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Light-emitting diodes in Bio-Industry

 

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Tubular fluorescent lamps (TFL) and high-pressure sodium lamps (HPS) are the principal artificial light sources used in agriculture applications. Efficient means to apply light, its uniformity, light quantity and quality were under investigation worldwide. Recent development of photoelectronics has enabled the commercialization of super bright light-emitting diodes (LEDs), thus making the possibility of using LEDs in plant production as well as illumination possible. LEDs have many advantages over conventional light sources including high energy-conversion efficiency, utilizing DC power, compact and solid, longer life, wavelength specific, light intensity/quality adjustable and low thermal energy output, thus making it a promising light source for plant growth in a confined environment such as a plant tissue culture room or growth chamber. LED is very suitable for applications required specific wavelength. NASA is the first organization using LEDs in the mission to Mars. At present, their research has expanded the applications of LEDs to replace LASER in photodynamic therapy for cancer treatments. In the field of Dermatology, LED is the low intensity light source used as alternative in photo rejuvenation following LASER and pulse light. Besides skin treatment, LED can be used in other light therapies for the treatments of wound healing, joint/tissue inflammation, jaundiced newborns, circadian rhythm disorders, myocardial infarction, stroke, stress reduction, rhinitis, herpes and seasonal affective disorder etc. The objective of this study was to review the means of applying LEDs in bio-industry.

 


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7.      ¾ô¥»¨Î©¯¡B©£¥»¬ã¥¿¡B°ª¤ìº¡¬z¶¯¡BÔ³¥ÐÉܤT¡C2003¡C«C¦â¨tLEDÀ³¥Î©ó¶°³½¿O¤§¶}µo»P¥Î©óº®²î®ü³¨ªº®ü¤W¹êÅç¡COptics Japan. 536-537¡C

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10.  ÄÇ·ç˸¡B¤èÞm¡B½²¥ÐÀs¡C2003¡C¶W°ª«G«×¬õ¡BÂÅ¥úLEDÀ³¥Î©ó½¹½ºÄõ²Õ°ö­]®â°ö¤§¬ã¨s¡C¹A·~¾÷±ñ¾Ç¥Z¡C12(4)93:100¡C

11.  Barta, D. J., T. W. Tibbits, R. J. Bula and R. C. Morrow. 1992. Evaluation of light emitting diode characteristics for a space-based plant irradiation source. Advances in Space Research 12: 141-149.

12.  Biolight Corp., 2003. ¶Ë¤f¥úÀø¾¹¡B»Äµh¥úÀø¾¹¡B¥ú»ó¾¹¡B¬ü¥ú¾¹«¬¿ý¡CIsrael.

13.  Bliss, J.M., C.E. Bigelow, T.H. Foster and C.G. Haidaris. 2004. Susceptibility of Candida species to photodynamic effects of photofrin. Antimicrob Agents Chemother 48: 2000-6.

14.  Brown, C. S., A. C. Schuerger and J. C. Sager. 1995. Growth and photomorphogenesis of pepper plants under red light-emitting diodes with supplemental blue or far-red lighting. J. Amer. Soc. Hort. Sci. 120: 808-813.

15.  Bula R. J., R. C. Morrow, T. W. Tibbits and D. J. Barta. 1991. Light-emitting diodes as a radiation source for plants. Hortscience 26(2):203-205.

16.  Bula R. J., D. J. Tennessen, R. C. Morrow and T. W. Tibbitts. 1994. Light emitting diode as a plant lighting source. In ¡§International lighting controlled environments workshop¡¨, ed. T. W. Tibbitts, pp. 255-267. Florida, USA.

17.  Chabrier-Rosello, Y., T.H. Foster, N. Perez-Nazario, S. Mitra and C.G. Haidaris. 2005. Sensitivity of Candida albicans germ tubes and biofilms to photofrin-mediated phototoxicity. Antimicrob Agents Chemother 49: 4288-95.

18.  Chang, F. H. and J. H. Troughton. 1972. Chlorophyll a/b ratios in C3-C4 plants. Photosynthetica, 6:57-65.

19.  Dale, M. P. and D. R. Causton. 1992. Use of chlorophyll a/b ratios as a bioassay for the light environment of a plant. Functional Ecol. 6: 190-106.

