Detection of local specular gloss and surface roughness from black prints
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M. Toivakka | J. Timonen | R. Myllylä | E. Alarousu | K. Peiponen | Mikko Juuti | H. Koivula | T. Prykäri | M. Myllys | A. Lähteelä | M. Juuti
[1] R. Silvennoinen,et al. A glossmeter for inspection of surface quality of low gloss nano-carbon surfaces , 2007 .
[2] Raimo Silvennoinen,et al. Quality inspection of metal surfaces by diffractive optical element-based glossmeter , 2006 .
[3] Tuukka Prykäri,et al. Diffractive-optical-element-based glossmeter and low coherence interferometer in assessment of local surface quality of paper , 2006 .
[4] Jukka Hast,et al. Characterisation of optically cleared paper by optical coherence tomography , 2006 .
[5] K. Peiponen,et al. Statistical parameters for gloss evaluation , 2006 .
[6] Tuukka Prykäri,et al. Study on the use of optical coherence tomography in measurements of paper properties , 2005 .
[7] J. Preston,et al. The influence of colour and surface topography on the measurement of effective refractive index of offset printed coated papers , 2005 .
[8] Erkki Alarousu,et al. Optical coherence tomography device for paper characterization , 2004, Saratov Fall Meeting.
[9] R. Silvennoinen,et al. Diffractive optical sensor for gloss differences of injection molded plastic products , 2004 .
[10] Kyriakos Porfyrakis,et al. How Surface Topography Relates to Materials' Properties , 2002, Science.
[11] G. C. Allen,et al. Investigation into the distribution of ink components on printed coated paper: Part 1: optical and roughness considerations , 2002 .
[12] R. Silvennoinen,et al. Optical sensing of colour print on paper by a diffractive optical element , 2002 .
[13] Frank Natterer,et al. Mathematical methods in image reconstruction , 2001, SIAM monographs on mathematical modeling and computation.
[14] K. Peiponen,et al. On-line measurement of the thickness and optical quality of float glass with a sensor based on a diffractive element. , 2001, Applied optics.
[15] R. Silvennoinen,et al. On the assessment of the surface quality of black print paper by use of a diffractive optical-element-based sensor , 2000 .
[16] Emil Wolf,et al. Principles of Optics: Contents , 1999 .
[17] Raimo Silvennoinen,et al. Off‐line system for simultaneous inspection of metal surface roughness and flatness by computer‐generated holograms , 1996 .
[18] David J. Whitehouse,et al. A Philosophy of Linking Manufacture to Function— An Example in Optics , 1993 .
[19] William Grimson,et al. Object recognition by computer - the role of geometric constraints , 1991 .
[20] J. Christie. An instrument for the geometric attributes of metallic appearance. , 1969, Applied optics.
[21] R. Silvennoinen,et al. Local and average gloss from flat-faced sodium chloride tablets. , 2006, AAPS PharmSciTech.
[22] Avinash C. Kak,et al. Principles of computerized tomographic imaging , 2001, Classics in applied mathematics.
[23] Zeyun Yu,et al. New algorithms in 3D image analysis and their application to the measurement of a spatialized pore size distribution in soils , 1999 .
[24] T. Asakura,et al. Diffractive Optical Elements in Materials Inspection , 1999 .
[25] D. Bousfield,et al. Influence of pigment size on wet ink gloss development , 1998 .
[26] Douglas W. Bousfield,et al. Modeling of coating structure development , 1997 .
[27] D. Bousfield,et al. Print gloss development on a model substrate , 1997 .
[28] F. Natterer. The Mathematics of Computerized Tomography , 1986 .
[29] D. L. Macadam,et al. The measurement of appearance , 1975 .
[30] P. Beckmann,et al. The scattering of electromagnetic waves from rough surfaces , 1963 .