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3.4.2 RESTRAINTS
3.4.2.1 Pricing and reimbursement issues
3.4.2.2 Increasing regulatory agencies pressures
3.4.3 OPPORTUNITIES & CHALLENGES
3.4.3.1 Emerging markets
3.4.3.2 Technical and educational challenges
3.5 BURNING ISSUES
3.5.1 INCREASING RESEARCH IN CARDIAC ABLATION
3.6 MARKET SHARE ANALYSIS
4 ABLATION MARKET, BY TECHNOLOGY4.1 INTRODUCTION4.2 THERMAL4.2.1 ELECTRICAL4.2.2 RADIATION4.2.3 RADIOFREQUENCY4.2.4 LIGHT4.2.5 ULTRASOUND4.2.6 MICROWAVE4.2.7 HYDROTHERMAL4.3 NON-THERMAL4.3.1 CRYOTHERAPY4.3.2 HYDROMECHANICAL
5 ABLATION TECHNOLOGY MARKET, BY PRODUCTS
5.1 ELECTRICAL
5.1.1 ELECTRICAL ABLATORS
5.1.1.1 Argon Plasma/Beam coagulators
5.1.1.2 Irreversible electroporation
5.1.2 ELECTRONIC BRACHYTHERAPY
5.2 RADIATION
5.2.1 BRACHYTHERAPY
5.2.1.1 High-Dose-Rate (HDR) brachytherapy
5.2.1.2 Pulsed-Dose-Rate brachytherapy
5.2.1.3 Permanent seed brachytherapy or Low-Dose-Rate (LDR) brachytherapy
5.2.2 STEREOTACTIC RADIOSURGERY & STEREOTACTIC RADIOTHERAPY
5.2.3 IMAGE GUIDED RADIATION THERAPY (IGRT)
5.2.4 INTENSITY-MODULATED RADIATION THERAPY (IMRT)
5.2.5 STEREOTACTIC BODY RADIATION THERAPY(SBRT)
5.2.6 PROTON BEAM THERAPY
5.3 RADIOFREQUENCY
5.3.1 TEMPERATURE CONTROLLED RADIOFREQUENCY ABLATION DEVICES
5.3.2 FLUID COOLED RF ABLATION
5.3.3 THE ROBOTIC CATHETER MANIPULATION SYSTEM
5.4 LIGHT/ LASER
5.4.1 COLD LASERS
5.4.2 EXCIMER LASERS
5.5 ULTRASOUND
5.5.1 HIGH INTENSITY FOCUSED ULTRASOUND (HIFU)
5.5.2 MAGNETIC RESONANCE GUIDED ULTRASOUND MRGFUS
5.5.3 ULTRASONIC SURGICAL SYSTEMS
5.5.4 EXTRACORPOREAL SHOCKWAVE LITHOTRIPSY
5.6 MICROWAVE ABLATION
5.6.1 MICROWAVE THERMOTHERAPY
5.7 HYDROTHERMAL ABLATION
5.7.1 ENDOMETRIAL HYDROTHERMAL BALLOON AB
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