20.  Eiichi, O., J. L. Cuello and K. A. Jordan. 1997. Evaluation of high intensity light-emitting diodes as light source for plant growth. ASAE Paper No. 97-4028. ASAE, St. Joseph, MI.

21.  Ella, S. 2003. System and method for facial treatment. Patent no.: US20030032900A1. Thomson Delphion Patent database.

22.  Fang, W. and R. C. Jao. 2000. A Review on Artificial Lighting of Tissue Cultures and Transplants. International symposium on Transplant production in closed system for solving the global issues on environmental conservation, food, resources and energy. Chiba, Japan.

23.  Fang, W., R. C. Jao and D. H. Lee. 2002 Artificial lighting apparatus for young plants using light emitting diodes as light source. US patent no.: US 6474838 B2.

24.  Fang, W., R. C. Jao and D. H. Lee. 2003 Artificial lighting apparatus for young plants using light emitting diodes as light source (updated). US patent no.: US 6554450 B2.

25.  Frenkel, R. E. and B. G. Frenkel. 1999. Quantifying stress reduction and medical treatment as a result of colored light therapies. Patent no.: 6007569. United States Patent and Trademark Office database.

26.  Goins, G.. D., N. C. Yorio, M. M. Sanwo and C. S. Brown. 1997. Photomorphogenesis, photosysthesis, and seed yield of wheat plants grown under red light-emitting diodes (LEDs) with and without supplemental blue lighting. J. Exp. Botany v48: 1407-1413.

27.  Hans C. P. M., H. Balke, U. M. Van Hes, B. M. A. Kroon, L. R. Mur and R. A. Binot. 1996. Application of light-emitting diodes in bioreactors: flashing light effects and energy economy in Algal culture (Chlorella pyrenoidosa) . Biotech. And Bioeng. v50: 98-107.

28.  Hart, B. M. and H. Malak.  2003. Joint / tissue inflammation therapy and monitoring device(s) JITMon device. Patent no.: US20030167080A1. Thomson Delphion Patent database.

29.  Hoenecke M. E., R. J. Bula and T. W. Tibbits. 1992. Importance of ¡§Blue¡¨ photon levels for lettuce seedlings grown under red-light-emitting diodes. Hortscience 27(5): 427-430.

30.  Iwanami Y., T. Kozai, Y. Kitaya and S. Kino. 1992. Effects of supplemental red and far-red lighting using light emitting diodes on stem elongation and growth of potato plantlets in vitro. Abstr. Intl. Symp. Transplant Production Systems. p183.

31.  Jao, R. C. and W. Fang. 2001a. Development of a flexible lighting system for plant related research using super-bright red and blue light-emitting diodes. Acta Horticulturae. 578: 133-140.

32.  Jao, R. C. and W. Fang. 2001b. Adjusting frequency and duty cycle to promote growth of potato plantlets in vitro using super-bright red and blue LEDs. Proceedings of "International Symposium on Design and Environmental Control of Tropical And Subtropical Greenhouses". April 15-18, Taichung, Taiwan.

33.  Jao, R. C. and W. Fang. 2003a. An adjustable light source for photo-phyto related research and young plant production. Applied Engineering in Agriculture, 19(5): 601-608.

34.  Jao, R. C. and W. Fang. 2003b. Effects of frequency and duty ratio on the growth of potato plantlets in vitro using LEDs. HortScience. 39(2):375-379.

35.  Jao, R. C. and W. Fang. 2003c. Growth of potato plantlets in vitro is different when provided concurrent versus alternating red and blue light photoperiods.  HortScience. 39(2): 380-382.

36.  Johnson C. F., C. S. Brown, R. M. Wheeler, J. C. Sager, D. K. Chapman and G.. F. Deitzer. 1996. Infrared light-emitting diode radiation causes gravitropic and morphological effects in dark-grown oat seedlings. Photochemistry and Photobiology 63(2): 238-242.

37.  Kollias, N. R. G.. and W. D. Tian. 2003. Phototherapy method for treatment of acne. Patent no.: 6663658. United States Patent and Trademark Office database.

