-
1
-
-
33749875541
-
-
22, pp. 253-259, 1997.
-
G.L. Coté, "Noninvasive optical glucose sensing-An overview," J. Clin. Eng., vol. 22, pp. 253-259, 1997.
-
"Noninvasive Optical Glucose Sensing-An Overview," J. Clin. Eng., Vol.
-
-
Coté, G.L.1
-
2
-
-
0027389312
-
-
271, pp. 155-164, 1993.
-
J.R. Lakowicz and B. Maliwal, "Optical sensing of glucose using phase-modulation fluorometry," Analytica Chimica Acta, vol. 271, pp. 155-164, 1993.
-
And B. Maliwal, "Optical Sensing of Glucose Using Phase-modulation Fluorometry," Analytica Chimica Acta, Vol.
-
-
Lakowicz, J.R.1
-
3
-
-
84966172549
-
-
2, pp. 885-890, 1984.
-
S. MansouriandJ.S.Schultz, "A miniature optical glucose sensor based on affinity binding," Bio-Technology, vol. 2, pp. 885-890, 1984.
-
J.S.Schultz, "A Miniature Optical Glucose Sensor Based on Affinity Binding," Bio-Technology, Vol.
-
-
Mansouriand, S.1
-
4
-
-
0027217926
-
-
280, pp. 21-30, 1993.
-
D.L. Meadows and J. S. Schultz, "Design, manufacture and characterization of an optical-fiber glucose affinity sensor-based on an homogeneous fluorescence energy-transfer assay system," Analytica Chimica Acta. vol. 280, pp. 21-30, 1993.
-
And J. S. Schultz, "Design, Manufacture and Characterization of An Optical-fiber Glucose Affinity Sensor-based on An Homogeneous Fluorescence Energy-transfer Assay System," Analytica Chimica Acta. Vol.
-
-
Meadows, D.L.1
-
5
-
-
0343586524
-
-
2-D crystalline structure," Biosensors Bioetectron., vol. 11, pp. 317-325, 1996.
-
A. Neubauer, D. Pum, U.B. Sleytr, I. Klimant, and O. S. Wolfbeis, "Fibre-optic glucose biosensor using enzyme membranes with 2-D crystalline structure," Biosensors Bioetectron., vol. 11, pp. 317-325, 1996.
-
D. Pum, U.B. Sleytr, I. Klimant, and O. S. Wolfbeis, "Fibre-optic Glucose Biosensor Using Enzyme Membranes with
-
-
Neubauer, A.1
-
6
-
-
0030125571
-
-
68, pp. 1408-1413, 1996.
-
Z. Rosenzweig and R. Kopelman, "Analytical properties and sensor size effects of a micrometer-sized optical fiber glucose biosensor," Analytical Chemistry, vol. 68, pp. 1408-1413, 1996.
-
And R. Kopelman, "Analytical Properties and Sensor Size Effects of A Micrometer-sized Optical Fiber Glucose Biosensor," Analytical Chemistry, Vol.
-
-
Rosenzweig, Z.1
-
7
-
-
0025017184
-
-
5, pp. 137-148, 1990.
-
B.P. H. Schaffar and O. S. Wolfbeis, "A fast responding fiber optic glucose biosensor based on an oxygen optrode," Biosensors Bioelectron., vol. 5, pp. 137-148, 1990.
-
Schaffar and O. S. Wolfbeis, "A Fast Responding Fiber Optic Glucose Biosensor Based on An Oxygen Optrode," Biosensors Bioelectron., Vol.
-
-
-
8
-
-
0031373588
-
-
45, pp. 93-99, 1997.
-
L. Tolosa, H. Malak, G. Raob, and J.R. Lakowicz, "Optical assay for glucose based on the luminescence decay time of the long wavelength dye Cy5 (TM)," Sensors and Actuators B-Chemical, vol. 45, pp. 93-99, 1997.
-
H. Malak, G. Raob, and J.R. Lakowicz, "Optical Assay for Glucose Based on the Luminescence Decay Time of the Long Wavelength Dye Cy5 (TM)," Sensors and Actuators B-Chemical, Vol.
-
-
Tolosa, L.1
-
9
-
-
0031571099
-
-
250, pp. 102-108, 1997.
-
L. Tolosa, H. Szmacinski, G. Rao, and J.R. Lakowicz, "Lifetime-based sensing of glucose using energy transfer with a long lifetime donor," Analytical Biochem.. vol. 250, pp. 102-108, 1997.
