Free Access
Issue |
Fruits
Volume 58, Number 3, May-June 2003
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Page(s) | 135 - 142 | |
DOI | https://doi.org/10.1051/fruits:2003001 | |
Published online | 15 April 2003 |
- Marriott J., Bananas-physiology and biochemistry of storage and ripening for optimum quality, CRC Cr. Rev. Food Sci. 13 (1980) 41-88. [CrossRef] [Google Scholar]
- Mustaffa R., Osman A., Yusof S., Mohamed S., Physico-chemical changes in Cavendish banana (Musa cavendishii L. var. Montel) at different positions within a bunch during development and maturation, J. Sci. Food Agric. 78 (1998) 201-207. [CrossRef] [Google Scholar]
- Matile P., Hötensteiner S., Thomas H., Chlorophyll degradation, Annu. Rev. Plant Phys. 50 (1999) 67-95. [Google Scholar]
- Jacob-Wilk D., Holland D., Goldschmidt E.E., Riov J., Eyal Y., Chlorophyll breakdown by chlorophyllase: isolation and functional expression of the Chlase1 gene from ethylene-treated citrus fruit and its regulation during development, Plant J. 20 (1999) 653-661. [CrossRef] [PubMed] [Google Scholar]
- Olsen K.L., Schomer H.A., Bartram R.D., Segregation of `Golden Delicious' apples for quality by light transmission, Am. Soc. Hortic. Sci. (1969) 821-828. [Google Scholar]
- Merzlyak M.N., Gitelson A.A., Chivkunova O.B., Rakitin V.Y., Non-destructive optical detection of pigment changes during leaf senescence and fruit ripening, Physiol. Plantarum 106 (1999) 135-141. [CrossRef] [Google Scholar]
- De Jager A., Roelofs F.M.M., Prediction of optimum harvest date of Jonagold, in: De Jager A., Johnson D., Höhn E., The post-harvest treatment of fruit and vegetables - Current status and future prospects, Proceedings of the Sixth International Symposium of the European Concerted Action Program, COST, Luxembourg, 94, 1996, pp. 21-31. [Google Scholar]
- Gitelson A.A., Merzlyak M.N., Lichtenthaler H.K., Detection of red edge position and chlorophyll content by reflectance measurements near 700 nm, J. Plant Physiol. 148 (1996) 501-508. [Google Scholar]
- Lichtenthaler H.K., Gitelson A., Lang M., Non-destructive determination of chlorophyll content of leaves of a green and an aurea mutant of tobacco by reflectance measurements, J. Plant Physiol. 148 (1996) 483-493. [Google Scholar]
- Zude-Sasse M., Truppel I., Herold B., An approach to non-destructive apple chlorophyll determination, Postharvest Biol. Tec. 25 (2002) 123-133. [CrossRef] [Google Scholar]
- Bellon V., Vigneau J.L., Leclercq M., Feasibility and performances of a new, multiplexed, fast and low-cost fiber-optic NIR spectrometer for on-line measurement of sugar in fruits, Appl. Spectrosc. 47 (1993) 1079-1083. [CrossRef] [Google Scholar]
- Davenel A., Crochon M., Pourcin J., Verlaque P., de Vaux M.C., On line infrared measurement in food processing, AgEng (1988) 88-308. [Google Scholar]
- Dull G.G., Birth G.S., Leffler R.G., Use of near infrared analysis for nondestructive measurements of dry matter in potatoes, Am. Potato J. 66 (1989) 215-225. [CrossRef] [Google Scholar]
- Huxol C.C., Bolin H.R., Mackey B.E., Near infrared analysis potential for grading raisin quality and moisture, J. Food Sci. 60 (1995) 176-180. [CrossRef] [Google Scholar]
- Kawano S., Non destructive NIR quality evaluation of fruits and vegetables in Japan, NIR News 5 (1994) 10-12. [Google Scholar]
- Birth G.S., Non destructive quality evaluation of agricultural products. Introduction, J. Food Protect. 41 (1978) 48-49. [Google Scholar]
- Cael J.J., Koening J.L., Blackwell J., Infrared and Raman spectroscopy of carbohydrate, Carbohydr. Res. 32 (1974) 79-91. [CrossRef] [Google Scholar]
- Murray I., Williams P.C., Chemical principles of near-infrared technology, in: Williams P., Norris K. (Eds.), Near-infrared technology in the agriculture and food industries, ASCC, Inc., St. Paul, Minnesota, USA, 1987, pp. 17-34. [Google Scholar]
- Lammertyn J., Nicola B., Ooms K., De Smedt V., De Baerdemaeker J., Non-destructive measurement of acidity, soluble solids, and firmness of Jonagold apples using NIR-spectroscopy, Trans. ASAE 41 (1998) 1089-1094. [Google Scholar]
- Slaughter D.C., Nondestructive determination of internal quality in peaches and nectarines, Trans. ASAE 38 (1995) 617-623. [Google Scholar]
- Tarkosova J., Copikova J., Determination of carbohydrate content in bananas during ripening and storage by near infrared spectroscopy, J. Near Infrared Spec. 8 (2000) 21-26. [CrossRef] [Google Scholar]
- Holden M., Chlorophylls, in: Goodwin T.W. (Ed.), Chemistry and biochemistry of plant pigments, vol. 2, Acad. Press London-New York-San Francisco, UK, 1976. [Google Scholar]
- Porra R.J., Thompson W.A., Kriedemann P.E., Determination of accurate extinction coefficients and simultaneous equations for assaying chlorophylls a and b extracted with four different solvents: verification of the concentration of chlorophyll standards by atomic absorption spectroscopy, Biochim. Biophys. Acta 975 (1989) 384-394. [Google Scholar]
- Birth G.S., How light interacts with foods, in: Gafney J. Jr. (Ed.), Quality Detection in Foods, ASAE, St. Joseph, USA, 1976, pp. 6-11. [Google Scholar]