38.  Ladislav, N., V. Tichy, F. Xiong and J. U. Grobbelaar. 1996. Microscopic green alage and cyanobacteria in high-frequency intermittent light. J. App. Phy. 8: 325-333.

39.  Lee, C. G.. and B. Palsson. 1994. High-density algal photobioreactors using light-emitting diodes. Biotech. And Bioeng. 44: 1161-1167.

40.  Liberman, J. 1991. Light: Medicine of the Future. How we can use it to heal ourselves now. ISBN 957-529-729-6.

41.  Lopez-Claros; M. E. 1996. Light therapy method and apparatus. Patent no.: 5562719. United States Patent and Trademark Office database.

42.  McDaniel, D. H.; 2003 Low intensity light therapy for the manipulation of fibroblast, and fibroblast-derived mammalian cells and collagen. Patent no.: US20030004556A1. Thomson Delphion Patent database.

43.  Mendes, E. and A. Harel 1996. Method of treating herpes. Patent no.: 5500009. United States Patent and Trademark Office database.

44.  Mendes, E. and Y. Lison. 1993. Light therapy system. Patent no.: 5259380. United States Patent and Trademark Office database.

45.  Mendes, E. and I. Neuman 1997. Treatment of rhinitis by biostimulative illumination. Patent no.: 5683436. United States Patent and Trademark Office database.

46.  Miyashita Y., Y. Kitaya and T. Kozai. 1995. Effects of red and far-red light on the growth and morphology plantlets in vitro: using light emitting diode as a light source for micropropagation. Acta Horticulturae 393: 189-194.

47.  Nhut, D.T., T. Takamura, H. Watanabe and M. Tanaka. 2000.Light emitting diodes (LEDs) as a radiation source for micropropagation of strawberry. In ¡§Transplant Production in the 21st Century¡¨, ed. Kubota and Chun, pp. 114-118. Japan.

48.  Nhut, D. T., T. Takamura, H. Watanabe and M. Tanaka. 2001. Artificial lighting source using light-emitting diodes (LEDs) in the efficient micropropagation of Spathiphyllum plantlets.

49.  Okamoto, K., T. Yanagi and S. Takita. 1996. Development of plant growth apparatus using blue and red LED as artificial light source. Acta Horticulturae 440: 111-116.

50.  Okamoto, K., T. Yanagi and S. Kondo. 1997. Growth and morphogenesis of lettuce seedlings raised under different combinations of red and blue light. Acta Horticulturae 435: 149-157.

51.  Ono, E., J. L. Cuello and K. A. Jordan. 1997. Evaluation of high intensity light-emitting diodes as light source for plant growth. ASAE paper 97-4028.

52.  Papageorgiou, P., A. Katsambas and A. Chu. 2000. Phototherapy with blue and red light in the treatment of acne vulgaris. British Journal of Dermatology 142: 973-978.

53.  Perricone, N. V. 2003. Skin treatments using blue and violet light. Patent no.: US20030009158A1. Thomson Delphion Patent database.

54.  Schuerger, A. C. and C. S. Brown. 1994. Spectral quality may be used to alter plant disease development in CELSS. Advances in Space Research. 14¡G395-398.

55.  Schuerger, A. C. and C. S. Brown. 1997. Spectral quality affects disease development of three pathogens on hydroponically grown plants. Hortscience 32(1): 96-100.

56.  Schuerger, A. C., C. S. Brown and E. C. Stryjewski. 1997. Anatomical features of pepper plants (Capsicum annuum L.) grown under red light-emitting diodes supplemented with blue or far-red light. Ann. J. Botany 79¡G273-282.

57.  Sharman, W.M., C.M. Allen and J.E. van Lier. 1999. Photodynamic therapeutics: basic principles and clinical applications. Drug Discovery Today 4:507-517.

58.  Shidahara, T. and K. Ohta. 2003. Reduction of seedling period of Eustoma grandiflorum (Raf.) Shinn. by complementary light treatments with colored fluorescent lamps. Environmental control in Biology.

59.  Souil, E., A. Capon, S. Mordon, A. T. Dinh-xuan, B. S. Polla and M. Bachelet. 2001. Treatment with 815 nm diode laser induces long-lasting expression 0f 72-kDa heat shock protein in normal rat skin. British Journal of Dermatology 144: 260-266.

