A. Rygula and P. Miskowiec
306
56. Reich g (2005) Near-infrared spectroscopy and imaging: basic principles and pharmaceutical applications. Adv drug deliv Rev 57:1109–1143
57. Berardo N, Brenna ov, Amato A, valotia P, Pisacanea v, mottoa m (2004) Carotenoids
concentration among maize genotypes measured by near infrared reflectance spectroscopy
(NIRS). Innov Food Sci Emerg 5:393–398
58. Pedro Am, Ferreira mm (2005) Nondestructive determination of solids and carotenoids
in tomato products by near-infrared spectroscopy and multivariate calibration. Anal Chem
77:2505–2511.
59. Brenna ov, Berardo N (2004) Application of Near-Infrared Reflectance Spectroscopy
(NIRS) to the evaluation of carotenoids content in maize. J Agric Food Chem 52:5577–5582.
60. treado PJ, Nelson mP (2002) Raman imaging. In: Chalmers Jm, griffiths PR (eds) handbook of vibrational spectroscopy. John Wiley & Sons Ltd., Chichester
61. gierlinger N, Schwanninger m (2007) the potential of Raman microscopy and Raman imaging in plant research—review. Spectroscopy 21: 69–89
62. dieing t, Ibach W (2010) Raman microscopy. In: dieing t, hollricher o toporski J (eds)
Confocal Raman microscopy. Springer-verlag Berlin heidelberg
63. de Juan A, maeder m, hancewicz t, duponchel L, tauler R (2009) Chemometric tools for
image analysis. In: Salzer R, Siesler hW (eds) Infrared an Raman spectroscopic imaging.
Wiley-vCh, Chichester
64. Noda I, ozaki Y (2004) two-dimensional correlation spectroscopy: Applications in vibrational and optical spectroscopy. Wiley, Chichester
65. Brereton Rg (2007) Applied chemometrics for scientists. Wiley, Chichester
66. Baranska m, Schulz h, Joubert E, manley m (2006) In situ flavonoid analysis by Ft-Raman
spectroscopy: identification, distribution, and quantification of aspalathin in green rooibos
(Aspalathus linearis). Anal Chem 78:7716–7721
67. Baranski R, Baranska m, Schulz h (2005) Changes in carotenoid content and distribution in
living plant tissue can be observed and mapped in situ using NIR-Ft-Raman spectroscopy.
Planta 222:448–457
68. Withnall R, Chowdry BZ, Silver J, Edwards hgm, de oliveira LFC (2003) Raman spectra
of carotenoids in natural products. Spectrochim Acta A 59:2207–2212
69. veronelli m Zerbi g, Stradi R (1995) In situ resonance Raman spectra of carotenoids in bird’s
feathers. J Raman Spectrosc 26:683–692
70. de oliveira vE, Castro hv, Edwards hgm, de oliveira LFC (2010) Carotenes and carotenoids in natural biological samples: a Raman spectroscopic analysis. J Raman Spectrosc
41:642–650
71. gamsjaeger S, Baranska m, Schulz h, heiselmayer P, musso m (2011) discrimination of
carotenoid and flavonoid content in petals of pansy cultivars (viola x wittrockiana) by FtRaman spectroscopy. J Raman Spectrosc 42:1240–1247
72. Kaczor A, turnau K, Baranska m (2011) In situ Raman imaging of astaxanthin in a single
microalgal cell. Analyst 136:1109–1112
73. huang YY, Beal Cm, Cai WW, Ruoff RS, terentjev Em (2010) micro-Raman spectroscopy
of algae: composition analysis and fluorescence background behavior. Biotechnol Bioeng
105:889–898
74. Bartlett h, howells o, Eperjesi F (2010) the role of macular pigment assessment in clinical
practice: a review. Clin Exp optom 93:300–308
75. Bernstein PS, Zhao d-Y, Sharifzadeh m, Ermakov Iv, gellermann W (2004) Resonance Raman measurement of macular carotenoids in the living human eye. Arch Biochem Biophys
430:163–169
76. tanito m, obana A, gohto Y, okazaki S, gellermann W, ohira A (2012) macular pigment
density changes in Japanese individuals supplemented with lutein or zeaxanthin: quantification via resonance Raman spectrophotometry and autofluorescence imaging. Jpn J ophthalmol 56:488–496
77. howells o, Eperjesi F, Bartlett h (2011) measuring macular pigment optical density in vivo:
a review of techniques. graefes Arch Clin Exp ophthalmol 249:315–347
306
56. Reich g (2005) Near-infrared spectroscopy and imaging: basic principles and pharmaceutical applications. Adv drug deliv Rev 57:1109–1143
57. Berardo N, Brenna ov, Amato A, valotia P, Pisacanea v, mottoa m (2004) Carotenoids
concentration among maize genotypes measured by near infrared reflectance spectroscopy
(NIRS). Innov Food Sci Emerg 5:393–398
58. Pedro Am, Ferreira mm (2005) Nondestructive determination of solids and carotenoids
in tomato products by near-infrared spectroscopy and multivariate calibration. Anal Chem
77:2505–2511.
