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論は,研究を進める上で非常に助かりました.

最後に,研究室生活を共に過ごした林研究室の皆様に感謝いたします.

  

参 考 文 献

1) 内川惠二 総編,近江政雄 編,”講座 感覚・知覚の科学4味覚・嗅覚”、朝倉書店(2008).

2) E. A. Baldwin, H. W. Scott, C. K. Shewmaker, W. Schuch,”Flavor Trivia and Tomato Aroma: Biochemistry and Possible Mechanisms Control of Important Aroma Compo-nents”, Hort Science, Vol.35, 6, 2000

3) Ron G. Buttery, Gary R. Takeoka, Louisa C. Ling,”Furaneol: Odor Threshold and Impor-tance to Tomato Aroma”, J. Agric. Food Chem., Vol.43, pp.1638-1640, 1995

4) Ron G. Buttery, R. Takeoka, Louisa C. Ling,”Fresh Tomato Aroma Volatiles: A Quantita-tive Study”, J. Agric. Food Chem. Vol.35, pp.540-544, 1987

5) S. Mitro, A. R. Gordon, M. J. Olsson, J. N. Lundstrom,”The Smell of Age: Perception and Discrimination of Body Odors of Different Ages”, PLoS ONE, Vol.7, 5, 2012

6) S. Yamazaki, K. Hoshino, M. Kusuhara,”Odor Associated with Aging”, Anti-Aging Medicine, Vol.7(6), 60-65, 2010

7) S. Haze, Y. Gozu, S. Nakamura, Y. Kohno, K. Sawano, H. Ohta, K. Yamazaki,”2-Nonenal Newly Found in Human Body Odor Tends to Increase with Aging”, The Journal of Inves-tigative Dermatology, Vol.116, No.4, 2001

8) Boguslaw Buszewski, Martyna Kesy, Tomasz Ligor, Anton Amann,”Human exhaled air analytics: biomarkers of diseases”, Biomedical Chromatography, Vol.21, pp.553-566, 2007

9) Michael Phillips, Victoria Basa-Dalay, Graham Bothamley, Renee N. Cataneo, Phung Kim Lam, Maria Piedad R. Natividad, Peter Schmitt, James Wai,”Breath biomarkers of active pulmonary tuberculosis”, Tuberculosis, Vol.90, 2, pp.145-151, 2010

10) J. E. Amoore, E. Hautala,”Odor as an Aid to Chemical Safety: Odor Thresholds Compared with Threshold Limit Values and Volatilities for 214 Industrial Chemicals in Air and Water Dilution”, Journal of applied toxicology, Vol.3, No.6, 1983

11) G. Leonardos, D. Kendall, N. Barnard,”Odor Threshold Determinations of 53 Odorant Chemicals”, Journal of the Air Pollution Control Association, Vol.19, No.2, 1969

12) 税関,”麻薬探知犬”, http://www.customs.go.jp/mizugiwa/maken/maken.htm, 2017年12 月4日

13) K. Persaud, G. Dodd,”Analysis of discrimination mechanisms in the mammalian olfactory system using a model nose”, Nature, Vol.299, 1982

14) F. Rock, N. Barsan, U. Weimar,”Electronic Nose: Current Status and Future Trends”,Chemical Reviews, Vol.108, No.2, 2008

15) K. Arshark, E. Moore, G. M. Lyons, J. Harris, S. Clifford,”Areview of gas sensors em-ployed in electronic nose applications”, Sensor Review, Vol.24, No.2, pp.181-198, 2004 16) Jan Mitrovics, Heiko Ulmer, Udo Weimar, Wolfgang Gopel,”Modular Sensor Systems for

Gas Sensing and Odor Monitoring: The MOSES Concept”, Acc. Chem., Vol.31, pp.307-315, 1998

17) 加藤 喜美子,瀬戸口 泰弘,”においセンシング用半導体型ガスセンサー”,におい・かお り環境学会誌, 37巻, 3号,平成18年

18) Makoto Egashira, Yasuhiro Shimizu, ”Odor sensing by semiconductor metal oxide”, Sen-sors and Actuators B,13-14, pp. 443-446, 1993

19) M Concepcion Cerrato Oliveros, Jose Luis Perez Pavon, Carmelo Gracia Pinto, M Esther Frnandez Laespada, Bernardo Moreno Cordero, Michele Forina,”Electronic nose based on metal oxide semiconductor sensors as a fast alternative for the detection of adulteration of virgingolive oils”, Analytica Chimica Acta, Vol.459, pp.219-228, 2002

