Biomedical Engineering Reference
In-Depth Information
65. K. Svoboda, R. Yasuda, Principles of two-photon excitation microscopy and its applications
to neuroscience. Neuron 50 (6), 823-839 (2006)
66. B.G. Wang, K. Konig, K.J. Halbhuber, Two-photon microscopy of deep intravital tissues and
its merits in clinical research. J. Microsc. 238 (1), 1-20 (2010)
67. T. F orster, Energy transport and fluorescence [in German]. Naturwissenschafien 6 , 166-175
(1946)
68. T. F orster, Zwischenmolekulare energiewanderung und fluoreszenz. Annalen Der Physik
437 (1-2), 55-75 (1948)
69. T. F orster, Delocalized excitation and excitation transfer. In In Modern Quantum Chemistry ,
O. Sinanoglu, editor, pp. 93-137 (Academic Press Inc., 1965)
70. R.M. Clegg, Fluorescence resonance energy transfer. In Fluorescence Imaging Spectroscopy
and Microscopy , X.F. Wang, B. Herman, editors, pp. 179-251 (Wiley, New York, 1996)
71. R.M. Clegg, The history of FRET: From conception through the labors of birth. In Reviews in
Fluorescence , C.D. Geddes, J.R. Lakowicz, editors, pp. 1-45 (Springer, New York, 2006)
72. E.A. Jares-Erijman, T.M. Jovin, FRET imaging. Nat. Biotechnol. 21 (11), 1387-1395 (2003)
73. R.B. Sekar, A. Periasamy, Fluorescence resonance energy transfer (FRET) microscopy
imaging of live cell protein localizations. J. Cell Biol. 160 (5), 629-633 (2003)
74. A. Periasamy, R.N. Day, editors, Molecular Imaging: FRET Microscopy and Spectroscopy
(Oxford University Press, New York, 2005)
75. S.S. Vogel, C. Thaler, S.V. Koushik, Fanciful FRET. Sci. STKE 2006 (331), re2 (2006)
76. D.W. Piston, G.J. Kremers, Fluorescent protein FRET: The good, the bad and the ugly. Trends
Biochem. Sci. 32 (9), 407-414 (2007)
77. A.K. Kenworthy, Imaging protein-protein interactions using fluorescence resonance energy
transfer microscopy. Methods 24 (3), 289-296 (2001)
78. R.N. Day, T.C. Voss, J.F. Enwright, C.F. Booker, A. Periasamy, F. Schaufele, Imaging the
localized protein interactions between pit-1 and the CCAAT/enhancer binding protein alpha
in the living pituitary cell nucleus. Mol. Endocrinol. 17 (3), 333-345 (2003)
79. I.A. Demarco, A. Periasamy, C.F. Booker, R.N. Day, Monitoring dynamic protein interactions
with photoquenching FRET. Nat. Methods 3 (7), 519-524 (2006)
80. M.D. Allen, L.M. DiPilato, M. Rahdar, Y.R. Ren, C. Chong, J.O. Liu, J. Zhang, Reading
dynamic kinase activity in living cells for high-throughput screening. ACS Chem. Biol. 1 (6),
371-376 (2006)
81. X. Gao, J. Zhang, Spatiotemporal analysis of differential akt regulation in plasma membrane
microdomains. Mol. Biol. Cell 19 (10), 4366-4373 (2008)
82. J.L. Vinkenborg, T.J. Nicolson, E.A. Bellomo, M.S. Koay, G.A. Rutter, M. Merkx, Genetically
encoded FRET sensors to monitor intracellular Zn2+ homeostasis. Nat. Methods 6 (10),
737-740 (2009)
83. L. Tron, J. Szollosi, S. Damjanovich, S.H. Helliwell, D.J. Arndt-Jovin, T.M. Jovin, Flow cyto-
metric measurement of fluorescence resonance energy transfer on cell surfaces. quantitative
evaluation of the transfer efficiency on a cell-by-cell basis. Biophys. J. 45 (5), 939-946 (1984)
84. L. Matyus, Fluorescence resonance energy transfer measurements on cell surfaces. A
spectroscopic tool for determining protein interactions. J. Photochem. Photobiol. B 12 (4),
323-337 (1992)
85. Z. Kam, T. Volberg, B. Geiger, Mapping of adherens junction components using microscopic
resonance energy transfer imaging. J. Cell Sci. 108 (Pt 3) (Pt 3), 1051-1062 (1995)
86. D.C. Youvan, C.M. Silva, E.J. Bylina, W.J. Coleman, M.R. Dilworth, M.M. Yang, Calibration
of fluorescence resonance energy transfer in microscopy using genetically engineered GFP
derivatives on nickel chelating beads. Biotechnol. Et Alia(3), 1-18 (1997)
87. G.W. Gordon, G. Berry, X.H. Liang, B. Levine, B. Herman, Quantitative fluorescence
resonance energy transfer measurements using fluorescence microscopy. Biophys. J. 74 (5),
2702-2713 (1998)
88. A. Sorkin, M. McClure, F. Huang, R. Carter, Interaction of EGF receptor and grb2 in living
cells visualized by fluorescence resonance energy transfer (FRET) microscopy. Curr. Biol.
10 (21), 1395-1398 (2000)
Search WWH ::




Custom Search