60.  Streeter, J. 2003a. Low level light therapy for the treatment of myocardial infarction. Patent no.: US20030212442A1. Thomson Delphion Patent database.

61.  Streeter, J. 2003b. Low level light therapy for the treatment of stroke. Patent no.: US20030109906A1. Thomson Delphion Patent database.

62.  Takita, S., K. Okamoto and T. Yanagi. 1996. Computer simulation of PPF distribution under blue and red LED light source for plant growth. Acta Horticulturae 440: 286-291

63.  Tanaka, M., T. Takamura, H. Watanabe, M. Endo and T. Yanagi. 1998. In vitro growth of Cymbidium plantlets cultured under superbright red and blue light-emitting diodes (LEDs). J. hortic. Sci. biotech. v73(1): 39-44.

64.  Tennessen, D. J., R. J. Bula and T. D. Sharkey. 1995. Efficiency of photosynthesis in continuous and pulsed light emitting diode irradiation. Photosynthesis Res. 44: 261-269.

65.  Tennessen, D. J, E. L. Singsaas and T. D. Sharkey. 1994. Light-emitting diodes as a light source for photosynthesis research. Photosynthesis Res. 39: 85-92.

66.  Tripathy, B. C. and C. S. Brown. 1995. Root-shoot interaction in the greening of wheat seedlings grown under red light. Plant Physiology. 107: 407-411.

67.  Whelan H. T., E. V. Buchmann, N. T. Whelan, S. G. Turner, V. Cevenini, H. Stinson, R. Ignatius, T. Martin, J. Cwiklinski, G.. A. Meyer, B. Hodgson, L. Gould, M. Kane, G. Chen and J. Caviness. 2001. NSAN light emitting diode medical applications from deep space to deep sea. In ¡§Space Technology and Applications International Forum¡¨, ed. M. S. El-Genk, pp. 35-45. NASA, USA.

68.  Williams K. 2000. ¡§Photo-Manipulation-Boxes¡¨; An Instrument for the Study of Plant Photobiology. Bioscene 26(1): 3-15.

69.  Yanagi, T. and K. Okamoto. 1994. Super-bright light emitting diodes as an artificial light source for plant growth. Abstract of 3rd International Symposium on Artificial Lighting in Horticulture, p. 19.

70.  Yanagi, T., K. Okamoto and S. Takita. 1996. Effects of blue and blue/red lights of two different PPF levels on growth and morphogenesis of lettuce plants. Acta Horticulturae 440: 117-122.

71.  Vreman, H. J., D.S. Seidman and D.K. Stevenson. 2003. Phototherapy of jaundiced newborns using garments containing semiconductor light-emitting devices. Patent no.: 6596016. United States Patent and Trademark Office database.

72.  Vreman, H. J. and D. K. Stevenson. 2002 Devices for treating circadian rhythm disorders using LED's. Patent no.: 6350275. United States Patent and Trademark Office database.

 

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l  ¤èÞm¥ý¥Í¬°¬ü°ê¯Ã¿A¦è¦{ù®æ´µ¤j¾Ç¥Íª«¸ê·½¤uµ{³Õ¤h¡A²{¥ô°ê¥ß»OÆW¤j¾Ç¥Íª«²£·~¾÷¹q¤uµ{¾Ç¨t±Ð±Â¡C

l  ÄÇ·ç˸¥ý¥Í¬°°ê¥ß»OÆW¤j¾Ç¥Íª«²£·~¾÷¹q¤uµ{¾Ç³Õ¤h¡A²{¥ô¨p¥ß«Ø°ê¬ì§Þ¤j¾Ç¸ê°TºÞ²z¨t§U²z±Ð±Â¡C

l  Wei Fang received his Ph.D. in Bio-resource engineering from Rutgers ¡V The State University of New Jersey, USA. He is currently a professor in the Department of Bio-Industrial Mechatronics Engineering at National Taiwan University.

l  Ruey-Chi Jao received his Ph.D. in Bio-Industrial Mechatronics Engineering from National Taiwan University. He is currently an assistant professor in the Department of Information Management at Chien Kuo University.

      


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