20) Noureddine El Barbri, Eduard Llobet, Nezha El Bari, Xavier Correig, Benachir Bouch-ikhi,”Electronic Nose Based on Metal Oxide Semiconductor Sensors as an Alternative Technique for the Spoilage Classification of Red Meat”, Sensors, Vol.8, pp.142-156,2008 21) Takamichi Nakamoto, Toyosaka Moriizumi, ”Odor Sensing System”,電子情報通信学会 論文誌. C-II,エレクトロニクス, II-電子素子・応用J82-C-II(4), 146-154, 1999-04-25 22) Junji Ito, Takamichi Nakamoto, Hiroshi Uematsu, ”Discrimination of halitosis substance

using QCM sensor array and a preconcentrator”, Sensors and Actuators B: Chemical, Volume 99, Issues 2?3, 1 May 2004, Pages 431-436

23) E. Schaller, J.O. Bosset, F. Escher,”Electronic noses and their application to food”, LWT - Food Science and Technology, Vol. 31, No.4, pp.305-316, 1998

24) J. M. Beeley, C. Mills, P. A. Hammond, A. Glidle, J. M. Cooper, L. wang, D. R. S.

Cumming,”All-digital interface ASIC for a QCM-based electronic nose”, Sensors and Actuators B: Chemical, Vol.103, pp.31-36, 2004

25) I. A. Koshets, Z. I. Kazantseva, Yu. M. Shirshov, S. A. Cherenok, V. I.

Kalchenko,”Calixarene films as sensitive coatings for QCM-based gas sensors”, Sensors and Actuaots B: Chemical, Vol.106, pp.177-181, 2005

26) N. El. Barbri, J. Mirhisse, R. Ionescu, N. El Bari, X. Correig, B. Bouchikhi, E. Llobet,”An electronic nose system based on a micro-machined gas sensor array to assess the freshness of sardines”, Sensors and Actuators B: Chemical, Vol.141, pp.538-543, 2009

27) Q. Ammer, S. B. Adeloju,”Polypyrrole-based dlectronic noses for environmental and in-dustrial analysis”, Sensors and Actuators B: Chemical, Vol.106, pp.541-552, 2005

28) M. S. Freund, N. S. Lewis, ”A chemically diverse conducting polymer-based ”electronic nose””, Proc. Natl. Acad. Sci., Vol.92, pp.2652-2656, 1995

29) S.H. Lim, L. Feng, J. W. Kemling, C. J. Musto, K. S. Suslick,”An optoelectronic nose for detection of toxic gases”, Nat. Chem., 1, 562-567, 2009

30) Keith J and David R. Walt, Daljeet S. Gill, and Tim C. Pearce,”Optical Multibead Arrays for Simple and Complex Odor Discrimination”, Anal. Chem, 73, pp. 2501 - 2508, 2001 31) Todd A. Dickinson, Joel White, John S. Kauer, David R. Walt,”Achemical-detecting

sys-tem based on a cross-reactive optical sensor array”, NATURE, Vol.382, 22, 1996

32) Daniel Filippini, Samuel P. S. Svensson, Ingemar Lundstrom,”Compter screen as a pro-grammable light source for visible absorption characterization of (bio)chemical assays”,

Chem. Commun., pp.240-241, 2003

33) Kenneth S. Suslick, Neal A. Rakow and Avijit Sen,”Colormetric sensor arrays for molec-ular recognition”, Tetrahedron, Vol.60, pp.11133-11138, 2004

34) T. A. T. G. van Kempen, W. J. Powers, A. L. Sutton,”Tecnical note: Fouier transform infrared (FTIR) spectroscopy as an optical nose for predicting odor sensation”, J. Anim.

Sci., vol.80, pp.1524-1527, 2002

35) Daniel Cozzolino, Heather Eunice Smythm, Mark Gishen,”Feasibility Sutudy on the Use of Visible and Near-infrared Spectroscopy Together with Chemometrics To Discriminate between Commercial White Wines of Different Varietal Origins”, Journal of Agricultural and Food Chemistry, vol.7703, pp.7703-7708, 2003

36) S. Armenta, N. M. M. Coelho, R. Roda, S. Garriues, M. de la Guardia,”Seafood freshness determination through vapour phase Fouier trans form infrared spectroscopy”, Analytica Chimica Acta, vol.580, pp.216-222, 2006

37) J. B. Bates,”Fouier Transform Infrared Spectroscopy”, Science, Vol.191, No.4222, 1976 38) T. Nakamoto, H. Ishida,”Chemical sensing in spatial/temporal domains”, Chemical

Re-views, 108, 680-704, 2008

39) H. Ishida, T. Yamanaka, N. Kushida, T. Nakamoto, T. Moriizumi,”Study of real-time visualization of gas r odor flow image using gas sensor array”, Sensors and Actuators B, 65, pp.14-16, 2000

