
Surgical Robot Procedures Market Size, Share & Trends Analysis Report By Application (Urology, General Surgery, Gynecology), By Procedure Type (Endoscopic Robotic Procedures), By Procedure Complexity, By End-use, By Region, And Segment Forecasts, 2025 - 2
Description
Surgical Robot Procedures Market Summary
The global surgical robot procedures market size was estimated at USD 12.11 billion in 2024 and is projected to reach USD 50.63 billion by 2033, growing at a CAGR of 17.32% from 2025 to 2033.The convergence of advanced technology integration, broader procedural applicability, and rising institutional investment is driving the adoption of surgical robotics.
Hospitals are incorporating robotic systems across a wider range of specialties and procedure types, supported by growing clinical validation and operational efficiency. These developments are contributing to the standardization of surgical robotics within routine hospital workflows.In April 2024, Ohio State completed its first surgeries using the da Vinci 5 system, the latest-gen surgical robot with advanced tactile feedback and precision.
Rising demand for minimally invasive surgeries continues to be a primary catalyst for surgical robot adoption. Patients and providers alike are prioritizing procedures that offer reduced trauma, faster recovery, and fewer complications. Robotic systems enhance the precision and control required for these techniques, enabling surgeons to perform complex maneuvers through small incisions. In April 2025, Johnson & Johnson MedTech completed the first clinical cases using its OTTAVA robotic system for Roux-en-Y gastric bypass at Memorial Hermann-Texas Medical Center. The trial focuses on evaluating minimally invasive performance across general surgeries. Data will support a De Novo FDA submission for multi-procedure use.
Technological advancement is rapidly evolving the capabilities and appeal of surgical robotics. Integrations such as AI-assisted navigation, improved imaging, and ergonomic consoles are transforming surgical robots into fully integrated digital platforms. Modular architectures and specialty-specific toolkits have made systems more adaptable, while innovations in automation and analytics are improving intraoperative efficiency. In January 2025, Queen Elizabeth Hospital in King's Lynn, UK, introduced the USD 1.3M Versius surgical robot to treat cancer patients. Initially used for colorectal procedures, the system enables longer, complex surgeries with greater precision and comfort. The robot is expected to treat 100 patients in its first year and expand into urology and gynecology.
The expansion of procedural indications across multiple specialties is significantly accelerating system utilization. Robotic surgery, once limited to urology and gynecology, is now being deployed in general, bariatric, colorectal, orthopedic, and cardiothoracic procedures. As clinical evidence supports efficacy and payers broaden reimbursement, hospitals are leveraging robotic platforms across diverse departments. In June 2025, a surgeon in Orlando remotely performed a prostatectomy on a patient in Angola using a robotic system, marking the first FDA-approved human trial of transcontinental telesurgery. Conducted over 7,000 miles via fiber optic cables, the procedure showcased safe, real-time precision.
Global Surgical Robot Procedures Market Report Segmentation
This report forecasts revenue growth at global, regional, and country levels and provides an analysis of the latest trends in each of the sub-segments from 2021 to 2033. For this study, Grand View Research has segmented the global surgical robot procedures market report based on application, procedure type, procedure complexity, end-use, and region:
The global surgical robot procedures market size was estimated at USD 12.11 billion in 2024 and is projected to reach USD 50.63 billion by 2033, growing at a CAGR of 17.32% from 2025 to 2033.The convergence of advanced technology integration, broader procedural applicability, and rising institutional investment is driving the adoption of surgical robotics.
Hospitals are incorporating robotic systems across a wider range of specialties and procedure types, supported by growing clinical validation and operational efficiency. These developments are contributing to the standardization of surgical robotics within routine hospital workflows.In April 2024, Ohio State completed its first surgeries using the da Vinci 5 system, the latest-gen surgical robot with advanced tactile feedback and precision.
