Adaptive optics for biological imaging

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MARC

LEADER 00000nam a2200000 c 4500
001 BV045250033
003 DE-604
005 20181122
007 t
008 181025s2013 a||| |||| 00||| eng d
020 |a 9781439850183  |c (hbk.) £63.99  |9 978-1-4398-5018-3 
035 |a (OCoLC)884771383 
035 |a (DE-599)BSZ416084737 
040 |a DE-604  |b ger  |e rda 
041 0 |a eng 
049 |a DE-20 
082 0 |a 570.282 
245 1 0 |a Adaptive optics for biological imaging  |c edited by Joel A. Kubby 
264 0 |a Boca Raton, Fla.  |b CRC Press  |c 2013 
300 |a XVI, 359 Seiten, [6] Blätter  |b Illustrationen, Diagramme  |c 26 cm 
336 |b txt  |2 rdacontent 
337 |b n  |2 rdamedia 
338 |b nc  |2 rdacarrier 
500 |a Includes bibliographical references and index 
505 8 0 |t Principles of wave optics  |r Donald T. Gavel  |t Principles of geometric optics  |r Joel A. Kubby  |t Theory of images formation  |r Michael Schwertner  |t Aberrations and the benefits of their correction in confocal microscopy  |r Michael Schwertner  |t Specimen-induced geometrical distortions  |r Michael Schwertner  |t Simulation of aberrations  |r Michael Schwertner  |t Overview of adaptive optics in biological imaging  |r Elijah Y.S. Yew, Peter T.C. So  |t Wavefront Correctors  |r Joel A. Kubby  |t Adaptive optics system alignment and assembly  |r Diana C. Chen  |t Sensorless adaptive optics for microscopy  |r Martin J. Booth, Alexander Jesacher  |t Implementation of adaptive optics in nonlinear microscopy for biological samples using optimization algorithms  |r John M. Girkin  |t AO two-photon florescence microscopy using stochastic parallel descent algorithm with Zernike polynomial basis  |r Yaopeng Zhou  |t Pupil-segmentation-based adaptive optics for microscopy  |r Nu Ji, Eric Betzig  |t Coherence-gated wavefront sensing  |r Jonas Binding, Markus Rückel  |t Adaptive optics in wide-field microscopy  |r Peter Kner ... [et al.]  |t Biological imaging and adaptive optics in microscopy  |r Elijah Y.S. Yew ... [et al.]  |t Adaptive optical microscopy using direct wavefront measurements  |r Oscar Azucena, Xiaodong Tao, Joel A. Kubby 
653 0 |a Imaging systems in biology 
653 0 |a Optics, Adaptive 
700 1 |a Kubby, Joel A.  |4 edt 
776 0 8 |i Erscheint auch als  |n Online-Ausgabe  |z 978-143-985-019-0 
999 |a oai:aleph.bib-bvb.de:BVB01-030638064 

