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Author | Title | Accn# | Year | Item Type | Claims |
1 |
Ticar, Johanna Maria |
3D Analysis of the Myocardial Microstructure |
I10252 |
2016 |
eBook |
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2 |
Li, Mi |
Investigations of Cellular and Molecular Biophysical Properties by Atomic Force Microscopy Nanorobotics |
I09904 |
2018 |
eBook |
|
3 |
Toporski, Jan |
Confocal Raman Microscopy |
I09547 |
2018 |
eBook |
|
4 |
Oliveira, Lu??s Manuel Couto |
The Optical Clearing Method |
I09482 |
2019 |
eBook |
|
5 |
Oral, Ahmet Yavuz |
3rd International Multidisciplinary Microscopy and Microanalysis Congress (InterM) |
I09348 |
2017 |
eBook |
|
6 |
Masters, Barry R |
Superresolution Optical Microscopy |
I09097 |
2020 |
eBook |
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7 |
Kirkland, Earl J |
Advanced Computing in Electron Microscopy |
I08802 |
2020 |
eBook |
|
8 |
Astratov, Vasily |
Label-Free Super-Resolution Microscopy |
I08679 |
2019 |
eBook |
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9 |
Polychroniadis, E.K |
2nd International Multidisciplinary Microscopy and Microanalysis Congress |
I08359 |
2015 |
eBook |
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10 |
Zoubir, Arnaud |
Raman Imaging |
I08278 |
2012 |
eBook |
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1.
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Title | 3D Analysis of the Myocardial Microstructure : Determination of Fiber and Sheet Orientations |
Author(s) | Ticar, Johanna Maria |
Publication | Wiesbaden, 1. Imprint: Springer Spektrum
2. Springer Fachmedien Wiesbaden, 2016. |
Description | XV, 76 p. 39 illus. in color : online resource |
Abstract Note | The master thesis of Johanna Maria Ticar reveals high-resolution insights into the myocardial microstructure and illustrates that cardiac muscle fibers are straight, running in parallel with one preferred fiber direction, however, deposits such as fat seem to compromise the regular and compact structure. Second harmonic generation imaging combined with optical tissue clearing is an accurate method for determining the three-dimensional muscle fiber and sheet orientations and hence, allows the calculation of fiber rotation throughout the ventricle wall. Contents ??? Structure of the Human Myocardium ??? Imaging Tools for Fiber Mapping ??? Optical Tissue Clearing ??? Second Harmonic Generation Imaging ??? 3D Reconstruction and Visualization Target Groups ??? Researchers and Students in the field of Biomedical Engineering with a focus on Bioengineering and??Biomechanics ??? Professionals in the field of Biomedicine The Author Johanna Maria Ticar, MSc, studied Biomedical Engineering at Graz University of Technology. Her research interests are the microstructure of the human body, tissue engineering and regenerative medicine, foremost in the field of cardiology |
ISBN,Price | 9783658114244 |
Keyword(s) | 1. Biological and Medical Physics, Biophysics
2. Biological Microscopy
3. BIOLOGICAL PHYSICS
4. Biomedicine, general
5. BIOPHYSICS
6. EBOOK
7. EBOOK - SPRINGER
8. MEDICINE
9. MICROSCOPY
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Item Type | eBook |
Multi-Media Links
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Accession# | |
Call# | Status | Issued To | Return Due On | Physical Location |
I10252 |
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On Shelf |
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2.
