10
Y. Ozaki and C. Huck
References
1. H.W. Siesler, Y. Ozaki, S. Kawata, H.M. Heise (eds.), Near-Infrared Spectroscopy, Principles,
Instruments, Applications, Wiley-VCH (2002).
2. Y. Ozaki, W. F. McClure, A. A. Christy, eds., Near-Infrared Spectroscopy in Food Science and
Technology, Wiley-Interscience (2007).
3. Y. Ozaki, Near-infrared spectroscopy-Its versatility in analytical chemistry. Anal. Sci. 28, 545–
563 (2012)
4. D. A. Burns, E. W. Ciurczak eds., Handbook of Near-Infrared Analysis, Third Edition (Practical
Spectroscopy), CRC Press (2007).
5. Y. Ozaki, C. W. Huck, K. B. Be´ c, “Near-IR spectroscopy and its applications” in Molecular
and Laser Spectroscopy: Advances and Applications, V.P. Gupta ed. 2017, Elsevier, pp.11–38.
6. J. Workman, Jr., L. Weyer, Practical Guide and Spectral Atlas for Interpretive Near-Infrared
Spectroscopy, 2nd Edition, CRC Press (2012).
7. M.A. Czarnecki, Y. Morisawa, Y. Futami, Y. Ozaki, Advances in molecular structure and
interaction studies using near-infrared spectroscopy. Chem. Rev. 115, 9707–9744 (2015).
8. C.G. Kirchler, R. Henn, J. Modl, F. Munzker, T.H. Baumgartner, F. Meisch, A. Kehle, G.K.
Bonn, C.W. Huck, Direct determination of Ni 2+ -capacity of IMAC materials using near-infrared
spectroscopy. Molecules 23, 3072–3081 (2018).
9. J.W. Ellis, Trans Faraday Soc. 25, 888 (1928).
10. R. B. Barnes R. R. Brattain, J. Chem. Phys. 3, 446 (1935).
11. W. Kaye, Near-infrared spectroscopy: II. Instrumentation and Technique, Spectrochim Acta 7,
181–204 (1955).
12. O.H. Wheeler, Near infrared spectra of organic compounds. Chem. Rev. 59, 629–666 (1959).
13. J.R. Hart, K.H. Norris, C. Golumbic, Determination of the moisture content of seeds by nearinfrared spectrophotometry of their methanol extracts. Cereal Chem. 39, 94–99 (1962).
14. D.R. Massie, K.H. Norris, Trans. Of ASAE 8, 598 (1965).
15. M.C. Bernard-Houplain, C. Sandorfy, On the similarity of the relative intensities of Raman
fundamentals and infrared overtones of free and hydrogen bonded X-H stretching vibrations.
Chem. Phys. Lett. 27, 154–156 (1974).
16. C. Sandorfy, R. Buchet, G. Lachenal: Principles of molecular vibrations for near-infrared
spectroscopy, in ref. 2, pp.11–46.
17. K. Bujis, G.R. Choppin, J. Chem. Phys. 39, 2935 (1963).
18. F.F. Jöbsis, Noninvasive, infrared monitoring of cerebral and myocardial oxygen sufficiency
and circulatory parameters. Science 198, 1264–1267 (1977).
19. G. Margaret, B. Clare, E. E. Tachtsidis: From Jöbsis to the present day: a review of clinical nearinfrared spectroscopy measurements of cerebral cytochrome-c-oxidase. J. Biomed. Opt.,21,
091307 (2016).
20. Z. Yuan, J. Zhang, X. Lin, Technological advances and prospects in multimodal neuroimaging:
Fusions of fNIRS-fMRI, fNIRS-EEG and fMRI-EEG, LAP LAMBERT Academic Publishing
(2014).
Y. Ozaki and C. Huck
References
1. H.W. Siesler, Y. Ozaki, S. Kawata, H.M. Heise (eds.), Near-Infrared Spectroscopy, Principles,
Instruments, Applications, Wiley-VCH (2002).
2. Y. Ozaki, W. F. McClure, A. A. Christy, eds., Near-Infrared Spectroscopy in Food Science and
Technology, Wiley-Interscience (2007).
3. Y. Ozaki, Near-infrared spectroscopy-Its versatility in analytical chemistry. Anal. Sci. 28, 545–
563 (2012)
4. D. A. Burns, E. W. Ciurczak eds., Handbook of Near-Infrared Analysis, Third Edition (Practical
Spectroscopy), CRC Press (2007).
5. Y. Ozaki, C. W. Huck, K. B. Be´ c, “Near-IR spectroscopy and its applications” in Molecular
and Laser Spectroscopy: Advances and Applications, V.P. Gupta ed. 2017, Elsevier, pp.11–38.
6. J. Workman, Jr., L. Weyer, Practical Guide and Spectral Atlas for Interpretive Near-Infrared
Spectroscopy, 2nd Edition, CRC Press (2012).
7. M.A. Czarnecki, Y. Morisawa, Y. Futami, Y. Ozaki, Advances in molecular structure and
interaction studies using near-infrared spectroscopy. Chem. Rev. 115, 9707–9744 (2015).
8. C.G. Kirchler, R. Henn, J. Modl, F. Munzker, T.H. Baumgartner, F. Meisch, A. Kehle, G.K.
Bonn, C.W. Huck, Direct determination of Ni 2+ -capacity of IMAC materials using near-infrared
spectroscopy. Molecules 23, 3072–3081 (2018).
9. J.W. Ellis, Trans Faraday Soc. 25, 888 (1928).
10. R. B. Barnes R. R. Brattain, J. Chem. Phys. 3, 446 (1935).
11. W. Kaye, Near-infrared spectroscopy: II. Instrumentation and Technique, Spectrochim Acta 7,
181–204 (1955).
12. O.H. Wheeler, Near infrared spectra of organic compounds. Chem. Rev. 59, 629–666 (1959).
13. J.R. Hart, K.H. Norris, C. Golumbic, Determination of the moisture content of seeds by nearinfrared spectrophotometry of their methanol extracts. Cereal Chem. 39, 94–99 (1962).
14. D.R. Massie, K.H. Norris, Trans. Of ASAE 8, 598 (1965).
15. M.C. Bernard-Houplain, C. Sandorfy, On the similarity of the relative intensities of Raman
fundamentals and infrared overtones of free and hydrogen bonded X-H stretching vibrations.
Chem. Phys. Lett. 27, 154–156 (1974).
16. C. Sandorfy, R. Buchet, G. Lachenal: Principles of molecular vibrations for near-infrared
spectroscopy, in ref. 2, pp.11–46.
17. K. Bujis, G.R. Choppin, J. Chem. Phys. 39, 2935 (1963).
18. F.F. Jöbsis, Noninvasive, infrared monitoring of cerebral and myocardial oxygen sufficiency
and circulatory parameters. Science 198, 1264–1267 (1977).
19. G. Margaret, B. Clare, E. E. Tachtsidis: From Jöbsis to the present day: a review of clinical nearinfrared spectroscopy measurements of cerebral cytochrome-c-oxidase. J. Biomed. Opt.,21,
091307 (2016).
20. Z. Yuan, J. Zhang, X. Lin, Technological advances and prospects in multimodal neuroimaging:
Fusions of fNIRS-fMRI, fNIRS-EEG and fMRI-EEG, LAP LAMBERT Academic Publishing
(2014).