59. Brenna ov, Berardo N (2004) Application of Near-Infrared Reflectance Spectroscopy
(NIRS) to the evaluation of carotenoids content in maize. J Agric Food Chem 52:5577–5582.
60. treado PJ, Nelson mP (2002) Raman imaging. In: Chalmers Jm, griffiths PR (eds) handbook of vibrational spectroscopy. John Wiley & Sons Ltd., Chichester
61. gierlinger N, Schwanninger m (2007) the potential of Raman microscopy and Raman imaging in plant research—review. Spectroscopy 21: 69–89
62. dieing t, Ibach W (2010) Raman microscopy. In: dieing t, hollricher o toporski J (eds)
Confocal Raman microscopy. Springer-verlag Berlin heidelberg
63. de Juan A, maeder m, hancewicz t, duponchel L, tauler R (2009) Chemometric tools for
image analysis. In: Salzer R, Siesler hW (eds) Infrared an Raman spectroscopic imaging.
Wiley-vCh, Chichester
64. Noda I, ozaki Y (2004) two-dimensional correlation spectroscopy: Applications in vibrational and optical spectroscopy. Wiley, Chichester
65. Brereton Rg (2007) Applied chemometrics for scientists. Wiley, Chichester
66. Baranska m, Schulz h, Joubert E, manley m (2006) In situ flavonoid analysis by Ft-Raman
spectroscopy: identification, distribution, and quantification of aspalathin in green rooibos
(Aspalathus linearis). Anal Chem 78:7716–7721
67. Baranski R, Baranska m, Schulz h (2005) Changes in carotenoid content and distribution in
living plant tissue can be observed and mapped in situ using NIR-Ft-Raman spectroscopy.
Planta 222:448–457
68. Withnall R, Chowdry BZ, Silver J, Edwards hgm, de oliveira LFC (2003) Raman spectra
of carotenoids in natural products. Spectrochim Acta A 59:2207–2212
69. veronelli m Zerbi g, Stradi R (1995) In situ resonance Raman spectra of carotenoids in bird’s
feathers. J Raman Spectrosc 26:683–692
70. de oliveira vE, Castro hv, Edwards hgm, de oliveira LFC (2010) Carotenes and carotenoids in natural biological samples: a Raman spectroscopic analysis. J Raman Spectrosc
41:642–650
71. gamsjaeger S, Baranska m, Schulz h, heiselmayer P, musso m (2011) discrimination of
carotenoid and flavonoid content in petals of pansy cultivars (viola x wittrockiana) by FtRaman spectroscopy. J Raman Spectrosc 42:1240–1247
72. Kaczor A, turnau K, Baranska m (2011) In situ Raman imaging of astaxanthin in a single
microalgal cell. Analyst 136:1109–1112
73. huang YY, Beal Cm, Cai WW, Ruoff RS, terentjev Em (2010) micro-Raman spectroscopy
of algae: composition analysis and fluorescence background behavior. Biotechnol Bioeng
105:889–898
74. Bartlett h, howells o, Eperjesi F (2010) the role of macular pigment assessment in clinical
practice: a review. Clin Exp optom 93:300–308
75. Bernstein PS, Zhao d-Y, Sharifzadeh m, Ermakov Iv, gellermann W (2004) Resonance Raman measurement of macular carotenoids in the living human eye. Arch Biochem Biophys
430:163–169
76. tanito m, obana A, gohto Y, okazaki S, gellermann W, ohira A (2012) macular pigment
density changes in Japanese individuals supplemented with lutein or zeaxanthin: quantification via resonance Raman spectrophotometry and autofluorescence imaging. Jpn J ophthalmol 56:488–496
77. howells o, Eperjesi F, Bartlett h (2011) measuring macular pigment optical density in vivo:
a review of techniques. graefes Arch Clin Exp ophthalmol 249:315–347