Datensatz im Suchindex

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any_adam_object
author2 Kubby, Joel A.
author2_role edt
author2_variant j a k ja jak
author_additional Donald T. Gavel
Joel A. Kubby
Michael Schwertner
Elijah Y.S. Yew, Peter T.C. So
Diana C. Chen
Martin J. Booth, Alexander Jesacher
John M. Girkin
Yaopeng Zhou
Nu Ji, Eric Betzig
Jonas Binding, Markus Rückel
Peter Kner ... [et al.]
Elijah Y.S. Yew ... [et al.]
Oscar Azucena, Xiaodong Tao, Joel A. Kubby
author_facet Kubby, Joel A.
building Verbundindex
bvnumber BV045250033
contents Principles of wave optics
Principles of geometric optics
Theory of images formation
Aberrations and the benefits of their correction in confocal microscopy
Specimen-induced geometrical distortions
Simulation of aberrations
Overview of adaptive optics in biological imaging
Wavefront Correctors
Adaptive optics system alignment and assembly
Sensorless adaptive optics for microscopy
Implementation of adaptive optics in nonlinear microscopy for biological samples using optimization algorithms
AO two-photon florescence microscopy using stochastic parallel descent algorithm with Zernike polynomial basis
Pupil-segmentation-based adaptive optics for microscopy
Coherence-gated wavefront sensing
Adaptive optics in wide-field microscopy
Biological imaging and adaptive optics in microscopy
Adaptive optical microscopy using direct wavefront measurements
ctrlnum (OCoLC)884771383
(DE-599)BSZ416084737
dewey-full 570.282
dewey-hundreds 500 - Natural sciences and mathematics
dewey-ones 570 - Biology
dewey-raw 570.282
dewey-search 570.282
dewey-sort 3570.282
dewey-tens 570 - Biology
discipline Biologie
format Book
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isbn 9781439850183
language English
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physical XVI, 359 Seiten, [6] Blätter Illustrationen, Diagramme 26 cm
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spelling Adaptive optics for biological imaging edited by Joel A. Kubby
Boca Raton, Fla. CRC Press 2013
XVI, 359 Seiten, [6] Blätter Illustrationen, Diagramme 26 cm
txt rdacontent
n rdamedia
nc rdacarrier
Includes bibliographical references and index
Principles of wave optics Donald T. Gavel Principles of geometric optics Joel A. Kubby Theory of images formation Michael Schwertner Aberrations and the benefits of their correction in confocal microscopy Michael Schwertner Specimen-induced geometrical distortions Michael Schwertner Simulation of aberrations Michael Schwertner Overview of adaptive optics in biological imaging Elijah Y.S. Yew, Peter T.C. So Wavefront Correctors Joel A. Kubby Adaptive optics system alignment and assembly Diana C. Chen Sensorless adaptive optics for microscopy Martin J. Booth, Alexander Jesacher Implementation of adaptive optics in nonlinear microscopy for biological samples using optimization algorithms John M. Girkin AO two-photon florescence microscopy using stochastic parallel descent algorithm with Zernike polynomial basis Yaopeng Zhou Pupil-segmentation-based adaptive optics for microscopy Nu Ji, Eric Betzig Coherence-gated wavefront sensing Jonas Binding, Markus Rückel Adaptive optics in wide-field microscopy Peter Kner ... [et al.] Biological imaging and adaptive optics in microscopy Elijah Y.S. Yew ... [et al.] Adaptive optical microscopy using direct wavefront measurements Oscar Azucena, Xiaodong Tao, Joel A. Kubby
Imaging systems in biology
Optics, Adaptive
Kubby, Joel A. edt
Erscheint auch als Online-Ausgabe 978-143-985-019-0
spellingShingle Adaptive optics for biological imaging
Principles of wave optics
Principles of geometric optics
Theory of images formation
Aberrations and the benefits of their correction in confocal microscopy
Specimen-induced geometrical distortions
Simulation of aberrations
Overview of adaptive optics in biological imaging
Wavefront Correctors
Adaptive optics system alignment and assembly
Sensorless adaptive optics for microscopy
Implementation of adaptive optics in nonlinear microscopy for biological samples using optimization algorithms
AO two-photon florescence microscopy using stochastic parallel descent algorithm with Zernike polynomial basis
Pupil-segmentation-based adaptive optics for microscopy
Coherence-gated wavefront sensing
Adaptive optics in wide-field microscopy
Biological imaging and adaptive optics in microscopy
Adaptive optical microscopy using direct wavefront measurements
title Adaptive optics for biological imaging
title_alt Principles of wave optics
Principles of geometric optics
Theory of images formation
Aberrations and the benefits of their correction in confocal microscopy
Specimen-induced geometrical distortions
Simulation of aberrations
Overview of adaptive optics in biological imaging
Wavefront Correctors
Adaptive optics system alignment and assembly
Sensorless adaptive optics for microscopy
Implementation of adaptive optics in nonlinear microscopy for biological samples using optimization algorithms
AO two-photon florescence microscopy using stochastic parallel descent algorithm with Zernike polynomial basis
Pupil-segmentation-based adaptive optics for microscopy
Coherence-gated wavefront sensing
Adaptive optics in wide-field microscopy
Biological imaging and adaptive optics in microscopy
Adaptive optical microscopy using direct wavefront measurements
title_auth Adaptive optics for biological imaging
title_exact_search Adaptive optics for biological imaging
title_full Adaptive optics for biological imaging edited by Joel A. Kubby
title_fullStr Adaptive optics for biological imaging edited by Joel A. Kubby
title_full_unstemmed Adaptive optics for biological imaging edited by Joel A. Kubby
title_short Adaptive optics for biological imaging
title_sort adaptive optics for biological imaging
work_keys_str_mv AT kubbyjoela adaptiveopticsforbiologicalimaging