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Fluorescence Lifetime Imaging Ophthalmoscopy de Martin Zinkernagel,Chantal Dysli

DescripciĆ³n - ReseƱa del editor This book focuses on the emerging non-invasive imaging technique of Fluorescence Lifetime Imaging Ophthalmoscopy (FLIO).Ā  FLIO reveals unique information on retinal diseases, ranging from age-related macular degeneration and vascular diseases to hereditary retinal dystrophies. Fluorescence lifetimes enable the evaluation of disease progression before irreversible structural changes occur. The image acquisition is suitable for diagnostic purposes and follow-up examinations to investigate the natural course of disease, and to monitor the effects of possible therapies. This book fills the gap between available literature and gives state-of-the-art guidance on the principles of the FLIO technique, image acquisition, and data analysis. Written by a team of expert leaders within this field, this book will be relevant for scientists and clinicians with an interest in ophthalmoscopy. Contraportada This book focuses on the emerging non-invasive imaging technique of Fluorescence Lifetime Imaging Ophthalmoscopy (FLIO).Ā  FLIO reveals unique information on retinal diseases, ranging from age-related macular degeneration and vascular diseases to hereditary retinal dystrophies. Fluorescence lifetimes enable the evaluation of disease progression before irreversible structural changes occur. The image acquisition is suitable for diagnostic purposes and follow-up examinations to investigate the natural course of disease, and to monitor the effects of possible therapies. Ā This book fills the gap between available literature and gives state-of-the-art guidance on the principles of the FLIO technique, image acquisition, and data analysis. Written by a team of expert leaders within this field, this book will be relevant for scientists and clinicians with an interest in ophthalmoscopy. BiografĆ­a del autor Prof. Martin S. Zinkernagel, MD PhD; Department of Ophthalmology, University Hospital Bern, Switzerland - FEBO, ophthalmic surgeon - current position: Consultant vitreoretinal specialist - research focus: fluorescence lifetime imaging ophthalmoscopy, retinal imaging, mouse models of retinal diseasesChantal Dysli, MD PhD; Department of Ophthalmology, University Hospital Bern, Switzerland: - research focus on fluorescence lifetime imaging ophthalmoscopy, retinal imaging - currently residency in ophthalmology

Detalles del Libro

  • Name: Fluorescence Lifetime Imaging Ophthalmoscopy
  • Autor: Martin Zinkernagel,Chantal Dysli
  • Categoria: Libros,Libros universitarios y de estudios superiores,Medicina y ciencias de la salud
  • TamaƱo del archivo: 15 MB
  • Tipos de archivo: PDF Document
  • Descargada: 637 times
  • Idioma: EspaƱol
  • Archivos de estado: AVAILABLE


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Fluorescence lifetime imaging ophthalmoscopy fluorescence lifetime imaging ophthalmoscopy flio is an emerging imaging modality for in vivo measurement of lifetimes of endogenous retinal fluorophores recent reports in this field have contributed to our understanding of the pathophysiology of various macular and retinal diseases

Fluorescence lifetime imaging ophthalmoscopy springerlink this book focuses on the emerging noninvasive imaging technique of fluorescence lifetime imaging ophthalmoscopy flio flio reveals unique information on retinal diseases ranging from agerelated macular degeneration and vascular diseases to hereditary retinal dystrophies

Fluorescence lifetime imaging ophthalmoscopy request pdf fluorescence lifetime imaging ophthalmoscopy flio 70 is a technique similar to niraf that not only measures the autofluorescence signal from fluorophores in the retina but also the time it

Fluorescence lifetime imaging ophthalmoscopy medical fluorescence lifetime imaging ophthalmoscopy radiology aug 26 2019 this book focuses on the emerging noninvasive imaging technique of fluorescence lifetime imaging ophthalmoscopy flio flio reveals unique information on retinal diseases ranging from agerelated macular degeneration and vascular diseases to hereditary retinal dystrophies

Fluorescence lifetime imaging ophthalmoscopy sciencedirect fluorescence lifetime imaging ophthalmoscopy flio is an emerging imaging modality for in vivo measurement of lifetimes of endogenous retinal fluorophores recent reports in this field have contributed to our understanding of the pathophysiology of various macular and retinal diseases

Fluorescence lifetime imaging ophthalmoscopy flio fluorescence lifetime imaging ophthalmoscopy flio is an emerging technology which enables the timeresolved invivo measurement of fluorescence emitted by endogenous fluorophores within the retina the decay time of the fluorescence is a characteristic parameter for fluorescent molecules and their environment

Bleaching effects and fluorescence lifetime imaging bleaching effects and fluorescence lifetime imaging ophthalmoscopy matthias klemm 1 lydia sauer23 sascha klee1 dietmar link1 sven peters 2 martin hammer24 dietrich schweitzer2 and jens haueisen 1 1institute of biomedical engineering and informatics technische universitƤt ilmenau pob 100565 98694 ilmenau germany 2university hospital jena department of ophthalmology am klinikum

Fluorescence lifetime imaging flim picoquant fluorescence lifetime imaging flim produces an image based on the differences in the excited state decay rate from a fluorescent sample thus flim is a fluorescence imaging technique where the contrast is based on the lifetime of individual fluorophores rather than their emission spectra

Fluorescencelifetime imaging microscopy wikipedia fluorescencelifetime imaging microscopy or flim is an imaging technique for producing an image based on the differences in the exponential decay rate of the fluorescence from a fluorescent sample it can be used as an imaging technique in confocal microscopy twophoton excitation microscopy and multiphoton tomography the lifetime of the fluorophore signal rather than its intensity is

Review of clinical approaches in fluorescence lifetime 23 in vivo fluorescence detection fluorescence lifetime imaging ophthalmoscopy the autofluorescence of the retina was first discovered in early days of fluorescein angiography imaging when fluorescence was detected even before a fluorescent dye was injected 29 30 such fluorescence is based on the accumulation of hyperfluorescent material such as the agerelated pigment lipofuscin within