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Saturday, August 1, 2020 | History

3 edition of Laser-tissue interactions found in the catalog.

Laser-tissue interactions

Markolf H. Niemz

Laser-tissue interactions

fundamentals and applications

by Markolf H. Niemz

  • 391 Want to read
  • 39 Currently reading

Published by Springer in Berlin, New York .
Written in English

    Subjects:
  • Lasers in medicine.,
  • Lasers -- Physiological effect.,
  • Lasers -- Therapeutic use.,
  • Laser Surgery.,
  • Lasers.,
  • Photobiology.,
  • Safety.

  • Edition Notes

    Includes bibliographical references (p. [267]-290) and index.

    StatementMarkolf H. Niemz ; with a foreword by Martin van Gemert.
    Classifications
    LC ClassificationsR857.L37 N54 1996
    The Physical Object
    Paginationxii, 297 p. :
    Number of Pages297
    ID Numbers
    Open LibraryOL963900M
    ISBN 103540603638
    LC Control Number96000118

      This book provides a thorough description of the fundamentals and applications in this field. 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 detail. Special attention is given  › Shop › Books. "Laser-Tissue Interactions” provides a thorough description of the fundamentals and applications in this field. 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 detail. 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 ://


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Laser-Tissue Interactions by Prof. Markolf H. Niemz (Heidelberg University) has become the standard reference book in this fast growing field. It addresses basic concepts such as optical and thermal tissue properties, hard and soft tissue ablation, and photobiomodulation. Clinical applications are reviewed according to the latest :// Laser–Tissue Interactions by has become a standard reference and textbook in this rapidly growing field.

It provides a thorough description of the fundamentals and applications of modern laser medicine. Basic concepts, such as optical and thermal properties of tissue, the various types of tissue ablation, and optical breakdown and its related effects, are treated in  › Physics › Biophysics & Biological Physics.

Understanding laser-tissue interactions and using the laser in an optimal way are the most important messages in this chapter. The wavelength-dependent penetration depth of laser light into tissue Tissue optics and laser–tissue interactions—the bottom line Biological tissue is a complex and optically inhomogeneous medium.

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Lasers are used every day to remove unwanted tattoos, make incisions during surgeries, and treat aches and pains. Each of these applications works because of one of three types of laser-tissue interactions: photothermal, photomechanical, or photochemical.

    Lasers in dentistry. Introduction, history of lasers and laser light production. Laser-tissue interaction. Low-level laser use in dentistry.

Lasers and soft tissue: 'loose' soft tissue   The medical laser applications are defined by the type of interaction between laser light and tissues.

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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.

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