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Worldwide Radiology Oncology Surgical Robots Market Shares, Growth, Strategies and Forecasts Research Report 2016 to 2022

(Medical-NewsWire.com, April 08, 2016 ) The 2016 study has 557 pages, 82 tables and figures. Worldwide Radiology Oncology surgical robot markets are poised to achieve significant growth as next generation systems provide a way to improve traditional open surgery and use radiology for cancer surgery. New systems pinpoint the delivery of radiation precisely, eliminating the radiological overdosing that has been such a problem previously, limiting the quantity of radiation that can be delivered.

Radiosurgery robots take cancer surgery far beyond what has been available, promising a cure for cancer. Radiology oncology surgical robots use mechanical mobility and continuous image guidance to remove tumors. The Accuray CyberKnife® robotic system follows the oncology target throughout treatment, intelligently delivering sub-millimeter precision, sparing healthy tissue. A robotic manipulator and a compact, lightweight linear accelerator, can deliver beams from thousands of non-coplanar, isocentric or non-isocentric angles. Treatments have excellent tumor coverage, steep dose gradients, and tight dose conformality.

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The radiation oncology market is growing globally due to a number of factors centered around the aging of the population and the benefits accrued from new technology. The number of new cancer cases diagnosed annually is projected to increase from 14.9 million in 2015 to 20 million by 2025. The increase in new cases is due to a steadily aging population. Both developed and developing countries have aging populations.

Technology advances improve the precision and applicability of radiotherapy and radiosurgery. Expanding uses of radiotherapy and radiosurgery equipment occur because the units are able to treat a broader range of cases. Advances in hardware and software are creating a market for replacing an aging installed base. New designs are able to deliver higher standards of care.

The rise in cancer cases, together with the increase in sophistication of new treatment protocols, have created demand for more automated products. Automation depends on integration of several devices into clinically practical systems. Integrated systems make treatments rapid and cost effective.

Technology advances lead to improvements in patient care. The availability of advanced, automated and efficient clinical tools in radiation therapy has brought more precise forms of radiotherapy treatment (IMRT, IGRT, VMAT, SRS, SBRT, brachytherapy and proton therapy). Technology includes the EDGE™ and Truebeam™, and the Accuray TomoTherapy H Series and CyberKnife M6 platforms that enable treatments that reduce treatment times and increase patient throughput .

International markets are under-equipped to address the growing cancer incidence. Patients in many foreign countries must frequently endure long waits for radiotherapy.

9,000 additional treatment machines will be required by 2020 in developing countries. China, India and Brazil are estimated to require over 3,800, 1,200 and 400 additional machines. Demand in emerging markets, coupled with ever increasing incidences of cancer, represent additional drivers for continued growth.

Radiology oncology surgical robot market driving forces relate to an opportunity to achieve change in medical practice regarding the treatment of cancer. Change would lead to utilization of stereotactic body radiosurgery more regularly as an alternative to surgery or other treatments. Radiosurgery is poised to revolutionize the treatment of cancer by eradicating tumors while not harming surrounding healthy tissue.

The ability to use high doses of radiation to precisely eliminate a tumor while leaving healthy tissue unharmed is compelling. It means that high doses of radiation can be delivered without killing the person, that doses of radiation delivered can be enough to kill the cancer without killing the person, this represents a change in what has been possible previously.

The Varian, Elekta, and Accuray radiology oncology surgical devices offer robust clinical treatment capabilities. Flexibility of the Accuray InCise™ Multileaf Collimator and robotic delivery permit treatment of tumors previously thought untreatable. With radiosurgery and SBRT cancer can be treated efficiently and effectively. The device offers accuracy.

“Existing open brain and abdominal cancer surgery can be replaced in large part during the forecast period by robotic radiological oncology surgery. Radiologic robotic surgical approaches complement existing open surgery techniques, but will replace them as more physicians and surgeons become skilled in manipulating the x-ray devices. Soon, all oncology surgery will be considered in the context of what part of the oncology procedure will be undertaken with at least some aspects of robotic radiologic surgery replacing or complementing open cancer surgery.

The aging US population has supported demand for robotic Radiology Oncology surgery. Since the occurrence of health issues that require medical devices is higher in the elderly population the more astute baby boomers have been looking to understand what surgical alternatives are open to them. . Buoyed by strong demand and sales, industry profit margins have increased considerably during the past five years.

Hospitals are adopting robotic surgical devices to improve their outcomes numbers. Hospitals are measured on outcomes, robots for surgery, when used by a trained physician are improving outcomes significantly. Hundreds of universities worldwide have research programs in robotics and many are awarding degrees in robotics. These “roboticists” are increasingly being hired by Global 2000 organizations to link mobile robots (mobile computers) into existing IT systems.

Robot-assisted surgery gives the surgeon better control over the surgical instruments and a better view of the surgical site. Surgeons no longer have to stand throughout the surgery and do not tire as quickly. Hand tremors are filtered out by the robot’s computer software. The surgical robot can continuously be used by rotating surgery teams.

