Medical Lasers, Science and Clinical Practice
Medical physicists will learn how clinicians use lasers and clinicians will learn in detail the mechanism of production of coherent light and the interaction of differing wavelengths of light with body tissues.
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THE TECHNOLOGY OF SURGICAL LASERS
THE PRODUCTION OF SURGICAL LASER LESIONS
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ablation absorption anaesthetic angle argon laser artery atoms bladder bleeding bronchoscope cancer carbon dioxide laser carcinoma cavity cells cervical choroid clinical CO2 laser coagulation colposcopy corneal coronary damage density described diameter diffuse discharge disease dose dye laser effects emission endoscopic equation excimer lasers excision exposure fibre optic figure fluorescence frequency Gynecol haemorrhage heat intrabeam irradiance krypton laser laser beam laser level laser light Laser Protection laser radiation laser safety laser surgery laser treatment Lasers Surg lasing lens lesions linewidth malignant microscope mirror mode Nd-YAG laser neodymium normal Obstet oedema operating Ophthalmol ophthalmology output patients performed photocoagulation photon photoradiation therapy Phys pigment epithelium porphyrin port wine stains procedures pulse pumping Q-switched removal reported resection retina significant skin spot stenosis surgical lasers technique temperature thermal tion tissue trabecular meshwork transition treated tube tumour vaporisation vascular vessels wavelengths yag laser