Source: http://www.google.ca/patents/US8111400
Timestamp: 2018-01-17 07:40:08
Document Index: 627169761

Matched Legal Cases: ['art4', 'art4', 'Application No. 02808314', 'Application No. 02808314', 'Application No. 02808314', 'Application No. 2004', 'Application No. 2004', 'Application No. 2', 'Application No. 2004']

Patent US8111400 - Surface plasmon resonance sensor - Google Patents
An SPR sensor comprising a thin conducting layer comprising at least one conductive element formed on a surface of a transparent substrate, a light source that illuminates an interface between the conducting layer and the substrate, a photosensitive surface that generates signals from light reflected...http://www.google.ca/patents/US8111400?utm_source=gb-gplus-sharePatent US8111400 - Surface plasmon resonance sensor
Publication number US8111400 B2
Application number US 13/181,547
Also published as CA2511934A1, CA2511934C, DE60232689D1, EP1581800A1, EP1581800B1, US7443507, US7586616, US7999942, US8363223, US8743369, US20060072113, US20080198384, US20090296095, US20110267622, US20120113428, US20130196448, US20130330838, WO2004059301A1
Publication number 13181547, 181547, US 8111400 B2, US 8111400B2, US-B2-8111400, US8111400 B2, US8111400B2
Patent Citations (63), Non-Patent Citations (48), Referenced by (6), Classifications (8), Legal Events (1)
US 8111400 B2
1 "An Introduction to SPR-Surface Plasmon Resonance", 2 P., 2002. http://www.uksaf.org/tech/spr.html.
2 "An Introduction to SPR—Surface Plasmon Resonance", 2 P., 2002. http://www.uksaf.org/tech/spr.html.
3 "BlAcore Surface Plasmon Resonance (SPR)", 3 P., 2002. http://www.astbury.leeds.ac.uk/Facil/spr.htm.
4 "Refractive Index Sensing With Surface Plasmon Resonance: The Kretschmann Geometry", Spreeta Technology Overview, 2 P., 2001.
5 Berger et al. "Surface Plasmon Propagation Near an Index Step", MESA Institute, Applied Optics Group, University of Twente, p. 1-10, 2002, http:/lps.ens.fr/~berger/articles/art4/OptComm/htm.
6 Berger et al. "Surface Plasmon Propagation Near an Index Step", MESA Institute, Applied Optics Group, University of Twente, p. 1-10, 2002, http:/lps.ens.fr/˜berger/articles/art4/OptComm/htm.
7 Berger et al. "Surface Plasmon Resonance Multisensing", Analytical Chemistry, 70(4): 703-706, 1998.
8 Communication Pursuant to Article 96(2) EPC Dated Nov. 2, 2007 From the European Patent Office Re.: Application No. 02808314.5.
9 Communication Pursuant to Article 96(2) EPC Dated Nov. 30, 2006 From the European Patent Office Re.: Application No. 02808314.5.
10 Communication Relating to the Result of the Partial International Search Report Dated Oct. 23, 2003 From the International Searching Authority Re.: Application No. PCT/IL02/01037.
11 Grigorenko et al. "Dark-Field Surface Plasmon Resonance Microscopy", Optics Communications, 174: 151-155, 2000.
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13 Herminghaus et al. "Phase Contrast Surface Mode Resonance Microscopy", Quantum Electronics, 112: 16-20, 1994.
14 Homola et al. "Surface Plasmon Resonance Sensors: Review", Sensors and Actuators, B 54: 3-15, 1999.
15 International Preliminary Examination Report Dated Mar. 24, 2005 From the European Patent Office Re.: Application No. PCT/IL02/01037.
16 International Search Report Dated Jan. 14, 2004 From the International Searching Authority Re.: Application No. 02808314.5.
17 Jordan et al. "Surface Plasmon Resonance Imaging Measurements of Electrostatic Biopolymer Adsorption Onto Chemically Modified Gold Surfaces", Analytical Chemistry, 69(7): 1449-1456, 1997.
18 Kabashin et al. "Interferometer Based on a Surface-Plasmon Resonance for Sensor Applications", Quantum Electronics, 27(7): 653-654, 1997.
19 Kabashin et al. "Phase-Polarisation Contrast for Surface Plasmon Resonance Biosensors", Biosensors & Bioelectronics, 13: 1263-1269, 1998.
20 Kabashin et al. "Surface Plasmon Resonance Bio-and Chemical-Sensors With Phase-Polarisation Contrast", Sensors and Actuators, B 54: 51-56, 1999.
21 Kabashin et al. "Surface Plasmon Resonance Interferometer for Bio-and Chemical-Sensors", Optics Comminications, 150: 5-8, 1998.