40) H. Yamasaki, Y. Hiranaka,”Multi-dimensional intelligent sensing system using sensor ar-ray”,Sensors and Actuators A, 35, pp.1-8, 1992

41) 相本 三郎,赤路 健一,”生体分子の化学”,化学同人(2002)

42) Takahiro Arakawa, Xin Wang, Takumi Kajiro, Kumiko Miyajima, Shuhei Takeuchi, Hi-royuki Kudo, Kazuyoshi Yano, Kohji Mitsubayashi, ”A direct gaseous ethanol imaging system for analysis of alcohol metabolism from exhand breath”, Sensors and Actuators B, 186, pp. 27-33, 2013

43) T. Arakawa, K. Iitani, T. Sato, K. Toma, K. Mitsubayashi,”Ehanol vapor imaging sys-tem”sniffer camera” for evaluation of alcohol metabolism from breath and palm skin gas”, Procedia Engineering, 168, 522-528, 2016

44) K. Iitani, T. Sato, M. Naisierding, Y. Hayakawa, K. Toma, T. Arakawa, K. Mitsub-ayashi,”Fluorometric gas-imaging system (sniff-cam), using the extinction of NADH with an ADH reverse reaction, for acetaldehyde in the gas phase”, Analyst, 142, 3830-3836, 2017

45) K. M. Mayer, J. H. Hafner,”Localized surface plasmon resonance sensors”, Chem. Rev.

111, 3828-3857, 2011

46) J. M. Bingham, J. N. Anker, L. E. Kreno, R. P. Van Duyne,”Gas sensing with high-resolution localized surface plasmon resonance”, J. Am. Chem. Soc., 132,17358-17359, 2010

47) 岡本隆之,梶川浩太郎,”プラズモニクス 基礎と応用”、講談社(2010).

48) T. Koga, HT. Yoshioka, C. Liu, K. Hayashi,”Gas Visualization Based on Localized Surface Plasmon Resonance of Gold Nanoparticle Films”, Proceedings of IEEE Sensors 2015, 2015

49) 社団法人 日本化学会(編),”第5版 実験化学講座9 -物質の構造 分光 上-”,丸善株式会 社, 2005

50) Jeff W. Lichtman, Jose-Angel Conchello,”Fluorescence microscopy”,Nature Methods, Vol.2, No.2, 2005

51) 木下 一彦,御橋 廣眞(編),”螢光測定 生物科学への応用”,学会出版センター, 1983 52) 井村 久則,菊池 和也,平山 直紀,森田 耕太郎,渡會 仁,”分析化学実技シリーズ1機器

分析編1吸光・蛍光分析”,共立出版, 2011

53) M. M. Martin, L. Lindqvist,”The pH dependence of fluorescein fluorescence”,Journal of Luminescence, 10, 381-390, 1975

54) Debi Pant, H. B. Tripathi, D. D. Pant,”Time resolved fluorescence spectroscopy of quinine sulphate, quinidine and 6-methoxyquinoline: pH dependence”, Journal of Luminescence, Vol.51, pp.223-130, 1992

55) W. B. De Lauder, Ph. Wahl,”pH Dependence of the Fluorescence Dexay of Tryptophan”, Biochemistry, Vol.9, No.13, 1970

56) R. M. Clegg,”Fluorescence resonance energy transfer”, Current Opinion in Biotechnology, 6, 103-110, 1995

57) Taekjip Ha,”Single-Molecule Fluorescence Resonance Energy Transfer”,METHODS 25,pp.78-86,2001

58) Elizabeth A Jares-Erijman, Thomas M Jovin,”FRET imgaging”, Nature Biotechnology, Vol.21, No.11, 2003

59) Paul R, Selvin, ”Fluorescence Resonance Energy Transfer”, Methods in Enzymology, Vol.246, pp.300-334, 1995

60) Pengguang Wu, Ludwig Brand, ”Resonance Energy Transfer: Methods and Applica-tions”,Analytical Biochemistry, vol.218, pp.1-13, 1994

61) Steven S. Vogel, Christopher Thaler, Srinagesh V. Koushik,”Fanciful FRET”, Science’s STKE, Vol.2006, pp.331, 2006

62) Yusuke Niino, Kohji Hotta, Kotaro Oka,”Simultaneous Live Cell Imaging Using Dual FRET Sensors with a Single Excitation Light”, PLoS, Vol.4, No.6, 2009

63) Paul R. Selvin,”The renaissance of fluorescence resonance energy transfer”, Nature struc-tual biology, Vol.7, No.9, 2000

