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Titlebook: Biomedical Optics in Otorhinolaryngology; Head and Neck Surger Brian J.-F. Wong,Justus Ilgner Book 2016 Springer Science+Business Media New

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Practical Endoscopy for Laser Interventions of the Upper Aerodigestive Tractssion of contemporary office-based and surgical endoscopic practices. Knowledge of the fundamentals of endoscopy both in the office and the operating room is critical to understanding our current capabilities for visualizing and manipulating structures within the upper aerodigestive tract.
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Laser Treatment for Vascular Malformations and Hemangiomas in the Head and Neck Lasers used include the PDL, Nd:YAG, Alexandrite, and CO. lasers. Significant complications are rare, and good patient outcomes/satisfaction support the continued use of laser therapy for these lesions. Further research in this area is imperative to continue progress and innovation in the field.
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Cartilage Reshaping of the Nosestable modified nasal septum configurations without damage to the cartilage, perichondrium, and mucosa. Most of the patients operated shown a stable septum straightening and considerable improvement of nose breathing. Clinical results with 5 years of follow up have demonstrated high effectiveness, reliability, and safety of the laser technique.
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S. Scott Collis,Alexander Dobrinskyrinthine and cochlear function while restoring sound transmission. This chapter deals with the history of laser use, laser systems, and instrumentation, while providing a perspective for future developments in microscale bone ablation.
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A. V. Dovgal,V. Ya. Levchenko,V. A. Timopeevhe stone and may prevent the soft tissue from laser impact. For Ho:YAG laser-assisted lithotripsy of salivary stones low energy per pulse and repetition rates, e.g., 0.5 J/pulse and 3 Hz, could be recommended. Thus, side effects to soft tissue can be reduced.
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https://doi.org/10.1007/978-3-642-82792-1neural stimulation (INS). Using INS for neural prostheses has its appeal. Many steps are required between technological conception and maturity of an INS-based prosthesis. The steps include biological safety, compatibility, and the engineering of a practicable device.
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