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Wednesday, April 22, 2020 | History

1 edition of Laser-Tissue Interactions found in the catalog.

Laser-Tissue Interactions

Fundamentals and Applications

by Markolf H. Niemz

  • 75 Want to read
  • 31 Currently reading

Published by Springer Berlin Heidelberg in Berlin, Heidelberg .
Written in English

    Subjects:
  • Physical organic chemistry,
  • Engineering,
  • Physics

  • About the Edition

    Laser--Tissue Interactions provides a thorough description of the fundamentals and applications in this field. Basic conceptions such as optical and thermal properties of tissue, various types of tissue ablation, and optical breakdown with related effects are treated in detail. Special attention is given to mathematical tools (Monte Carlo simulations, Kubelka--Munk theory) and approved techniques (photodynamic therapy, laser-induced interstitial thermotherapy). The part on applications reviews clinically relevant methods in modern medicine according to the latest references. The last chapter includes today"s standards of laser safety, with a careful selection of essential guidelines published by the Laser Institute of America. Numerous research photographs, illustrations, tables, and comprehensive explanations turn this book into a useful guide for graduate students and scientists.

    Edition Notes

    Statementby Markolf H. Niemz
    Classifications
    LC ClassificationsQC350-467, TA1501-1820, QC392-449.5, TA1750-1750.22
    The Physical Object
    Format[electronic resource] :
    Pagination1 online resource (xii, 299 p.)
    Number of Pages299
    ID Numbers
    Open LibraryOL27069215M
    ISBN 103662031957, 3662031930
    ISBN 109783662031957, 9783662031933
    OCLC/WorldCa851369939


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Basic concepts such as the optical and thermal properties of tissue, the various types of tissue ablation, and optical breakdown and its related effects are treated in :// APPENDIX Laser–Tissue Interactions.

The original concept of a laser was first proposed by Einstein 1. in in a treatise THAT proposed stimulated emission of radiation. However, the first laser was not constructed until by Gordon et al., 2.

which was a microwave laser called a maser. Schawlow and Townes 3. later (in ) proposed the calculations necessary for visible lasers, and Laser-Tissue interaction. Like normal light, laser light can interact with tissue in four basic ways 1 as follows: (1) Reflection: some light reflects back off the surface, its energy neither penetrating nor interacting with :// Lasers in Medical Diagnosis and Therapy provides an overview on medical lasers and laser systems as well as laser applications in medical diagnosis and therapy.

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The total number of reported acci-dents for the period to isand this number is Laser Safety Introduction Laser Hazards Eye Hazards Skin Hazards Associated Hazards from High Power Lasers Laser Safety Standards and Hazard Classification Viewing Laser Radiation Eye Protection Laser Calculations and Measurements --A Appendix --A.1 2 days ago  Clinical use of laser-tissue interactions Abstract: The five interaction mechanisms associated with laser treatment of patients are described.

They are the photothermal, photochemical, photoacoustical, photoablative, and photobiostimulation mechanisms. The estimated light penetration depth as a function of wavelength for bloodless, unpigmented   This book provides a thorough description of the fundamentals and applications in this field.

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Special attention is given to mathematical tools (Monte Carlo simulations, the Kubelka-Munk theory etc This essential work provides a thorough description of the fundamentals and applications in the field of laser-tissue interactions.

Concepts such as the optical and thermal properties of tissue, and optical breakdown and its related effects, are treated in :// Laser-Tissue Interactions by Markolf H. Niemz,available at Book Depository with free delivery :// Laser - Tissue Interactions, Therapeutic Applications, and Photodynamic Therapy, Munich, June is a platform for academics to share research ://   Temperature distribution in selective laser-tissue interaction Jared J.

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