-
H. Szmacinski, G. Rao, and J.R. Lakowicz, "Lifetime-based Sensing of Glucose Using Energy Transfer with A Long Lifetime Donor," Analytical Biochem.. Vol.
-
-
Tolosa, L.1
-
10
-
-
0024260071
-
-
4, pp. 15-26, 1989.
-
W. Trettnak, M.J. P. Leiner, and O. S. Wolfbeis, "Fibre-optic glucose sensor with a pH optrode as the transducer," Biosensors, vol. 4, pp. 15-26, 1989.
-
M.J. P. Leiner, and O. S. Wolfbeis, "Fibre-optic Glucose Sensor with A PH Optrode As the Transducer," Biosensors, Vol.
-
-
Trettnak, W.1
-
12
-
-
0029347598
-
-
29, pp. 917-928, 1995.
-
Y.B. Aldenhoff, "Studies on a new strategy for surface modification of polymeric materials,"/ Biomed. Mater. Res., vol. 29, pp. 917-928, 1995.
-
"Studies on A New Strategy for Surface Modification of Polymeric Materials,"/ Biomed. Mater. Res., Vol.
-
-
Aldenhoff, Y.B.1
-
13
-
-
0022010369
-
-
28, pp. 146-150, 1985.
-
M. Goosen, G. O'Shea, H. Gharapetian, S. Chou, and A. Sun, "Optimization of microencapsulation parameters: Semipermeable microcapsules as a bioartificial pancréas," Biotechnol. Bioeng., vol. 28, pp. 146-150, 1985.
-
G. O'Shea, H. Gharapetian, S. Chou, and A. Sun, "Optimization of Microencapsulation Parameters: Semipermeable Microcapsules As A Bioartificial Pancréas," Biotechnol. Bioeng., Vol.
-
-
Goosen, M.1
-
14
-
-
0031239866
-
-
13, pp. 569-576, 1997.
-
D. Seifert and J. Phillips, "Porous alginate-poly(ethylene glycol) entrapment system for the cultivation of mammalian cells," Biotechnol. Progress, vol. 13, pp. 569-576, 1997.
-
And J. Phillips, "Porous Alginate-poly(ethylene Glycol) Entrapment System for the Cultivation of Mammalian Cells," Biotechnol. Progress, Vol.
-
-
Seifert, D.1
-
15
-
-
0000407406
-
-
35, pp. 145-150, 1988.
-
D. Meadows and J.S. Schultz, "Fiber-optic biosensors based on fluorescence energy-transfer," Talanta, vol. 35, pp. 145-150, 1988.
-
And J.S. Schultz, "Fiber-optic Biosensors Based on Fluorescence Energy-transfer," Talanta, Vol.
-
-
Meadows, D.1
-
16
-
-
0030918204
-
-
345, pp. 203-212, 1997.
-
R. Ballerstadt and J.S. Schultz, "Competitive-binding assay method based on fluorescence quenching of ligands held in close proximity by a multivalent receptor," Analytica ChimicaActa, vol. 345, pp. 203-212, 1997.
-
And J.S. Schultz, "Competitive-binding Assay Method Based on Fluorescence Quenching of Ligands Held in Close Proximity by A Multivalent Receptor," Analytica ChimicaActa, Vol.
-
-
Ballerstadt, R.1
-
17
-
-
33749900258
-
-
20th Annu. Int. Conf. IEEE-EMBS, Hong Kong, 1998.
-
R.J. Russell, M. V. Pishko, C. C. Gefrides, and G. L. Coté, "A fluorescent glucose assay using poly-L-lysine and calcium alginate microencapsulated TRITC-succinyl-concanavalin A and FITC-dextran," presented at the 20th Annu. Int. Conf. IEEE-EMBS, Hong Kong, 1998.
-
M. V. Pishko, C. C. Gefrides, and G. L. Coté, "A Fluorescent Glucose Assay Using Poly-L-lysine and Calcium Alginate Microencapsulated TRITC-succinyl-concanavalin A and FITC-dextran," Presented at the
-
-
Russell, R.J.1
-
18
-
-
0032799808
-
-
71, no. 15, pp. 3126-3132, 1999.
-
R.J. Russell, C. C. Gefrides, M. J. McShane, G. L. Coté, and M. V. Pishko, "A fluorescence-based glucose biosensor using tetramethylrhodamine concanavalin A and fluorescein isothiocyanate dextran encapsulated in a polly(ethylene glycol) hydrogel," Analytical Chem., vol. 71, no. 15, pp. 3126-3132, 1999.
