), 1785–1789 (2012)
44. H. Abe, K. Watanabe, A. Ishikawa, S. Noshiro, T. Fujii, M. Iwasa, H. Kaneko, H. Wada,
Simple separation of Torreya nucifera and Chamaecyparis obtusa wood using portable visible
and near-infrared spectrophotometry: differences in light-conducting properties. J. Wood Sci.
62(2), 210–212 (2016)
45. T. Ma, T. Inagaki, M. Ban, S. Tsuchikawa, Rapid identification of wood species by nearinfrared spatially resolved spectroscopy (NIR-SRS) based on hyperspectral imaging (HSI).
Holzforschung 73(4), 323–330 (2018)
46. A. Fernandes, J. Lousada, J. Morais, J. Xavier, J. Pereira, P. Melo-Pinto, Measurement of
intra-ring wood density by means of imaging VIS/NIR spectroscopy (hyperspectral imaging).
Holzforschung 67(1), 59–65 (2013)
47. T.A. Lestander, P. Geladi, S.H. Larsson, M. Thyrel, Near infrared image analysis for online
identification and separation of wood chips with elevated levels of extractives. J. Near Infrared
Spectrosc. 20(5), 591–599 (2012)
48. R. Meder, R.R. Meglenb, Near infrared spectroscopic and hyperspectral imaging of compression wood in Pinus radiata D. Don. J. Near Infrared Spectrosc. 20(5), 583–589 (2012)
49. H. Kobori, N. Gorretta, G. Rabatel, V. Bellon-Maurel, G. Chaix, J.M. Roger, S. Tsuchikawa,
Applicability of Vis-NIR hyperspectral imaging for monitoring wood moisture content (MC).
Holzforschung 67(3), 307–314 (2013)
50. T. Ma, T. Inagaki, S. Tsuchikawa, Calibration of SilviScan data of Cryptomeria japonica wood
concerning density and microfibril angles with NIR hyperspectral imaging with high spatial
resolution. Holzforschung 71(4), 341–347 (2017)
51. I.A. Sofianto, T. Inagaki, T. Ma, S. Tsuchikawa, Effect of knots and holes on the modulus of
elasticity prediction and mapping of sugi (Cryptomeria japonica) veneer using near-infrared
hyperspectral imaging (NIR-HSI). Holzforschung 73(3), 259–268 (2018)
52. R.A.V. Rossel, T. Behrens, Using data mining to model and interpret soil diffuse reflectance
spectra. Geoderma 158(1–2), 46–54 (2010)
53. M.F. Baumgardner, L.R.F. Silva, L.L. Biehl, E.R. Stoner, Reflectance properties of soils. Adv.
Agron. 38(C), 1–44 (1986)
54. T. Udelhoven, C. Emmerling, T. Jarmer, Quantitative analysis of soil chemical properties with
diffuse reflectance spectrometry and partial least-square regression: a feasibility study. Plant
Soil 251(2), 319–329 (2003)
377
35. A. Sandak, I. Modzelewska, J. Sandak, Fourier transform near infrared analysis of waste paper
with the addition of cereal bran biodegraded by Ascomycetes fungi. J. Near Infrared Spectrosc.
