Introduction to optical microscopy [2nd ed.] [ Access till Sep. 2023]
By: Mertz, Jerome.
Publisher: Cambridge Cambridge University Press 2019Edition: 2nd ed.Description: xvii, 456p.ISBN: 9781108552660.Subject(s): MicroscopyDDC classification: 570.282 | M558i2 Online resources: Click here to access online Summary: This fully updated, self-contained textbook covering modern optical microscopy equips students with a solid understanding of the theory underlying a range of advanced techniques. Two new chapters cover pump-probe techniques, and imaging in scattering media, and additional material throughout covers light-sheet microscopy, image scanning microscopy, and much more. An array of practical techniques are discussed, from classical phase contrast and confocal microscopy, to holographic, structured illumination, multi-photon, and coherent Raman microscopy, and optical coherence tomography. Fundamental topics are also covered, including Fourier optics, partial coherence, 3D imaging theory, statistical optics, and the physics of scattering and fluorescence. With a wealth of end-of-chapter problems, and a solutions manual for instructors available online, this is an invaluable book for electrical engineering, biomedical engineering, and physics students taking graduate courses on optical microscopy, as well as advanced undergraduates, professionals, and researchers looking for an accessible introduction to the field.Item type | Current location | Collection | Call number | Status | Notes | Date due | Barcode | Item holds |
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E books | PK Kelkar Library, IIT Kanpur | Electronic Resources | 570.282 M558i2 (Browse shelf) | Available | Expired | EBK10785_23 | ||
E books | PK Kelkar Library, IIT Kanpur | Electronic Resources | 570.282 M558i2 (Browse shelf) | Available | EBK10785 |
This fully updated, self-contained textbook covering modern optical microscopy equips students with a solid understanding of the theory underlying a range of advanced techniques. Two new chapters cover pump-probe techniques, and imaging in scattering media, and additional material throughout covers light-sheet microscopy, image scanning microscopy, and much more. An array of practical techniques are discussed, from classical phase contrast and confocal microscopy, to holographic, structured illumination, multi-photon, and coherent Raman microscopy, and optical coherence tomography. Fundamental topics are also covered, including Fourier optics, partial coherence, 3D imaging theory, statistical optics, and the physics of scattering and fluorescence. With a wealth of end-of-chapter problems, and a solutions manual for instructors available online, this is an invaluable book for electrical engineering, biomedical engineering, and physics students taking graduate courses on optical microscopy, as well as advanced undergraduates, professionals, and researchers looking for an accessible introduction to the field.
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