Radiology Oncology surgical robot device markets at $4 billion in 2015 are anticipated to reach $7.3 billion by 2022 as next generation devices, systems, and instruments are introduced to manage cancer surgery through radiation excision that eliminates open cutting in the body. Patients tolerate the surgery well, walking out of the hospital after the procedure no longer bothered by healing or infection from an incision.

The complete report provides a comprehensive analysis including procedure numbers, units sold, market value, forecasts, as well as a detailed competitive market shares and analysis of major players’ success, challenges, and strategies in each segment and sub-segment. The reports cover markets for Radiology Oncology robotic surgery medical specialties and sub-specialties.

Companies Profiled

Market Leaders

Varian
Elekta
Accuray

Market Participants

Best Theratronics, Ltd
Brainlab AG
Mitsubishi Heavy Industries
ViewRay

Key Topics

Radiology Oncology Surgical Robotics
Radiology Medical Devices
Oncology Healthcare Robotics
Cyber Knife Cutting Enabling Technology
Robotic-Assisted Minimally Invasive Surgery
Robotic Radiology Surgical System
Radiology Robotic Surgery
Robotic Surgery Equipment
Surgical Robot Applications
Next Generation Robotic Surgery
Flexible Robot Platform
Minimally Invasive Surgery
MIS

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Table of Contents

Radiology Oncology Surgical Robot Executive Summary 20
Radiology Oncology Surgical Robot Market Driving Forces 20
Surgical Radiology Robotics Market Driving Forces 23
Radiology Surgical Robot Key Procedures As Elements Of Strategy 27
Radiosurgery As Stereotactic Radiotherapy 28
Radiology Oncology Surgical Robots Market Share Analysis 29
Radiology Surgical Robots Market Forecasts 31

1. Radiology Surgical Robot Market Description and Market Dynamics 35
1.1 Radiotherapy, Radiation Therapy, Radiosurgery, And Brachytherapy Market Description 35
1.1.1 IMRT 36
1.1.2 VMAT 37
1.1.3 IGRT 37
1.1.4 SRS and SBRT 38
1.1.5 Brachytherapy 38
1.1.6 Proton Therapy 39
1.2 Current Radiation Therapy Limitations 40
1.3 Radiology Robotic Surgical Clinical Facilities and Clinical Diagnosis 42
1.3.1 Cancer Robotic Surgery Learning Curves 44
1.3.2 Robotic Radiological Surgery Equipment 44
1.3.3 Medicare and Medicaid Impact 46
1.3.4 Medical Robotic Surgery by Segment 46
1.3.5 Robotic Cancer Surgery 46
1.3.6 Cancer 47
1.4 Brain Tumors 48
1.4.1 Causes of Brain Tumor 49
1.4.2 Tumor Grading 49
1.4.3 Types of Treatment 50
1.4.4 Biopsies 51
1.4.5 U.S. Markets For Diagnostic Oncology-Related X-Ray-Based Imaging Products 51
2D X-Ray Systems Market Driving Forces 53

2. Radiology Oncology Surgical Robot Market Shares and Market Forecasts 55
2.1 Radiology Oncology Surgical Robot Market Driving Forces 55
2.1.1 Surgical Radiology Robotics Market Driving Forces 58
2.1.2 Radiology Surgical Robot Key Procedures As Elements Of Strategy 62
2.1.3 Radiosurgery Is Stereotactic Radiotherapy 63
2.2 Radiology Oncology Surgical Robots Market Share Analysis 64
2.2.1 Accuray 67
2.2.2 Accuray Clinical Studies 68
2.2.3 Accuray Goal 69
2.2.4 Accuray Revenue 71
2.2.5 Varian 75
2.2.6 Elekta 77
2.2.7 Brainlab 80
2.2.8 Radiology Surgical Robots Market Unit Analysis 81
2.3 Radiology Surgical Robots Market Forecasts 82
2.3.1 Advanced Surgical Robotic Radiation Therapy Systems 86
2.3.2 U.S. Markets For Diagnostic Oncology-Related X-Ray-Based Imaging Products 87
2.4 Cancer Incidence and Radiology Surgery Number of Procedures 88
2.5 Radiology Surgical Robots Regional Analysis 93
2.5.1 US Radiation Oncology Market 94
2.5.2 European Radiation Oncology Market 95
2.5.3 Asia Pacific Market Radiation Oncology Market 95
2.5.4 Accuray in China 96
2.5.5 Advantages of the Accuray Cyberknife treatment in China 99
2.5.6 GE Moves X-Ray Base to China to Tap Growth 100
2.5.7 Japanese Regulatory Approval for Accuray CyberKnife Robotic Full-body Radiosurgery System 101
2.5.8 Japan X-ray Systems Market 101
2.5.9 Philips Expands Global Reach Of X-Ray Solutions 101
2.5.10 Reimbursement Challenges 103

