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Fluorescent Materials for Cell Imaging / edited by Fu-Gen Wu.

Contributor(s): Wu, Fu-Gen, editor | SpringerLink
Material type: materialTypeLabelE-bookSeries: (Biomedical and Life Sciences (SpringerNature-11642)); (Biomedical and Life Sciences (R0) (SpringerNature-43708)).Publisher: Singapore : Springer Singapore : Imprint: Springer, 2020Edition: First edition.Description: 1 recurso en línea (V, 247 páginas) : 140 ilustraciones, 128 ilustraciones a color.ISBN: 9789811550621.Subject: Células | Citología -- Técnica | MicroscopíaOnline resources: Acceso a este recurso digital (usuarios Universidad Europea de Madrid)Digital Resources
Contents:
Chapter 1: Introduction: Fluorescent materials for cell imaging -- Chapter 2: Semiconductor quantum dots for cell imaging -- Chapter 3: Carbon nanodots for cell imaging -- Chapter 4: Silicon nanoparticles for cell imaging -- Chapter 5: Fluorescent metal nanoclusters for bioimaging -- Chapter 6: Lanthanide-based upconversion nanoparticles for bioimaging applications -- Chapter 7: Conjugated polymers and polymer dots for cell imaging -- Chapter 8: Aggregation-induced emission (AIE) probes for cell imaging -- Chapter 9: Luminescent coordination compounds for cell imaging.
In: Springer Nature eBookAbstract: This book focuses on the latest fluorescent materials for cell imaging. Cell imaging is a widely used basic technique that helps scientists gain a better understanding of biological functions through studies of cellular structure and dynamics. In the past decades, the development of a variety of new fluorescent materials has significantly extended the applications of cellular imaging techniques. This book presents recently developed fluorescent materials, including semiconductor quantum dots, carbon dots, silicon nanoparticles, metal nanoclusters, upconversion nanoparticles, conjugated polymers/polymer dots, aggregation-induced emission (AIE) probes, and coordination compounds, used for various cellular imaging purposes. It will appeal to cell biologists and other researchers in academia, industry and clinical settings who are interested in the technical development and advanced applications of fluorescence imaging in cells, tissues and organisms to explore the mechanisms of biological functions and diseases.
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Holdings
Item type Current library Collection Call number Status Date due Barcode Item holds
LIBRO-E NO PRÉSTAMO LIBRO-E NO PRÉSTAMO Madrid Digital Acceso Electrónico (UEM) Ciencias e Ingeniería QH581 2020 EB (Browse shelf(Opens below)) Acceso electrónico eBook.15012034
Total holds: 0

Chapter 1: Introduction: Fluorescent materials for cell imaging -- Chapter 2: Semiconductor quantum dots for cell imaging -- Chapter 3: Carbon nanodots for cell imaging -- Chapter 4: Silicon nanoparticles for cell imaging -- Chapter 5: Fluorescent metal nanoclusters for bioimaging -- Chapter 6: Lanthanide-based upconversion nanoparticles for bioimaging applications -- Chapter 7: Conjugated polymers and polymer dots for cell imaging -- Chapter 8: Aggregation-induced emission (AIE) probes for cell imaging -- Chapter 9: Luminescent coordination compounds for cell imaging.

This book focuses on the latest fluorescent materials for cell imaging. Cell imaging is a widely used basic technique that helps scientists gain a better understanding of biological functions through studies of cellular structure and dynamics. In the past decades, the development of a variety of new fluorescent materials has significantly extended the applications of cellular imaging techniques. This book presents recently developed fluorescent materials, including semiconductor quantum dots, carbon dots, silicon nanoparticles, metal nanoclusters, upconversion nanoparticles, conjugated polymers/polymer dots, aggregation-induced emission (AIE) probes, and coordination compounds, used for various cellular imaging purposes. It will appeal to cell biologists and other researchers in academia, industry and clinical settings who are interested in the technical development and advanced applications of fluorescence imaging in cells, tissues and organisms to explore the mechanisms of biological functions and diseases.

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