BartonF.E.III, President, Council for Near-Infrared Reflectance, USDA, GA, USA, personal communication.
2.
BowersS.A.HanksR. J., “Reflection of radiant energy from soils”, Soil Science100, 130–138 (1965).
3.
DalalR.C.HenryR.J., “Simultaneous determination of moisture, organic carbon, and total nitrogen by near infrared reflectance spectrophotometry”. Soil Sci. Soc. Am. J.50, 120–123 (1986).
4.
OsbourneB.G.FearnT., Near-Infrared Spectroscopy in Food Analysis. Longman, New York, NY (1988).
5.
MalleyD. F.WilliamsP.C.StaintonM.P.HauserB.W., “Application of near-infrared reflectance spectroscopy in the measurement of carbon, nitrogen, and phosphorus in seston from oligotrophic lakes”, Can. J. Fish. Aquat. Sci.50, 1779–1785 (1993).
6.
MalleyD.F.WilliamsP.C.StaintonM.P., “Rapid measurement of suspended C, N, and P from Precambrian Shield lakes using near-infrared spectroscopy”, Wat. Res. (accepted for publication).
7.
MalleyD.F.WilliamsP.C.HauserB.HallJ., “Prediction of organic C, N, and P in freshwater sediments using near-infrared reflectance spectroscopy. Proceedings of NIR-95: The Future Waves Conference, 6–11 August 1995, Montreal, (submitted for publication).
8.
McLellanT.M.AberJ.D.MartinM.E.MelilloJ.M.NadelhofferK.J., “Determination of nitrogen, lignin, and cellulose content of decomposing leaf material by near infrared reflectance spectroscopy”, Can. J. Forest Res. 21, 1684–1688 (1991).
9.
RobertsC.A.MooreK.J.GraffisD.W.KirbyH.W.WalgenbachR.P., “Quantification of mold in hay by near IR reflectance spectroscopy”, J. Dairy Sci. 70, 2560–2564 (1987).
10.
RobertsC.A.BartonF.E.IIMooreK.J., “Estimation of Acremonium-Coenophialum mycelium in infected tall fescue”, Agron. J.80, 737–740 (1988).
11.
RobertsC.A.MarquardtR.R.FrohlichA.A.McGrawR.L.RottR.L.HenningsJ.C., “Chemical and spectral quantification of mold in contaminated barley”, Cereal Chem. 68, 272–275 (1991).
12.
NilssonM.ElmqvistT.CarlssonU., “Use of infra-red reflectance spectrometry and multivariate data analysis to detect anther smut disease (Microbotryum violaeum) in Silene dioica”, Phytopathology84, 764–770 (1994).
13.
MathiasJ.A.WilliamsP.C.SoberingD.C., “The determination of lipid and protein in freshwater fish using near-infrared reflectance spectroscopy”, Aquaculture61, 303–311 (1987).
14.
CraigJ.F.BabalukJ.A.StevensonS.G.WilliamsP.C., “Variation in growth and reproduction of walleye (Stizostedion vitreum) in three Manitoba lakes”, Can. J. Zool.73, 367–372 (1995).
15.
NilssonM., Fungi and bacteria in peat and peat forming plant communities. PhD Thesis, Swedish University of Agricultural Sciences, S-901 83 Umeå, Sweden (1991).
16.
GranbergG.MikkeläC.SundhI.SvenssonB.NilssonM., “Sources of spatial variation in methane emission from mires in northern Sweden”, submitted to Global Biogeochem. Cycles.
17.
PalmborgC.NordgrenA., “Modeling microbial activity and biomass in forest soil with substrate quality measured using near infrared reflectance spectroscopy”, Soil Biol. Biochem.25, 1713–1718 (1995).
18.
PietikainenJ.FritzeH., “Clearcutting and prescribed burning in coniferous forest: Comparison of effects on soil fungal and total microbial biomass, respiration activity and nitrogen”, Soil Biol. Biochem.27, 101–109 (1995).
19.
KorsmanT.NilssonM.OhmanJ.RenbergI., “Near-infrared reflectance spectroscopy of sediments: A potential method to infer the past pH of lakes”, Environ. Sci. Technol.26, 2122–2126 (1992).
20.
NilssonM.DåbakkB.KorsmanT.RenbergI., “Quantifying relationships between near infrared reflectance (NIR) spectra of lake sediments and water chemistry”, submitted to Environ. Sci. Technol.
21.
StenbergB.NordkvistE.SalomonssonL., “Use of near infrared reflectance spectra of soils for objective selection of samples”, Soil Science159, 109–114 (1995).