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Title | Investigations of Cellular and Molecular Biophysical Properties by Atomic Force Microscopy Nanorobotics |
Author(s) | Li, Mi |
Publication | Singapore, Springer Singapore, 2018. |
Description | XIII, 135 p. 75 illus : online resource |
Abstract Note | This book presents methodological and application research in detecting cellular and molecular biophysical properties based on atomic force microscopy (AFM) nanorobotics. Series methods for in situ label-free visualizing and quantifying the multiple physical properties of single cells and single molecules were developed, including immobilization strategies for observing fine structures of living cells, measurements of single-cell mechanics, force recognition of molecular interactions, and mapping protein organizations on cell surface. The biomedical applications of these methods in clinical lymphoma treatments were explored in detail, including primary sample preparation, cancer cell recognition, AFM detection and data analysis. Future directions about the biomedical applications of AFM are also given |
ISBN,Price | 9789811068294 |
Keyword(s) | 1. AUTOMATION
2. Biological and Medical Physics, Biophysics
3. Biological Microscopy
4. BIOLOGICAL PHYSICS
5. BIOPHYSICS
6. EBOOK
7. EBOOK - SPRINGER
8. Immunology
9. MICROSCOPY
10. Nanoscale science
11. Nanoscale Science and Technology
12. NANOSCIENCE
13. Nanostructures
14. ROBOTICS
15. Robotics and Automation
16. SPECTROSCOPY
17. Spectroscopy and Microscopy
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Item Type | eBook |
Multi-Media Links
Please Click here for eBook
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Accession# | |
Call# | Status | Issued To | Return Due On | Physical Location |
I09904 |
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On Shelf |
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3.
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Title | Confocal Raman Microscopy |
Author(s) | Toporski, Jan;Dieing, Thomas;Hollricher, Olaf |
Publication | Cham, Springer International Publishing, 2018. |
Description | XXIV, 596 p : online resource |
Abstract Note | This second edition provides a cutting-edge overview of physical, technical and scientific aspects related to the widely used analytical method of confocal Raman microscopy. The book includes expanded background information and adds insights into how confocal Raman microscopy, especially 3D Raman imaging, can be integrated with other methods to produce a variety of correlative microscopy combinations. The benefits are then demonstrated and supported by numerous examples from the fields of materials science, 2D materials, the life sciences, pharmaceutical research and development, as well as the geosciences |
ISBN,Price | 9783319753805 |
Keyword(s) | 1. Biological Microscopy
2. EBOOK
3. EBOOK - SPRINGER
4. Interfaces (Physical sciences)
5. Materials???Surfaces
6. MICROBIOLOGY
7. MICROSCOPY
8. MINERALOGY
9. SPECTROSCOPY
10. Spectroscopy and Microscopy
11. Surface and Interface Science, Thin Films
12. Surfaces (Physics)
13. Surfaces and Interfaces, Thin Films
14. THIN FILMS
|
Item Type | eBook |
Multi-Media Links
Please Click here for eBook
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Accession# | |
Call# | Status | Issued To | Return Due On | Physical Location |
I09547 |
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On Shelf |
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4.
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Title | The Optical Clearing Method : A New Tool for Clinical Practice and Biomedical Engineering |
Author(s) | Oliveira, Lu??s Manuel Couto;Tuchin, Valery Victorovich |
Publication | Cham, Springer International Publishing, 2019. |
Description | XI, 177 p. 53 illus., 47 illus. in color : online resource |
Abstract Note | This book describes the Optical Immersion Clearing method and its application to acquire information with importance for clinical practice and various fields of biomedical engineering. The method has proved to be a reliable means of increasing tissue transparency, allowing the investigator or surgeon to reach deeper tissue layers for improved imaging and laser surgery. This result is obtained by partial replacement of tissue water with an active optical clearing agent (OCA) that has a higher refractive index and is a better match for the refractive index of other tissue components. Natural tissue scattering is thereby reduced. An exponential increase in research using this method has occurred in recent years, and new applications have emerged, both in clinical practice and in some areas of biomedical engineering. Recent research has revealed that treating ex vivo tissues with solutions containing active OCAs in different concentrations produces experimental data to characterize drug delivery or to discriminate between normal and pathological tissues. The obtained drug diffusion properties are of interest for the pharmaceutical and organ preservation industry. Similar data can be estimated with particular interest for food preservation. The free water content evaluation is also of great interest since it facilitates the characterization of tissues to discriminate pathologies. An interesting new application that is presented in the book regards the creation of two optical windows in the ultraviolet spectral range through the application of the immersion method. These induced transparency windows open the possibility to diagnose and treat pathologies with ultraviolet light. This book presents photographs from the tissues we have studied and figures that represent the experimental setups used. Graphs and tables are also included to show the numerical results obtained in the sequential calculations performed |
ISBN,Price | 9783030330552 |
Keyword(s) | 1. Biological and Medical Physics, Biophysics
2. Biological Microscopy
3. BIOLOGICAL PHYSICS
4. Biomedical engineering
5. Biomedical Engineering and Bioengineering
6. Biomedical Engineering/Biotechnology
7. BIOPHYSICS
8. EBOOK
9. EBOOK - SPRINGER
10. MICROSCOPY
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Item Type | eBook |
Multi-Media Links
Please Click here for eBook
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Accession# | |
Call# | Status | Issued To | Return Due On | Physical Location |
I09482 |
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On Shelf |
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5.
