Bibliografische Daten

Dokument US000010066997B2 (Seiten: 28)

Bibliografische Daten Dokument US000010066997B2 (Seiten: 28)
INID Kriterium Feld Inhalt
54 Titel TI [EN] Method and device for generating multispectral or hyperspectral light, for hyperspectral imaging and/or for distance measurement and/or 2D or 3D profile measurement of an object by means of spectrometry
71/73 Anmelder/Inhaber PA UNIV STUTTGART, DE
72 Erfinder IN BOETTCHER TOBIAS, DE ; GRONLE MARC, DE ; KÖRNER KLAUS, DE ; LYDA WOLFRAM, DE ; OSTEN WOLFGANG, DE
22/96 Anmeldedatum AD 17.02.2015
21 Anmeldenummer AN 201515120373
Anmeldeland AC US
Veröffentlichungsdatum PUB 04.09.2018
33
31
32
Priorität PRC
PRN
PRD
DE
102014002514
21.02.2014
33
31
32
PRC
PRN
PRD
EP
2015000344
17.02.2015
51 IPC-Hauptklasse ICM G01N 21/25 (2006.01)
51 IPC-Nebenklasse ICS G01B 11/14 (2006.01)
G01B 11/24 (2006.01)
G01B 11/25 (2006.01)
G01J 3/02 (2006.01)
G01J 3/10 (2006.01)
G01J 3/26 (2006.01)
G01J 3/28 (2006.01)
G01J 3/433 (2006.01)
IPC-Zusatzklasse ICA
IPC-Indexklasse ICI
Gemeinsame Patentklassifikation CPC G01B 11/14
G01B 11/2441
G01B 11/2509
G01B 11/2536
G01J 2003/2826
G01J 3/0229
G01J 3/10
G01J 3/26
G01J 3/2823
G01J 3/4338
MCD-Hauptklasse MCM G01N 21/25 (2006.01)
MCD-Nebenklasse MCS G01B 11/14 (2006.01)
G01B 11/24 (2006.01)
G01B 11/25 (2006.01)
G01J 3/02 (2006.01)
G01J 3/10 (2006.01)
G01J 3/26 (2006.01)
G01J 3/28 (2006.01)
G01J 3/433 (2006.01)
MCD-Zusatzklasse MCA
57 Zusammenfassung AB [EN] The invention relates to methods and to devices for generating multispectral illuminating light having an addressable spectrum, for adaptive multispectral imaging and for capturing structural and/or topographical information of an object or of the distance to an object. The illuminating device comprises a multispectral light source and a modulator for temporal modulation of the individual spectral components of the multispectral light source having modulation frequencies. The multispectral light source comprises at least one light source having a continuous, quasi-continuous, or frequency comb spectrum and wavelength-dispersive means, or an assembly or array of monochromatic or quasi-monochromatic light sources having emission wavelengths or emission wavelength bands which are different from one another in each case. The modulator comprises at least one electrically controllable three-dimensional light modulator, or a plurality of electronic control modules assigned to the individual monochromatic or quasi-monochromatic light sources.
56 Entgegengehaltene Patentdokumente/Zitate,
in Recherche ermittelt
CT US020050185179A1
US020070146719A1
US020140218726A1
56 Entgegengehaltene Patentdokumente/Zitate,
vom Anmelder genannt
CT DE102006007172A1
US000005433197A
US000006031609A
US000006859275B2
US000008014569B2
US020020057431A1
US020050024640A1
US020050058352A1
US020070263214A1
WO002010060460A1
56 Entgegengehaltene Nichtpatentliteratur/Zitate,
in Recherche ermittelt
CTNP
56 Entgegengehaltene Nichtpatentliteratur/Zitate,
vom Anmelder genannt
CTNP Bellisola, Giuseppe et al.: “Infrared spectroscopy and microscopy in cancer research and diagnosis”, Am. J. Cancer Res., vol. 2, No. 1, 2012, pp. 1-21. 1;
Choi, Samuel et al.: “Multifrequency Light Source Using Spatial Light Modulator for Profilometry” (Conference on Lasers and Electro-Optics Pacific Rim (CLEO-PR) 2013, WPF-15). 1;
Dadesh, Khaled M. et al.: “High Speed Low Noise Multiplexed Three Color Absorbance Photometry”, 33rd Annual International Conference of the IEEE EMBS (Engineering in Medicine and Biology Society), 2011, pp. 39-42. 1;
Johnson, William R. et al.: “Snapshot hyperspectral imaging in ophthalmology”, Journal of Biomedical Optics, vol. 12, No. 1, 2007, pp. 014036-1-014036-7. 1;
Lee, So Yeong et al.: “Infrared spectroscopy characterization of normal and lung cancer cells originated from epithelium”, Journal of Veterinary Science, vol. 10, No. 4, 2009, pp. 299-304. 1;
Logozzo, Silvia et al.: “A Comparative Analysis of Intraoral 3d Digital Scanners for Restorative Dentistry”, The Internet Journal of Medical Technology, vol. 5, No. 1, 2011. 1;
Mansour, Mohamed: “Overview of Optical Impression Systems” Mar. 16, 2013. 1;
Mehta, Dalip Singh et al.: “Simultaneous three-dimensional step-height measurement and high-resolution tomographic imaging with a spectral interferometric microscope”, Applied Optics, vol. 41, No. 19, 2002, pp. 3874-3885. 1;
Puri, Sameer: “The State of Digital Dentistry in 2012”, dentaltown, 2012, pp. 126-131. 1;
Schwider, J. et al.: “Dispersive interferometric profilometer”, Optics Letters, vol. 19, No. 13, 1994, pp. 995-997. 1;
Sep. 8, 2015—(PCT) International Search Report and Written Opinion—App PCT/EP2015/000344. 1;
Venkatachalam, P. et al.: “Diagnosis of Breast Cancer Based on FT-IR Spectroscopy”, American Institute of Physics, Conf. Proc. 1075, 2008, pp. 144-148. 1;
Wu, Yuehao et al.: “Development of a digital-micromirror-device-based multishot snapshot spectral imaging system”, Optics Letters, vol. 36, No. 14, 2011, pp. 2692-2694. 1
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Prüfstoff-IPC ICP G01B 11/25
G01N 21/25