-
C. C. Gefrides, M. J. McShane, G. L. Coté, and M. V. Pishko, "A Fluorescence-based Glucose Biosensor Using Tetramethylrhodamine Concanavalin A and Fluorescein Isothiocyanate Dextran Encapsulated in A Polly(ethylene Glycol) Hydrogel," Analytical Chem., Vol.
-
-
Russell, R.J.1
-
20
-
-
0024790311
-
-
36, pp. 1146-1154, 1989.
-
M.J. C. van Gemert, S. L. Jacques, H. Sterenborg, and W. M. Star, "Skin optics," IEEE Trans. Biomed. Eng., vol. 36, pp. 1146-1154, 1989.
-
Van Gemert, S. L. Jacques, H. Sterenborg, and W. M. Star, "Skin Optics," IEEE Trans. Biomed. Eng., Vol.
-
-
-
21
-
-
0025551790
-
-
26, pp. 2166-2185, 1990.
-
W. Cheong, S.A. Prahl, and A. J. Welch, "A review of the optical properties of biological tissue," IEEE J. Quantum Electron., vol. 26, pp. 2166-2185, 1990.
-
S.A. Prahl, and A. J. Welch, "A Review of the Optical Properties of Biological Tissue," IEEE J. Quantum Electron., Vol.
-
-
Cheong, W.1
-
22
-
-
0000633923
-
-
35, pp. 1151-1160, 1996.
-
A. Kienle, L. Lüge, I.A. Vitkin, M. S. Patterson, B. C. Wilson, R. Hibst, and R. Steiner, "Why do veins appear blue? A new look at an old question," Appl. Optics, vol. 35, pp. 1151-1160, 1996.
-
L. Lüge, I.A. Vitkin, M. S. Patterson, B. C. Wilson, R. Hibst, and R. Steiner, "Why Do Veins Appear Blue? A New Look at An Old Question," Appl. Optics, Vol.
-
-
Kienle, A.1
-
23
-
-
84975754280
-
-
1989, pp. 102-111.
-
S.A. Prahl, M. Keijzer, S. L. Jacques, and A. J. Welch, "A Monte Carlo model of light propagation in tissue," in SPIE Inst. Series, vol. IS-5, 1989, pp. 102-111.
-
M. Keijzer, S. L. Jacques, and A. J. Welch, "A Monte Carlo Model of Light Propagation in Tissue," in SPIE Inst. Series, Vol. IS-5
-
-
Prahl, S.A.1
-
25
-
-
0027643373
-
-
10, pp. 1746-1752, 1993.
-
L.H. Wang and S. L. Jacques, "Hybrid model of Monte-Carlo simulation and diffusion-theory for light reflectance by turbid media," J. Opt. Soc. Amer. A-Optics Image Sei. Vision, vol. 10, pp. 1746-1752, 1993.
-
And S. L. Jacques, "Hybrid Model of Monte-Carlo Simulation and Diffusion-theory for Light Reflectance by Turbid Media," J. Opt. Soc. Amer. A-Optics Image Sei. Vision, Vol.
-
-
Wang, L.H.1
-
26
-
-
0029045693
-
-
47, pp. 131-146, 1995.
-
L.H. Wang, S. L. Jacques, and L. Q. Zheng, "Mcml-Monte-Carlo modeling of light transport in multilayered tissues," Comput. Meth. Programs Biomed., vol. 47, pp. 131-146, 1995.
-
S. L. Jacques, and L. Q. Zheng, "Mcml-Monte-Carlo Modeling of Light Transport in Multilayered Tissues," Comput. Meth. Programs Biomed., Vol.
-
-
Wang, L.H.1
-
27
-
-
0027933725
-
-
21, pp. 1081-1083, 1994.
-
L.H. Wang and S. L. Jacques, "Optimized radial and angular positions in Monte-Carlo modeling," Med. Phys., vol. 21, pp. 1081-1083, 1994.
-
And S. L. Jacques, "Optimized Radial and Angular Positions in Monte-Carlo Modeling," Med. Phys., Vol.
-
-
Wang, L.H.1
-
28
-
-
0029239547
-
-
42, pp. 121-132, 1995.
-
S. Warren, K. Pope, Y. Yazdi, A.J. Welch, S. Thomsen, A. L. Johnston, M. J. Davis, and R. Richardskortum, "Combined ultrasound and fluorescence spectroscopy for physicochemical imaging of atherosclerosis," IEEE Trans. Biomed. Eng., vol. 42, pp. 121-132, 1995.
