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2. Contents
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1. Report Overview
1.1 Overview of Findings
1.2 Structure of the Report
1.3 Global Medical Lasers Systems Market Segmentation
1.4 Why You Should Read This Report
1.5 How This Report Delivers
1.6 Key Questions Answered by This Analytical Report
1.7 Who is This Report For?
1.8 Methodology
1.9 Frequently Asked Questions (FAQ)
1.10 Associated Visiongain Reports
1.11 About Visiongain
2. Introduction to Medical Lasers Systems
2.1 What is a Laser?
2.2 Laser System Construction
2.3 How A Laser System Works?
2.4 Duration of Laser Emission
2.5 Applications of Lasers
2.6 Lasers for Medical Use
2.6.1 Laser Tissue Interaction
2.6.1.1 Thermal Effect
2.6.1.2 Photoablative Effect
2.6.1.3 Electromechanical Effect
2.6.1.4 Photochemical Effect
2.6.2 Lasers in Ophthalmology
2.6.3 Lasers in Dermatology
2.6.4 Lasers in Surgical Use
2.6.5 Optical Coherence Tomography (OCT)
2.7 Types of Laser
2.7.1 Solid-State Lasers
2.7.1.1 Ruby Laser
2.7.1.2 Nd: YAG and KTP Laser
2.7.1.3 Er: YAG Laser and Other Laser with Rare-Earth Elements
2.7.1.4 Alexandrite Laser
2.7.2 Gas Lasers
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2.7.2.1 Helium-Neon Laser
2.7.2.2 Argon Laser
2.7.2.3 CO2 Laser
2.7.2.4 Excimer Laser
2.7.3 Dye Lasers
2.7.4 Diode Lasers
2.8 Government Regulations
2.8.1 The US Approval and Regulation System
2.8.2 The EU Approval and Regulation System
2.9 Market Definition
3. Medical Lasers Systems: World Market 2015-2025
3.1 The Global Medical Lasers Systems Market: Overview
3.2 The Global Medical Lasers Systems Market Forecast 2015-2025
3.3 How Will Segmental Market Shares Change to 2025?
3.4 Medical Tourism Driven by Laser Treatments
3.5 Laser-Assisted Drug Delivery
3.6 Medical Lasers Systems: Drivers and Restraints 2015-2025
4. Medical Lasers Systems Submarket by Application 2015-2025
4.1 Global Ophthalmology Laser Market
4.1.1 Ophthalmology Laser Market Forecast 2015-2025
4.1.2 Leading Products in the Ophthalmology Laser Market
4.1.2.1 MEL 90 Excimer Laser (Carl Zeiss Meditec)
4.1.3 The Future of OCT
4.1.4 Ophthalmology Laser Market: Drivers and Restraints 2015-2025
4.2 Global Dermatology Laser Market
4.2.1 Dermatology Laser Market Forecast 2015-2025
4.2.2 Cosmetic Applications Surge among Men
4.2.3 Dermatology Laser Market: Drivers and Restraints 2015-2025
4.3 Global Cardiology Laser Market
4.3.1 Cardiology Laser Market Forecast 2015-2025
4.3.2 Cardiology Laser Market: Drivers and Restraints 2015-2025
4.4 Global Gynaecology Laser Market
4.4.1 Gynaecology Laser Market Forecast 2015-2025
4.4.2 Gynaecology Laser Market: Drivers and Restraints 2015-2025
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4.5 Global Urology Laser Market