22 Kochergin et al. "Phase Properties of a Surface-Plasmon Resonance From the Viewpoint of Sensor Applications", Quantum Electronics, vol. 28(5): 444-448, 1998.
23 Kochergin et al. "Visualisation of the Angular Dependence of the Reflected-Radiation Phase Under Conditions of a Surface-Plasmon Resonance and its Sensor Applications", Quantum Electronics, 28(9): 835-839, 1998.
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25 Löfås et al. "Bioanalysis With Surface Plasmon Resonance", Sensors and Actuators B Chemical, 5(1/4): 79-84, 1991. p. 79, col. 2, Par.2-p. 81, col. 1, Par.2.
26 Marszalec "Modelling and Simulation of an Angular-Scan LED Array-Based Range Imaging Sensor", Proceedings of the 1993 IEEE/RSJ International Conference on Intelligent Robots and Systems, Yokohama, JP, p. 1837-1844, 1993.
27 Marszalec et al. "A LED-Array-Based Range-Imaging Sensor for Fast Three-Dimensional Shape Measurments", Sensors and Actuators A, 46-47: 501-505, 1995.
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29 Nikitin et al. "Surface Plasmon Resonance Interferometry for Biological and Chemical Sensing", Sensors and Actuators, B 54: 43-50, 1999.
30 Nikitin et al. "Surface Plasmon Resonance Interferometry for Micro-Array Biosensing", Eurosensors XIII, The 13th European Conference on Solid-State Transducers, The Hague, NL, Optical Techniques in (Bio)Chemical Systems, 5A4: 235-238, 1999.
31 Notcovich et al. "Surface Plasmon Resonance Phase Imaging", Applied Physics Letters, 76(13): 1665-1667, 2000.
32 Notice of Allowance Dated Apr. 18, 2011 From the US Patent and Trademark Office Re.: U.S. Appl. No. 12/535,707.
33 Notice of Allowance Dated Jan. 29, 2008 From the US Patent and Trademark Office Re.: U.S. Appl. No. 10/540,940.
34 Notice of Allowance Dated Jun. 4, 2008 From the US Patent and Trademark Office Re.: U.S. Appl. No. 10/540,940.
35 Notice of Allowance Dated May 1, 2009 From the US Patent and Trademark Office Re.: U.S. Appl. No. 12/149,158.
36 Notification of Reasons of Rejection Dated Jan. 29, 2009 From the Japanese Patent Office Re.: Application No. 2004-563535 and Its Translation Into English.
37 Official Action Dated Aug. 13, 2010 From the US Patent and Trademark Office Re.: U.S. Appl. No. 12/535,707.
38 Official Action Dated Jun. 15, 2007 From the US Patent and Trademark Office Re.: U.S. Appl. No. 10/540,940.
39 Official Action Dated Nov. 24, 2010 From the US Patent and Trademark Office Re.: U.S. Appl. No. 12/535,707.
40 Official Action Dated Nov. 30, 2007 From the Japanese Patent Office Re.: Application No. 2004-563535 and Its Translation Into English.
41 Official Action Dated Sep. 17, 2008 From the US Patent and Trademark Office Re.: U.S. Appl. No. 12/149,158.
42 Requisition by the Examiner Dated Oct. 5, 2009 From the Canadian Intellectual Property Office Re.: Application No. 2,511,934.
43 Response Dated Feb. 24, 2011 to Official Action of Nov. 24, 2010 From the US Patent and Trademark Office Re.: U.S. Appl. No. 12/535,707.
44 Response Dated Sep. 7, 2010 to Official Action of Aug. 13, 2010 From the US Patent and Trademark Office Re.: U.S. Appl. No. 12/535,707.
45 Teng et al. "Simple Reflection Technique for Measuring the Electro-Optic Coefficient of Poled Polymers", Applied Physics Letters, 56 (18): 1734-1736, 1990.
46 Totzeck et al. "Phase-Shifting Polarization Interferometry for Microstructure Linewidth Measurement", Optic Letters, 24(5): 294-296, 1999.
47 Translation of Notice of Reason(s) for Rejection Dated Nov. 30, 2007 From the Japanese Patent Office Re.: Application No. 2004-563535.
48 Written Opinion Dated Nov. 23, 2004 From the International Searching Authority Re.: Application No. PCT/IL02/01037.
US8368897 * 21 Aug 2009 5 Feb 2013 Ciencia, Inc. Versatile surface plasmon resonance analyzer with an integral surface plasmon resonance enhanced fluorescence mode
US8526001 * 28 Jan 2013 3 Sep 2013 Ciencia, Inc. Versatile surface plasmon resonance analyzer with an integral surface plasmon resonance enhanced fluorescence mode
International Classification G01N21/55, G01N21/00, G01N21/05