3. Radiology Surgical Robots Product Descriptions 105
3.1 Accuray CyberKnife M6 Series 105
3.1.1 Accuray CyberKnife M6 FIM System 111
3.1.2 Accuray CyberKnife® M6™ System 115
3.1.3 Accuray / CyberKnife VSI System 117
3.1.4 Accuray / TomoTherapy System 120
3.1.5 Accuray Clinical Studies 124
3.1.6 Accuray TomoTherapy® System Clinical Studies 126
3.1.7 Accuray CyberKnife® System Clinical Study 126
3.1.8 Accuray TomoTherapy System Clinical Study 126
3.1.9 Class A User Licenses for Accuray Products Awarded to 16 Hospitals in China 127
3.1.10 Accuray “Open Systems” Software Benefits 128
3.2 Elekta 129
3.2.1 Elekta Gamma Knife® Surgery 132
3.3 Varian 137
3.3.1 Varian Image Guided Radiation Therapy, Cone-Beam CT (CBCT 140
3.3.2 Varian Trilogy 140
3.3.3 Varian Edge™ Radiosurgery Suite 142
3.3.4 Varian Oncology Systems 144
3.4 ViewRay 147

4. Radiology Surgical Robots Technology and Research151
4.1 Accuray Radiology to Treat Head Cancer And Spinal Cancer 151
4.1.1 Fiducial Markers Implantation 151
4.1.2 Molding Of A Plastic Body Cradle 151
4.1.3 Treatment Planning 152
4.1.4 Programming of the Accuray Cyberknife System 152
4.1.5 Treatment Procedure 152
4.1.6 Postoperative Supervision 153
4.2 Varian Medical TrueBeam® Systems Advanced Platform 153
4.2.1 Potential of High Definition Radiotherapy 154
4.3 C-Arm Surgical X-Rays 156
4.4 X-Ray Digital Workflow 157
4.5 Stereotactic Radiosurgery 160
4.5.1 Image-Guided Stereotactic Radiosurgery 160
4.5.2 Image-Guided Stereotactic Radiosurgery Safety 160
4.6 Siemens Ysio Max (Advances in X-Ray) 161
4.7 MD Anderson Gamma Knife Radiosurgery 162
4.7.1 MD Anderson Proton Therapy Center 163
4.8 Partners Healthcare Massachusetts General Hospital Radiation Cancer Treatment 164
4.8.1 Partners Healthcare / Dana Farber 164
4.8.2 Three-Dimensional Conformal Radiation Therapy (3D-CRT) 165
4.8.3 Image Guided Radiation Therapy (IGRT) 166
4.8.4 Intensity Modulated Radiation Therapy (IMRT) 166
4.8.5 RapidArc™ Volumetric Modulated Radiotherapy 166
4.8.6 Total Body Irradiation (TBI) 167
4.8.7 Accelerated Whole Breast Radiation Therapy 167
4.8.8 Stereotactic Radiosurgery (SRS) 167
4.8.9 High Dose Rate (HDR) Brachytherapy 168
4.8.10 Robotic Transrectal Ultrasound (TRUS) Guided Radiation Therapy 168
4.9 Memorial Sloan Kettering Radiation Cancer Treatment 169
4.9.1 Memorial Sloan Kettering IMRT & IGRT 169
4.9.2 Memorial Sloan Kettering Stereotactic Radiation Therapy 170
4.9.3 Memorial Sloan Kettering Whole-Brain Radiation Therapy Stereotactic Radiosurgery, SRS 171
4.10 U.S. Regulations 172
4.10.1 Foreign Regulations 173

5. Radiology Surgical Robots Company Descriptions 175
5.1 Accuray 175
5.1.1 Accuray Revenue for Second Quarter of Fiscal Year 2015 176
5.1.2 Accuray Revenue Three Months Ended September 30, 2015 177
5.1.3 Accuray Revenue 183
5.1.4 Accuray Non-Invasively Delivers High Doses Of Radiation To Tumors With Extreme Accuracy And Intense Precision 186
5.1.5 Accuray Products 187
5.1.6 Accuray CyberKnife System 187
5.1.7 Accuray Strategy 189
5.1.8 Accuray International Presence 192
5.1.9 Accuray Competition 193
5.1.10 New Data Validates CyberKnife SBRT for Prostate Cancer Treatment 195
5.1.11 Accuray Recall in 2013 196
5.2 Best Theratronics, Ltd 197
5.3 Brainlab AG 200
5.3.1 Brainlab AG Revenue 202
5.3.2 Brainlab 203
5.4 Elekta 204
5.4.1 Elekta Gamma Radio Surgery System 205
5.4.2 Elekta - Interim report May – October 2015/16 206
5.4.3 Elekta Transformation program on track 207
5.5 Mitsubishi Heavy Industries 210
5.5.1 Mitsubishi Heavy Industries Vero Sterotactic Body Radiotherapy 210
5.6 Varian Medical Systems 212
5.6.1 Varian Oncology Systems Business Segment 212
5.6.2 Varian Revenue 213
5.7 ViewRay 216
5.8 Accuray Locations 220
5.9 2D X-ray Equipment Leading Vendors 546

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