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Title | 3rd International Multidisciplinary Microscopy and Microanalysis Congress (InterM) : Proceedings, Oludeniz, Turkey, 19-23 October 2015 |
Author(s) | Oral, Ahmet Yavuz;Bahsi Oral, Zehra Banu |
Publication | Cham, Springer International Publishing, 2017. |
Description | XX, 255 p. 147 illus., 92 illus. in color : online resource |
Abstract Note | The 3rd International Multidisciplinary Microscopy Congress (InterM2015), held from 19 to 23 October 2015, focused on the latest developments concerning applications of microscopy in the biological, physical and chemical sciences at all dimensional scales, advances in instrumentation, techniques in and educational materials on microscopy. These proceedings gather 17 peer-reviewed technical papers submitted by leading academic and research institutions from nine countries and representing some of the most cutting-edge research available |
ISBN,Price | 9783319466019 |
Keyword(s) | 1. Biological and Medical Physics, Biophysics
2. Biological Microscopy
3. BIOLOGICAL PHYSICS
4. BIOPHYSICS
5. Characterization and Evaluation of Materials
6. EBOOK
7. EBOOK - SPRINGER
8. MATERIALS SCIENCE
9. MICROSCOPY
10. SPECTROSCOPY
11. Spectroscopy and Microscopy
12. Spectroscopy/Spectrometry
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Item Type | eBook |
Multi-Media Links
Please Click here for eBook
Circulation Data
Accession# | |
Call# | Status | Issued To | Return Due On | Physical Location |
I09348 |
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On Shelf |
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6.
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Title | Superresolution Optical Microscopy : The Quest for Enhanced Resolution and Contrast |
Author(s) | Masters, Barry R |
Publication | Cham, Springer International Publishing, 2020. |
Description | XXII, 403 p. 50 illus., 31 illus. in color : online resource |
Abstract Note | This book presents a comprehensive and coherent summary of techniques for enhancing the resolution and image contrast provided by far-field optical microscopes. It takes a critical look at the body of knowledge that comprises optical microscopy, compares and contrasts the various instruments, provides a clear discussion of the physical principles that underpin these techniques, and describes advances in science and medicine for which superresolution microscopes are required and are making major contributions. The text fills significant gaps that exist in other works on superresolution imaging, firstly by placing a new emphasis on the specimen, a critical component of the microscope setup, giving equal importance to the enhancement of both resolution and contrast. Secondly, it covers several topics not typically discussed in depth, such as Bessel and Airy beams, the physics of the spiral phase plate, vortex beams and singular optics, photoactivated localization microscopy (PALM), stochastic optical reconstruction microscopy (STORM), structured illumination microscopy (SIM), and light-sheet fluorescence microscopy (LSFM). Several variants of these techniques are critically discussed. Noise, optical aberrations, specimen damage, and artifacts in microscopy are also covered. The importance of validation of superresolution images with electron microscopy is stressed. Additionally, the book includes translations and discussion of seminal papers by Abbe and Helmholtz that proved to be pedagogically relevant as well as historically significant. This book is written for students, researchers, and engineers in the life sciences, medicine, biological engineering, and materials science who plan to work with or already are working with superresolution light microscopes. The volume can serve as a reference for these areas while a selected set of individual chapters can be used as a textbook for a one-semester undergraduate or first-year graduate course on superresolution microscopy. Moreover, the text provides a captivating account of curiosity, skepticism, risk-taking, innovation, and creativity in science and technology. Good scientific practice is emphasized throughout, and the author???s lecture slides on responsible conduct of research are included as an online resource which will be of interest to students, course instructors, and scientists alike |
ISBN,Price | 9783030216917 |
Keyword(s) | 1. Biological Microscopy
2. EBOOK
3. EBOOK - SPRINGER
4. HISTORY
5. HISTORY OF SCIENCE
6. LASERS
7. MICROSCOPY
8. MICROWAVES
9. Microwaves, RF and Optical Engineering
10. OPTICAL ENGINEERING
11. Optics, Lasers, Photonics, Optical Devices
12. PHOTONICS
13. SPECTROSCOPY