-
K. Pope, Y. Yazdi, A.J. Welch, S. Thomsen, A. L. Johnston, M. J. Davis, and R. Richardskortum, "Combined Ultrasound and Fluorescence Spectroscopy for Physicochemical Imaging of Atherosclerosis," IEEE Trans. Biomed. Eng., Vol.
-
-
Warren, S.1
-
29
-
-
67049119181
-
-
21, pp. 166-178, 1997.
-
A.J. Welch, C. Gardner, R. RichardsKortum, E. Chan, G. Criswell, J. Pfefer, and S. Warren, "Propagation of fluorescent light," Lasers Surg Med, vol. 21, pp. 166-178, 1997.
-
C. Gardner, R. RichardsKortum, E. Chan, G. Criswell, J. Pfefer, and S. Warren, "Propagation of Fluorescent Light," Lasers Surg Med, Vol.
-
-
Welch, A.J.1
-
30
-
-
0030913067
-
-
38, pp. 234-240, 1997.
-
H.S. Zeng, C. MacAulay, D. I. McLean, and B. Palcic, "Reconstruction of in vivo skin autofluorescence spectrum from microscopic properties by Monte Carlo simulation," J. Photochem. Photobiol. B-Biol, vol. 38, pp. 234-240, 1997.
-
C. MacAulay, D. I. McLean, and B. Palcic, "Reconstruction of in Vivo Skin Autofluorescence Spectrum from Microscopic Properties by Monte Carlo Simulation," J. Photochem. Photobiol. B-Biol, Vol.
-
-
Zeng, H.S.1
-
31
-
-
0042930748
-
-
36, pp. 6513-6519, 1997.
-
R.J. Crilly, W. F Cheong, B. Wilson, and J. R. Spears, "Forward-adjoint fluorescence model: Monte Carlo integration and experimental validation," A/J/J/ Optics, vol. 36, pp. 6513-6519, 1997.
-
W. F Cheong, B. Wilson, and J. R. Spears, "Forward-adjoint Fluorescence Model: Monte Carlo Integration and Experimental Validation," A/J/J/ Optics, Vol.
-
-
Crilly, R.J.1
-
32
-
-
0029319490
-
-
61, pp. 639-645, 1995.
-
H.S. Zeng, C. Macaulay, D. I. McLean, and B. Palcic, "Spectroscopic and microscopic characteristics of human skin autofluorescence emission," Photochem Photobiol, vol. 61, pp. 639-645, 1995.
-
C. Macaulay, D. I. McLean, and B. Palcic, "Spectroscopic and Microscopic Characteristics of Human Skin Autofluorescence Emission," Photochem Photobiol, Vol.
-
-
Zeng, H.S.1
-
35
-
-
0031282174
-
-
54, pp. 141-150, 1997.
-
L.H. Wang, S. L. Jacques, and L. Q. Zheng, "CONV -Convolution for responses to a finite diameter photon beam incident on multi-layered tissues," Comput. Meth. Programs Biomed., vol. 54, pp. 141-150, 1997.
-
-
-
Wang, L.H.1
Jacques, S.L.2
Zheng, L.Q.3
Tissues, C.4
Biomed, C.M.P.5
-
36
-
-
0032121245
-
-
52, pp. 943-951, 1998.
-
E.V. Trujillo, D. R. Sandison, U. Utzinger, N. Ramanujam, M. F Mitchell, and R. Richards-Kortum, "Method to determine tissue fluorescence efficiency in vivo and predict signal-to-noise ratio for spectrometers," Appl. Spectroscopy, vol. 52, pp. 943-951, 1998.
-
D. R. Sandison, U. Utzinger, N. Ramanujam, M. F Mitchell, and R. Richards-Kortum, "Method to Determine Tissue Fluorescence Efficiency in Vivo and Predict Signal-to-noise Ratio for Spectrometers," Appl. Spectroscopy, Vol.
-
-
Trujillo, E.V.1
-
37
-
-
0014573811
-
-
133, p. 263, 1969.
-
R.F. Chen, "Fluorescent protein-dye conjugates," Arch. Biochem. Biophys., vol. 133, p. 263, 1969.
-
"Fluorescent Protein-dye Conjugates," Arch. Biochem. Biophys., Vol.
-
-
Chen, R.F.1
|