19(5), 369–379 (2011)
36. T. Inagaki, Y. Asanuma, S. Tsuchikawa, Selective assessment of duplex heat-treated wood by
near-infrared spectroscopy with principal component and kinetic analyses. J. Wood Sci. 64(1),
6–15 (2018)
37. G.M. Downes, C.E. Harwood, J. Wiedemann, N. Ebdon, H. Bond, R. Meder, Radial variation
in Kraft pulp yield and cellulose content in Eucalyptus globulus wood across three contrasting
sites predicted by near infrared spectroscopy. Can. J. For. Res. 42(8), 1577–1586 (2012)
38. J. GlGAC, M. F ˇ lserova, Identification of semichemical fluting properties by application of near
infrared spectroscopy. Wood Res. 56(2), 189–202 (2011)
39. R. Meder, J.T. Brawner, G.M. Downes, N. Ebdon, Towards the in-forest assessment of Kraft
pulp yield: comparing the performance of laboratory and hand-held instruments and their value
in screening breeding trials. J. Near Infrared Spectrosc. 19(5), 421–429 (2011)
40. J.A. Tyson, L.R. Schimleck, A.M. Aguiar, J.I. Muro Abad, G.D.S.P. Rezende, O.M. Filho,
Development of near infrared calibrations for physical and mechanical properties of eucalypt
pulps of mill-line origin. J. Near Infrared Spectrosc. 20(2), 287–294 (2012)
41. J.W.B. Braga, T.C.M. Pastore, V.T.R. Coradin, J.A.A. Camargos, A.R. da Silva, The use of
near infrared spectroscopy to identify solid wood specimens of swietenia macrophylla0 (Cites
Appendix II). Iawa J. 32(2), 285–296 (2011)
42. P.A. Cooper, D. Jeremic, S. Radivojevic, Y.T. Ung, B. Leblon, Potential of near-infrared
spectroscopy to characterize wood products 1. Can. J. For. Res. 41(11), 2150–2157 (2011)
43. Z. Yang, B. Lü, A. Huang, Rapid identification of softwood and hardwood by near infrared
spectroscopy of cross-sectional surfaces. Spectrosc. Spectr. Anal. 32(7), 1785–1789 (2012)
44. H. Abe, K. Watanabe, A. Ishikawa, S. Noshiro, T. Fujii, M. Iwasa, H. Kaneko, H. Wada,
Simple separation of Torreya nucifera and Chamaecyparis obtusa wood using portable visible
and near-infrared spectrophotometry: differences in light-conducting properties. J. Wood Sci.
62(2), 210–212 (2016)
45. T. Ma, T. Inagaki, M. Ban, S. Tsuchikawa, Rapid identification of wood species by nearinfrared spatially resolved spectroscopy (NIR-SRS) based on hyperspectral imaging (HSI).
Holzforschung 73(4), 323–330 (2018)
46. A. Fernandes, J. Lousada, J. Morais, J. Xavier, J. Pereira, P. Melo-Pinto, Measurement of
intra-ring wood density by means of imaging VIS/NIR spectroscopy (hyperspectral imaging).
Holzforschung 67(1), 59–65 (2013)
47. T.A. Lestander, P. Geladi, S.H. Larsson, M. Thyrel, Near infrared image analysis for online
identification and separation of wood chips with elevated levels of extractives. J. Near Infrared
Spectrosc. 20(5), 591–599 (2012)
48. R. Meder, R.R. Meglenb, Near infrared spectroscopic and hyperspectral imaging of compression wood in Pinus radiata D. Don. J. Near Infrared Spectrosc. 20(5), 583–589 (2012)
49. H. Kobori, N. Gorretta, G. Rabatel, V. Bellon-Maurel, G. Chaix, J.M. Roger, S. Tsuchikawa,
Applicability of Vis-NIR hyperspectral imaging for monitoring wood moisture content (MC).
Holzforschung 67(3), 307–314 (2013)
50. T. Ma, T. Inagaki, S. Tsuchikawa, Calibration of SilviScan data of Cryptomeria japonica wood
concerning density and microfibril angles with NIR hyperspectral imaging with high spatial
resolution. Holzforschung 71(4), 341–347 (2017)
51. I.A. Sofianto, T. Inagaki, T. Ma, S. Tsuchikawa, Effect of knots and holes on the modulus of
elasticity prediction and mapping of sugi (Cryptomeria japonica) veneer using near-infrared
hyperspectral imaging (NIR-HSI). Holzforschung 73(3), 259–268 (2018)
52. R.A.V. Rossel, T. Behrens, Using data mining to model and interpret soil diffuse reflectance
spectra. Geoderma 158(1–2), 46–54 (2010)
53. M.F. Baumgardner, L.R.F. Silva, L.L. Biehl, E.R. Stoner, Reflectance properties of soils. Adv.
Agron. 38(C), 1–44 (1986)
54. T. Udelhoven, C. Emmerling, T. Jarmer, Quantitative analysis of soil chemical properties with
diffuse reflectance spectrometry and partial least-square regression: a feasibility study. Plant
Soil 251(2), 319–329 (2003)