4.5.1 Urology Laser Market Forecast 2015-2025
4.5.2 Leading Products in the Urology Laser Market
4.5.2.1 VersaPulse Holmium Laser (Lumenis)
4.5.2.2 GreenLight XPS Laser System (American Medical Systems)
4.5.3 Urology Laser Market: Drivers and Restraints 2015-2025
4.6 Other Medical Laser Applications Market
4.6.1 Other Medical Laser Applications Market Forecast 2015-2025
5. Medical Lasers Systems Submarket by Type 2015-2025
5.1 Diode Laser Systems
5.1.1 Diode Laser Systems Market Forecast 2015-2025
5.1.2 High-Power Diode Lasers (HPDLs) Replacing Nd:YAG?
5.1.3 Diode Laser Systems Market: Drivers and Restraints 2015-2025
5.2 Solid-State Laser Systems
5.2.1 Solid-State Laser Systems Market Forecast 2015-2025
5.2.2 Solid-State Laser Systems Market: Drivers and Restraints 2015-2025
5.3 Gas Laser Systems
5.3.1 Gas Laser Systems Market Forecast 2015-2025
5.3.2 Gas Laser Systems Market: Drivers and Restraints 2015-2025
5.4 Dye Laser Systems
5.4.1 Dye Laser Systems Market Forecast 2015-2025
5.4.2 Dye Laser Systems Market: Drivers and Restraints 2015-2025
6. Leading National Markets 2015-2025
6.1 World Medical Lasers Systems Market: Regional Forecast 2015-2025
6.1.1 How Will Regional Market Shares Change to 2025?
6.2 US Medical Lasers Systems Market Forecast 2015-2025
6.2.1 US Cracked Down on Laser Device Violating FDC Act
6.3 EU5 Medical Lasers Systems Market 2015-2025
6.3.1 EU5 Medical Lasers Systems Market Forecast 2015-2025
6.3.2 How Will Regional Market Shares Change to 2025?
6.3.3 The German Medical Lasers Systems Market Forecast 2015-2025
6.3.4 The French Medical Lasers Systems Market Forecast 2015-2025
6.3.5 The UK Medical Lasers Systems Market Forecast 2015-2025
6.3.6 The Spanish Medical Lasers Systems Market Forecast 2015-2025
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6.3.7 The Italian Medical Lasers Systems Market Forecast 2015-2025
6.4 Japanese Medical Lasers Systems Market Forecast 2015-2025
6.4.1 New Retinal Laser Treatment Approved in Japan
6.5 Chinese Medical Lasers Systems Market Forecast 2015-2025
6.6 Indian Medical Lasers Systems Market Forecast 2015-2025
6.7 Brazilian Medical Lasers Systems Market Forecast 2015-2025
6.8 Russian Medical Lasers Systems Market Forecast 2015-2025
7. Leading Companies in the Medical Lasers Systems Market
7.1 Lumenis
7.1.1 Lumenis: Technology and Product Portfolio, 2015
7.1.1.1 Surgical Segment
7.1.1.1.1 CO2 Laser System
7.1.1.1.2 Holmium Laser System
7.1.1.2 Aesthetics Segment
7.1.1.3 Ophthalmology Segment
7.1.2 Lumenis: Market Outlook
7.1.2.1 Market Segments
7.1.2.2 APAC Become the Largest Market
7.1.2.3 Product Launch
7.1.3 Lumenis to be Acquired by Chinese Investment Firm
7.2 Syneron-Candela
7.2.1 Syneron-Candela: Product Portfolio, 2015
7.2.2 Syneron-Candela: Market Outlook
7.2.3 Syneron Candela Partnered with AMS to Supply Laser in Urology
7.3 Carl Zeiss Meditec
7.3.1 Carl Zeiss Meditec: Ophthalmic Laser Product Portfolio, 2015
7.3.1.1 VisuMax Femtosecond System
7.3.1.2 MEL 90 Excimer Laser
7.3.1.3 VISULAS Laser Systems
7.3.2 Carl Zeiss Meditec: Market Outlook
7.3.3 Zeiss and AMO Joined Force in the US Cataract Surgery Market
7.4 Topcon
7.4.1 Topcon: Product Portfolio, 2015
7.4.1.1 Optical Coherence Tomography
7.4.1.2 Photocoagulator
7.4.2 Topcon: Market Outlook
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7.4.3 Topcon Introduced OCT Systems with World’s Fastest Scanning Speed
