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Search: L773:0022 2720 OR L773:1365 2818 > (2015-2019) > Single particle ras...

LIBRIS Formathandbok  (Information om MARC21)
FältnamnIndikatorerMetadata
00004347naa a2200541 4500
001oai:gup.ub.gu.se/249746
003SwePub
008240528s2017 | |||||||||||000 ||eng|
009oai:research.chalmers.se:81a2389c-ce4d-47c8-81f6-8df20ae15253
009oai:DiVA.org:ri-29181
024a https://gup.ub.gu.se/publication/2497462 URI
024a https://doi.org/10.1111/jmi.125112 DOI
024a https://research.chalmers.se/publication/2473872 URI
024a https://urn.kb.se/resolve?urn=urn:nbn:se:ri:diva-291812 URI
040 a (SwePub)gud (SwePub)cthd (SwePub)ri
041 a eng
042 9 SwePub
072 7a ref2 swepub-contenttype
072 7a art2 swepub-publicationtype
100a Longfils, Marco,d 1990u Gothenburg University,Göteborgs universitet,Institutionen för matematiska vetenskaper,Department of Mathematical Sciences,Chalmers tekniska högskola,Chalmers University of Technology,University of Gothenburg,Chalmers University of Technology, Sweden; University of Gothenburg, Sweden4 aut0 (Swepub:cth)longfils
2451 0a Single particle raster image analysis of diffusion
264 c 2016-12-05
264 1b Wiley,c 2017
520 a As a complement to the standard RICS method of analysing Raster Image Correlation Spectroscopy images with estimation of the image correlation function, we introduce the method SPRIA, Single Particle Raster Image Analysis. Here, we start by identifying individual particles and estimate the diffusion coefficient for each particle by a maximum likelihood method. Averaging over the particles gives a diffusion coefficient estimate for the whole image. In examples both with simulated and experimental data, we show that the new method gives accurate estimates. It also gives directly standard error estimates. The method should be possible to extend to study heterogeneous materials and systems of particles with varying diffusion coefficient, as demonstrated in a simple simulation example. A requirement for applying the SPRIA method is that the particle concentration is low enough so that we can identify the individual particles. We also describe a bootstrap method for estimating the standard error of standard RICS.
650 7a NATURVETENSKAPx Matematikx Sannolikhetsteori och statistik0 (SwePub)101062 hsv//swe
650 7a NATURAL SCIENCESx Mathematicsx Probability Theory and Statistics0 (SwePub)101062 hsv//eng
650 7a NATURVETENSKAPx Fysikx Annan fysik0 (SwePub)103992 hsv//swe
650 7a NATURAL SCIENCESx Physical Sciencesx Other Physics Topics0 (SwePub)103992 hsv//eng
650 7a TEKNIK OCH TEKNOLOGIERx Medicinteknik0 (SwePub)2062 hsv//swe
650 7a ENGINEERING AND TECHNOLOGYx Medical Engineering0 (SwePub)2062 hsv//eng
653 a Bias correction
653 a Bootstrap
653 a Confocal laser scanning microscopy
653 a Diffusion
653 a Fluorescent beads
653 a Maximum likelihood
653 a Confocal laser scanning microscopy
700a Schuster, E.u RISE,Jordbruk och livsmedel4 aut
700a Lorén, Niklas,d 1970u RISE,Jordbruk och livsmedel4 aut0 (Swepub:ri)niklaslo@ri.se
700a Särkkä, Aila,d 1962u Gothenburg University,Göteborgs universitet,Institutionen för matematiska vetenskaper,Department of Mathematical Sciences,University of Gothenburg,Chalmers tekniska högskola,Chalmers University of Technology,Chalmers University of Technology, Sweden; University of Gothenburg, Sweden4 aut0 (Swepub:cth)aila
700a Rudemo, Mats,d 1937u Gothenburg University,Göteborgs universitet,Institutionen för matematiska vetenskaper,Department of Mathematical Sciences,University of Gothenburg,Chalmers tekniska högskola,Chalmers University of Technology,Chalmers University of Technology, Sweden; University of Gothenburg, Sweden4 aut0 (Swepub:cth)rudemo
710a Göteborgs universitetb Institutionen för matematiska vetenskaper4 org
773t Journal of Microscopyd : Wileyg 266:1, s. 3-14q 266:1<3-14x 0022-2720x 1365-2818
856u http://dx.doi.org/10.1111/jmi.12511y FULLTEXT
8564 8u https://gup.ub.gu.se/publication/249746
8564 8u https://doi.org/10.1111/jmi.12511
8564 8u https://research.chalmers.se/publication/247387
8564 8u https://urn.kb.se/resolve?urn=urn:nbn:se:ri:diva-29181

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