14. Spectroscopy and Microscopy
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Item Type | eBook |
Multi-Media Links
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Accession# | |
Call# | Status | Issued To | Return Due On | Physical Location |
I09097 |
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On Shelf |
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7.
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Title | Advanced Computing in Electron Microscopy |
Author(s) | Kirkland, Earl J |
Publication | Cham, Springer International Publishing, 2020. |
Description | XII, 354 p. 146 illus., 8 illus. in color : online resource |
Abstract Note | This updated and revised edition of a classic work provides a summary of methods for numerical computation of high resolution conventional and scanning transmission electron microscope images. At the limits of resolution, image artifacts due to the instrument and the specimen interaction can complicate image interpretation. Image calculations can help the user to interpret and understand high resolution information in recorded electron micrographs. The book contains expanded sections on aberration correction, including a detailed discussion of higher order (multipole) aberrations and their effect on high resolution imaging, new imaging modes such as ABF (annular bright field), and the latest developments in parallel processing using GPUs (graphic processing units), as well as updated references. Beginning and experienced users at the advanced undergraduate or graduate level will find the book to be a unique and essential guide to the theory and methods of computation in electron microscopy |
ISBN,Price | 9783030332600 |
Keyword(s) | 1. Biological Microscopy
2. Characterization and Evaluation of Materials
3. EBOOK
4. EBOOK - SPRINGER
5. Image Processing and Computer Vision
6. MATERIALS SCIENCE
7. MICROSCOPY
8. OPTICAL DATA PROCESSING
9. SPECTROSCOPY
10. Spectroscopy and Microscopy
11. Spectroscopy/Spectrometry
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Item Type | eBook |
Multi-Media Links
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Accession# | |
Call# | Status | Issued To | Return Due On | Physical Location |
I08802 |
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On Shelf |
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8.
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Title | Label-Free Super-Resolution Microscopy |
Author(s) | Astratov, Vasily |
Publication | Cham, Springer International Publishing, 2019. |
Description | XXII, 487 p. 244 illus., 222 illus. in color : online resource |
Abstract Note | This book presents the advances in super-resolution microscopy in physics and biomedical optics for nanoscale imaging. In the last decade, super-resolved fluorescence imaging has opened new horizons in improving the resolution of optical microscopes far beyond the classical diffraction limit, leading to the Nobel Prize in Chemistry in 2014. This book represents the first comprehensive review of a different type of super-resolved microscopy, which does not rely on using fluorescent markers. Such label-free super-resolution microscopy enables potentially even broader applications in life sciences and nanoscale imaging, but is much more challenging and it is based on different physical concepts and approaches. A unique feature of this book is that it combines insights into mechanisms of label-free super-resolution with a vast range of applications from fast imaging of living cells to inorganic nanostructures. This book can be used by researchers in biological and medical physics. Due to its logically organizational structure, it can be also used as a teaching tool in graduate and upper-division undergraduate-level courses devoted to super-resolved microscopy, nanoscale imaging, microscopy instrumentation, and biomedical imaging |
ISBN,Price | 9783030217228 |
Keyword(s) | 1. Biological Microscopy
2. Biomedical engineering
3. Biomedical Engineering and Bioengineering
4. Biomedical Engineering/Biotechnology
5. EBOOK
6. EBOOK - SPRINGER
7. Imaging / Radiology
8. MICROSCOPY
9. Nanoscale science
10. Nanoscale Science and Technology
11. NANOSCIENCE
12. Nanostructures
13. Radiology
14. SPECTROSCOPY
15. Spectroscopy and Microscopy
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Item Type | eBook |
Multi-Media Links
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Accession# | |
Call# | Status | Issued To | Return Due On | Physical Location |
I08679 |
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On Shelf |
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9.