64) Yasushi Hiraoka, Takeshi Shimi, Tokuko Haraguchi,”Multispectral Imaging Fluorescence Microscopy for Living Cells”, Cell Structure and Function, Vol.27, pp.367-374, 2002 65) Rajesh Babu Sekar, Ammasi Periasamy,”Fluorescence resonance energy transfer (FRET)

microscopy imgaging of live cell protein localizations”, The Journal of Cell Biology, Vol.160, No.5, 2003

66) Kousuke Okada, Yasushi Maeda,”Thermochromic Microgels and Core-Shell Microgels Based on Fluorescence Resonance Energy Transfer”, Journal of Applied Polymer Science, Vol.130, No.15, pp.201-205, 2013

67) Fanjie Meng, Frederick Sachs,”Orientation-based FRET sensor for real-time imaging of cellular forces”, Journal of Cell Science, Vol.125, pp.743-750, 2011

68) Sarah F. Martin, Michael H. Tatham, Ronald T. Hay, Ifor D. W. Samuel,”Quantitative analysis of multi-protein interactions using FRET: Application to the SUMO pathway”, Protein Science, Vol.17, pp.777-784, 2008

69) Marye Anne Fox,”Photoinduced Electron Transfer”, Photochemistry and Photobiology, Vol.52, No.3, pp.617-627, 1990

70) Marye Anne Fox,”Photoinduced Electron Transfer in Organic Systems: Control of Back Electron Transfer”, Advances in Photochemistry, Vol.13, pp.237-327,1986

71) Masaki TORIMURA, Shinya KURATA, Kazutaka YAMADA, Toyokazu YOKOMAKU, Yoichi KAMAGATA, Takahiro KANAGAWA, Ryuichiro KURANE ”Fluorescence-Quenching Phenomenon by Photoinduced Electron Transfer between a Fluorescent Dye and a Nucleotide Base”, ANALYTICAL SCIENCES, JANUARY 2001, VOL17, pp. 155-160.

72) Saliya A. de Silva, Andres Zavaleta, David E. Baron, Osama Allam, Edward V. Is-dor, Norie Kashimura, James M. Percarpio,”A Fluorescent Photoinduced Electron Trans-fer Sensor for Cations with an Off-On-OffProton Switch”, Tetrahedron Letters, Vol.38, pp.2237-2240, 1997

73) Thorfinnur Gunnlaugsson, Anthony P. Davis, Mark Glynn,”Fluorescent photoinduced electron transfer (PET) sensing of anions using charge neutral chemosensors”, Chemi-cal Communications, Vol.24, pp.2556-2557, 2001

74) 社団法人 日本化学会(編),”第5版 実験化学講座20-1分析化学”,丸善株式会社, 2007 75) J. Knoth, H. Schwenke,”A New Totally Reflecting X-Ray Fluorescence Spectrometer with

Detection Limits below 10−11g”, Fresenius Z. Anal. Chem., Vol.301, pp.7-9, 1980

76) J. R. Mannekutla, B. G. Mulimani, S. R. Inamdar,”Solvent effect on absorption and flu-orescence spectra of coumarin laser dyes: Evaluation of ground and excited state dipole moments”, Spectrochimica Acta Part A, Vol.69, pp.419-426, 2008

77) Phillip Greenspan, Stanley D. Fowler,”Spectrofluorometric studies of the lipid probe, nile red”, Journal of Lipid Research, Vol.26, pp.781-789, 1985

78) Dan L. Sackett, J. Wolff,”Nile Red As a Polarity-Sensiteive Fluorescent Probe of Hy-drophobic Protein Surfaces”, Analytical Biochemistry, Vol.167, pp.228-234, 1987

79) G. R. Fleming, A. W. E. Knight, J. M. Morris, R. J. Morrison, G. W. Robinson,”Picosecond Fluorescence Studies of Xanthene Dyes”, Journal of the American Chemical Society, Vol.99, No.13, pp.4306-4311, 1977

80) Douglas Magde, Gail E. Rojas, Paul G. Seybold,”Solvent Dependence of the Fluorescence Lifetimes of Xanthene Dyes”, Photochemistry and Photobiology, Vol.70, No.5, pp.737-744, 1999

81) Luke D. Lavis, Ronald T. Raines,”Bright Ideas for Chemical Biology,”, ACS Chemical Biology, Vol.4, No.3, pp.142-155, 2008

82) Roy N. Dsouza, Uwe Pischel, Werner M. Nau,”Fluorescent Dyes and Their Supramolec-ular Host/Guest Complexes with Macrocycles in Aqueous Solution”, Chemical Reviews, Vol.111, pp.7941-7980, 2011

83) Masatoki Katayama, Yashio Mukai, Hirokazu Taniguchi,”Fluorometric Determination of Vanillin with 4,5-Dimethyl-o-phenylenediamine”, Analytical Sciences, Vol.3, 1987

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