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El. knyga: Optical Nanoscopy and Novel Microscopy Techniques

Edited by (Peking University Hospital, Beijing, China)
  • Formatas: 261 pages
  • Išleidimo metai: 19-Sep-2014
  • Leidėjas: CRC Press Inc
  • Kalba: eng
  • ISBN-13: 9781040212219
  • Formatas: 261 pages
  • Išleidimo metai: 19-Sep-2014
  • Leidėjas: CRC Press Inc
  • Kalba: eng
  • ISBN-13: 9781040212219

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"Many new methods in light and super-resolution microscopy have been developed over the last few years. This edited volume overviews the latest advances in microscopy, complete with experimental methods and data analysis of the results. Each chapter begins with a brief description of the principles of the technique for clarity and concludes with a set of problems. Cutting-edge microscopy techniques presented include STED, PALM/STORM, and light sheet microscopy"--Provided by publisher.

Researchers in optics and in biomedicine and other application areas survey some ideas that have revolutionized microscopy recently, to help readers in a broad range of scientific disciplines understand the technologies better and apply them better in their own research. Among the topics are optical nanoscopy with stimulated emission depletion, super-resolution imaging with stochastic optical reconstruction microscopy (STORM) and photoactivated localization microscopy (PALM), single-molecule imaging with quantum dots, fluorescence detection and lifetime imaging with stimulated emission, and advanced photoacoustic microscopy. Annotation ©2015 Ringgold, Inc., Portland, OR (protoview.com)

Microscopy is at the forefront of multidisciplinary research. It was developed by physicists, made specific by chemists, and applied by biologists and doctors to better understand how the human body works. For this very reason, the field has been revolutionized in past decades.

The objective of Optical Nanoscopy and Novel Microscopy Techniques is to choose some of those revolutionary ideas and serve a general audience from broad disciplines to achieve a fundamental understanding of these technologies and to better apply them in their daily research.

The book begins with coverage of super-resolution optical microscopy, which discusses targeted modulation such as STED and SIM or localization methods such as PALM. It then discusses novel development of fluorescent probes, such as organic small-molecule probes, fluorescent proteins, and inorganic labels such as quantum dots. Finally, it describes advanced optical microscopy, such as fluorescence lifetime imaging, fiber optic microscopy, scanning ion conductance microscopy, and the joining of optics and acoustics—photoacoustic microscopy. Following each chapter, a detailed list of references is provided. Problems at the end of each chapter are also included.

Recenzijos

" a reference for the optical physicist, biophysicist, chemist, or just plain tinkerer who wants to design and build systems or construct probes. For the student, one particularly nice feature is the inclusion of a list of problems to solve at the end of each chapter. These range from simple to very challenging, and any student who works through them all will gain an understanding that could never be obtained by rote learning." Microscopy and Microanalysis, 2015

"These days, all over the world, biology labs and physicists are collaborating, looking at the rapidly evolving techniques of super-resolution and saying But, hey, we could do better if we did it this way This is their handbook. Then there are the tinkerers, who will read the more obscure chapters and say Wow, I could use this to It is their handbook too. The book is a valuable addition to the literature." Guy Cox, Australian Centre for Microscopy and Microanalysis, University of Sydney

Preface vii
Contributors ix
Chapter 1 Optical nanoscopy with stimulated emission depletion
1(22)
Peng Xi
Hao Xie
Yujia Liu
Yichen Ding
Chapter 2 Structured illumination microscopy
23(38)
Dan Dan
Baoli Yao
Ming Lei
Chapter 3 Super-resolution imaging with stochastic optical reconstruction microscopy (STORM) and photoactivated localization microscopy (PALM)
61(24)
Yujie Sun
Chapter 4 Small-molecule labeling probes
85(26)
Jie Wang
Jie Li
Yi Yang
Maiyun Yang
Peng R. Chen
Chapter 5 Fluorescent proteins for optical microscopy
111(24)
Pingyong Xu
Mingshu Zhang
Hao Chang
Chapter 6 Single-molecule imaging with quantum dots
135(26)
Mohammad U. Zahid
Andrew M. Smith
Chapter 7 Fluorescence detection and lifetime imaging with stimulated emission
161(18)
Po-Yen Lin
Jianhong Ge
Cuifang Kuang
Fu-Jen Kao
Chapter 8 Fiber optic microscopy
179(20)
Jin U. Rang
Xuan Liu
Chapter 9 Scanning ion conductance microscopy
199(16)
Zhicong Fei
Hui Shi
Yanjun Zhang
Yuchun Gu
Chapter 10 Advanced photoacoustic microscopy
215(26)
Yichen Ding
Qiushi Ren
Changhui Li
Index 241
Peng Xi is an associate professor in Department of Biomedical Engineering at Peking University in China. He obtained his PhD from the Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences. Dr. Xis research interests focus on optical nanoscopy, novel applications on confocal microscopy, and biomedical optical instrumentation. Dr. Peng Xi is on the editorial board of three SCI-indexed journals: Microscopy Research and Techniques, Micron, and Chinese Optics Letters. He has published more than 80 scientific papers in peer-reviewed journals and conference proceedings.