Bioluminescent Optogenetics: Molecular Control With Biological Light. Este artículo no está disponible.
Idioma: inglés
Editorial: Springer Nature Switzerland Ag, 2026
- Tapa dura
- Nuevo

Librería: Revaluation Books, Exeter, Reino UnidoRevaluation Books
Vendedor de AbeBooks desde 6 de enero de 2003
Condición: Nuevo
EUR 245,40
Descripción del artículo del vendedor
257 pages. 6.45x0.75x9.52 inches. In Stock.
N° de ref. del artículo x-3032181208
- Título
- Bioluminescent Optogenetics: Molecular Control With Biological Light
- Autor
- Hochgeschwender, Ute (Editor)
- Editorial
- Springer Nature Switzerland Ag
- Año de publicación
- 2026
- Estado
- Brand New
- Encuadernación
- Hardcover
- Idioma
- inglés
- ISBN 10
- 3032181208
- ISBN 13
- 9783032181206
- Peso del artículo
- 0,5 kilogramos
This book provides an overview of and introduction to the use of bioluminescence for controlling light-sensing molecules. Different from the standard use of bioluminescence in imaging applications in vitro and in vivo, bioluminescent optogenetics harnesses molecularly produced light to activate the wide range of light-controllable modules available, from ion channels to transcription factors. The book covers the principal biological mechanisms of light emission and light sensing and the palette of tools enabled when combining genetically encoded light production with light sensing for use within and across cells. Through examples covering the main applications, Bioluminescent Optogenetics provides a practical guide for using this powerful platform for neuroscience and beyond.
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Acerca del autor
Ute Hochgeschwender graduated from the Freie Universität in Berlin, Germany, with degrees in medicine (MD) and philosophy (MA). Her research focused on development and application of molecular genetic tools for basic and translational neuroscience. Over the past several years, she established a research program that advances the concept of using biological light, i.e. light generated by a protein, a luciferase, to control light-sensing photoreceptors. An important goal in addition to the continuous development of this BioLuminescent OptoGenetics technology is the application of these tools for research into the mechanisms and potential, non-invasive treatment of neurological and psychiatric diseases.
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