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Title | 2nd International Multidisciplinary Microscopy and Microanalysis Congress : Proceedings of InterM, October 16-19, 2014 |
Author(s) | Polychroniadis, E.K;Oral, Ahmet Yavuz;Ozer, Mehmet |
Publication | Cham, Springer International Publishing, 2015. |
Description | XIX, 262 p. 150 illus., 74 illus. in color : online resource |
Abstract Note | The 2nd International Multidisciplinary Microscopy and Microanalysis Congress & Exhibition (InterM 2014) was held on 16???19 October 2014 in Oludeniz, Fethiye/ Mugla, Turkey. The aim of the congress was to gather scientists from various branches and discuss the latest improvements in the field of microscopy. The focus of the congress has been widened in an "interdisciplinary" manner, so as to allow all scientists working on several related subjects to participate and present their work. These proceedings include 33 peer-reviewed technical papers, submitted by leading academic and research institutions from over 17 countries and representing some of the most cutting-edge research available. The papers were presented at the congress in the following sessions: ?????????????????? Applications of Microscopy in the Physical Sciences ?????????????????? Applications of Microscopy in the Biological Sciences |
ISBN,Price | 9783319169194 |
Keyword(s) | 1. Biological and Medical Physics, Biophysics
2. Biological Microscopy
3. BIOLOGICAL PHYSICS
4. BIOPHYSICS
5. Characterization and Evaluation of Materials
6. EBOOK
7. EBOOK - SPRINGER
8. MATERIALS SCIENCE
9. MICROSCOPY
10. SPECTROSCOPY
11. Spectroscopy and Microscopy
12. Spectroscopy/Spectrometry
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Item Type | eBook |
Multi-Media Links
Please Click here for eBook
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Accession# | |
Call# | Status | Issued To | Return Due On | Physical Location |
I08359 |
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On Shelf |
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10.
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Title | Raman Imaging : Techniques and Applications |
Author(s) | Zoubir, Arnaud |
Publication | Berlin, Heidelberg, Springer Berlin Heidelberg, 2012. |
Description | XIV, 386 p : online resource |
Abstract Note | Raman imaging has long been used to probe the chemical nature of a sample, providing information on molecular orientation, symmetry and structure with sub-micron spatial resolution. Recent technical developments have pushed the limits of micro-Raman microscopy, enabling the acquisition of Raman spectra with unprecedented speed, and opening a pathway to fast chemical imaging for many applications from material science and semiconductors to pharmaceutical drug development and cell biology, and even art and forensic science. The promise of tip-enhanced raman spectroscopy (TERS) and near-field techniques is pushing the envelope even further by breaking the limit of diffraction and enabling nano-Raman microscopy |
ISBN,Price | 9783642282522 |
Keyword(s) | 1. Biological Microscopy
2. EBOOK
3. EBOOK - SPRINGER
4. LASERS
5. MICROSCOPY
6. Optics, Lasers, Photonics, Optical Devices
7. PHOTONICS
8. PHYSICAL CHEMISTRY
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Item Type | eBook |
Multi-Media Links
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Accession# | |
Call# | Status | Issued To | Return Due On | Physical Location |
I08278 |
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On Shelf |
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