7.5 American Medical Systems
7.5.1 AMS: Product Portfolio, 2015
7.5.1.1 Prostate Health
7.5.1.2 Men’s Health
7.5.1.3 Women’s Health
7.5.2 AMS: Market Outlook
7.5.3 Two Business Segments Acquired by Boston Scientific
7.6 Cynosure
7.6.1 Cynosure: Product Portfolio, 2015
7.6.2 Cynosure: Market Outlook
7.6.3 PicoSure Laser System Involved in Fraudulent Advertising
7.6.4 Cynosure: Acquisitions
7.7 Coherent
7.7.1 Coherent: Product Portfolio, 2015
7.7.1.1 Dermatological Treatment
7.7.1.2 Ophthalmic Treatment
7.7.2 Coherent: Market Outlook
8. Qualitative Analysis of the Medical Lasers Systems Market 2015-2025
8.1 SWOT Analysis of the Medical Lasers Systems Market
8.2 Strengths
8.2.1 Trends toward Home-Use Aesthetic Lasers
8.2.2 Emerging Economies Offer Significant Growth Opportunities
8.2.3 Ageing Population
8.3 Weaknesses
8.3.1 Medical Device Excise Tax in the US
8.3.2 Competition from Other Technologies
8.4 Opportunities
8.4.1 Diode Lasers Help Create Better Laser Systems
8.4.2 Laser in Diagnostics
8.4.3 The Growing Male Aesthetic Market
8.5 Threats
8.5.1 Unqualified Aesthetic Practitioners
8.5.2 LASIK: Is It Safe Enough?
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9. Conclusions
9.1 The World Medical Lasers Systems Market
9.1.1 Current Leading Medical Lasers Systems Segments
9.1.2 Notable Medical Lasers Systems Companies
9.1.3 Leading National Markets
9.1.4 World Medical Lasers Systems Market Forecast 2015-2025
9.2 The Future of the Medical Lasers Systems Market
8. Page 89
Medical Laser Systems Market Forecast:
Therapies, Diagnostics and R&D 2015-2025
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Figure 6.6 EU5 Medical Laser Systems Market: Revenues ($m) and AGR (%), 2014-
2025
6.3.2 How Will Regional Market Shares Change to 2025?
Figures 6.7-6.9 show a comparison of the market shares by country for the EU5 countries in 2014,
2019 and 2025. During the first half of the forecast period, Germany will continue to lead the
European medical laser systems market, commanding 30.2% and 31.7% in 2019 and 2025. The
UK market would have increased its market share from 20.6% in 2014 to 22.6% in 2025. France
will see its market shares decrease slightly from 22.5% in 2014 to 22.4% of the EU5 market in
2019, and down to 20.9% in 2025. Spain and Italy look set to witness a small decline in their EU5
medical laser systems market shares. These markets will slide down from 14.5% and 13.5%
respectively in 2014 to 13.6% and 11.2% in 2025.
0
1
2
3
4
5
6
7
8
9
0
200
400
600
800
1,000
1,200
2014 2015 2016 2017 2018 2019 2020 2021 2022 2023 2024 2025
AGR%
Revenue($m)
Year
EU5 ($m) AGR (%)
Source: visiongain 2015
9. Page 111
Medical Laser Systems Market Forecast:
Therapies, Diagnostics and R&D 2015-2025
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Table 7.3 Lumenis: Aesthetics Laser Product Portfolio 2015
Product Description Spectrum and Power
M22
a modular multi-application platform for the treatment
of over 30 skin conditions and hair removal
515-1200 nm (Universal IPL); 1565 nm
(ResurFX); 1064 nm (MultiSpot Nd:YAG; Q-
Switched Nd:YAG)
AcuPulse
a complete ablative resurfacing workstation, featuring
superior technology for all aesthetic resurfacing needs
10,600 nm (CO2 laser); 40W (power to
tissue); 170W (peak power)
UltraPulse
for both everyday procedures and the thickest and
most complex lesions
10,600 nm (CO2 laser); 60W (power to
tissue); 240W (peak power)
LightSheer DESIRE hair reduction system
805nm (diode laser); 1600/2300/2400W
(peak power)
LightSheer DUET
with vacuum-assist technology; increasing the spot
size to 22 x 35 mm
805nm (diode laser); 1600/2300W (peak
power)
LightSheer INFINITY
provides a highly effective, rapid, safe and
comfortable treatment; also offer a solution for
pigmented and vascular lesions, PFB and wrinkle
reduction.
805/1060nm (diode laser); 1600/2300W
(peak power)
LightSheer ET a portable, stand-alone portable system 800nm (diode laser); 1600W (peak power)
7.1.1.3 Ophthalmology Segment
Lumenis’ ophthalmic business unit is one of the largest manufacturers of laser-based ophthalmic
systems. Lumenis introduced the first laser photocoagulator to ophthalmology in 1970. The
company also marketed the first approved Nd:YAG photodisruptor lasers; developed and
introduced the breakthrough technology of multicolour photocoagulation along with the world’s first
Laser Indirect Ophthalmoscope (LIO); and developed and brought to market the SLT technology
for managing POAG (Primary Open-Angle Glaucoma).The company has installed over 30,000
ophthalmic lasers in more than 75 countries.
Lumenis’ ophthalmic laser systems utilise technologies such as:
• Photocoagulation: diode-pumped solid-state (DPSS) laser absorbed in melanin-
containing cells in the retina, iris or trabecular meshwork; well-established treatment of
several retinal pathologies and some anteriorsegment conditions
• Selective Laser Trabeculoplasty (SLT): Q-Switched Nd:YAG technology, frequency-
doubled (532nm) wavelength laser, emitting at three nanosecond pulse duration; selective
photothermolysis targeting melanin-containing trabecular meshwork cells located at the
irido-corneal angle which leads to reduction in intra-ocular pressure (or IOP); used for
primary open-angle glaucoma
Source: Lumenis 2015, visiongain 2015