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               108                              การเพิ่่�มปร่มาณสารประกอบฟีีนอลิ่กในพิ่ืชด้้วยแสง : หลิักการแลิะแนวทางปฏิ่บัติ่



                        Hodgson, J.M. (2019). Flavonoid intake is associated with lower mortality in

                        the Danish Diet Cancer and Health Cohort. Nature Communications. 10, 3651.
               Chen, X.-I., Guo, W.-Z., Xue, X.-Z., Wang, L.-C. & Qiao, X.-J. (2014). Growth and quality

                        responses of ‘Green Oak Leaf’ lettuce as affected by monochromic or mixed
                        radiation provided by fluorescent lamp (FL) and light-emitting diode (LED).

                        Scientia Horticulturae. 172, 168-175.
               Chen, Z., Ma, Y., Weng, Y., Yang, R., Gu, Z. & Wang, P. (2019). Effects of UV-B radiation

                        on phenolic accumulation, antioxidant activity and T physiological changes in
                        wheat (Triticum aestivum L.) seedlings. Food Bioscience. 30, 100409.

               Chua, I.Y.P., King, P.J.H., Ong, K.H., Sarbini, S.R. & Yiu, P.H. (2015). Influence of light
                        intensity and temperature on antioxidant activity in Premna serratifolia L.

                        Journal of Soil Science and Plant Nutrition. 15, 605-614.
               De la Rosa, L.A., Moreno-Escamilla, J.O., Rodrigo-García, J. & Alvarez-Parrilla, E. (2019).

                        Phenolic compounds. In: Yahia, E.M. & Carrillo-López, A. (Eds.) Postharvest
                        Physiology and Biochemistry of Fruits and Vegetables. Kidlington: Woodhead

                        Publishing, pp. 253-271.
               D’hallewin, G., Schirra, M., Pala, M. & Ben-Yehoshua, S. (2000). Ultraviolet C irradiation
                                .
                                  −2
                        at 0.5 kJ m  reduces decay without causing damage or affecting postharvest
                        quality of Star Ruby grapefruit (C. paradisi Macf.). Journal of Agricultural and

                        Food Chemistry. 48, 4571-4575.
               Ezzat, S.M., Shouman, S.A., Elkhoely, A., Attia, Y.M., Elsesy, M.S., El Senousy, A.S.,

                        Choucry, M.A., El Gayed, S.H., El Sayed, A.A., Sattar, E.A. & El Tanbouly,
                        N. (2018). Anticancer potentiality of lignan rich fraction of six flaxseed cultivars.

                        Scientific Reports. 8, 544.
               Gan, R.Y., Chan, C.-L., Yang, Q.-Q., Li, H.-B., Zhang, D., Ge, Y.-Y., Gunaratne, A., Ge, J. & Corke,

                        H. (2019). Bioactive compounds and beneficial functions of sprouted grains.
                        In: Feng, H., Nemzer, B. & DeVries, J.W. (Eds.) Sprouted Grains: Nutritional










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