Rising demand for minimally invasive surgeries continues to be a primary catalyst for surgical robot adoption. Patients and providers alike are prioritizing procedures that offer reduced trauma, faster recovery, and fewer complications. Robotic systems enhance the precision and control required for these techniques, enabling surgeons to perform complex maneuvers through small incisions. In April 2025, Johnson & Johnson MedTech completed the first clinical cases using its OTTAVA robotic system for Roux-en-Y gastric bypass at Memorial Hermann-Texas Medical Center. The trial focuses on evaluating minimally invasive performance across general surgeries. Data will support a De Novo FDA submission for multi-procedure use.
Technological advancement is rapidly evolving the capabilities and appeal of surgical robotics. Integrations such as AI-assisted navigation, improved imaging, and ergonomic consoles are transforming surgical robots into fully integrated digital platforms. Modular architectures and specialty-specific toolkits have made systems more adaptable, while innovations in automation and analytics are improving intraoperative efficiency. In January 2025, Queen Elizabeth Hospital in King's Lynn, UK, introduced the USD 1.3M Versius surgical robot to treat cancer patients. Initially used for colorectal procedures, the system enables longer, complex surgeries with greater precision and comfort. The robot is expected to treat 100 patients in its first year and expand into urology and gynecology.
The expansion of procedural indications across multiple specialties is significantly accelerating system utilization. Robotic surgery, once limited to urology and gynecology, is now being deployed in general, bariatric, colorectal, orthopedic, and cardiothoracic procedures. As clinical evidence supports efficacy and payers broaden reimbursement, hospitals are leveraging robotic platforms across diverse departments. In June 2025, a surgeon in Orlando remotely performed a prostatectomy on a patient in Angola using a robotic system, marking the first FDA-approved human trial of transcontinental telesurgery. Conducted over 7,000 miles via fiber optic cables, the procedure showcased safe, real-time precision.
Global Surgical Robot Procedures Market Report Segmentation
This report forecasts revenue growth at global, regional, and country levels and provides an analysis of the latest trends in each of the sub-segments from 2021 to 2033. For this study, Grand View Research has segmented the global surgical robot procedures market report based on application, procedure type, procedure complexity, end-use, and region:
- Application Outlook (Revenue, USD Million, 2021 - 2033)
- Urology
- General Surgery
- Gynecology
- Orthopedics
- Cardiothoracic
- Neurosurgery
- ENT (Otolaryngology)
- Bariatric / Metabolic
- Other specialties
- Procedure Type Outlook (Revenue, USD Million, 2021 - 2033)
- Minimally-invasive Laparoscopic Robotic-Assisted
- Percutaneous / Catheter-based Robotic Procedures
- Endoscopic Robotic Procedures
- Open-assisted (Hybrid Open Procedures)
- Others
- Procedure Complexity Outlook (Revenue, USD Million, 2021 - 2033)
- High Complexity (Oncologic, Cardiac, Neuro)
- Medium Complexity (Advanced Laparoscopy, Joint Replacements)
- Low Complexity (Simple Laparoscopic Cases)
- End-use Outlook (Revenue, USD Million, 2021 - 2033)
- Large Hospital Systems (Multi-facility)
- Standalone Hospitals / Private Hospitals
- Specialty Clinics / ASCs
- Others
- Regional Outlook (Revenue, USD Million, 2021 - 2033)
- North America
- U.S.
- Canada
- Mexico
- Europe
- UK
- Germany
- France
- Italy
- Spain
- Denmark
- Sweden
- Norway
- Asia Pacific
- Japan
- China
- India
- Australia
- South Korea
- Thailand
- Latin America
- Brazil
- Argentina
- Middle East & Africa
- South Africa
- Saudi Arabia
- UAE
- Kuwait
Table of Contents
120 Pages
- Chapter 1. Methodology and Scope
- 1.1. Market Segmentation & Scope
- 1.1.1. Segment scope
- 1.1.2. Estimates and forecast timeline
- 1.2. Research Methodology
- 1.3. Information Procurement
- 1.3.1. Purchased database
- 1.3.2. GVR’s internal database
- 1.3.3. Secondary sources
- 1.3.4. Primary research
- 1.3.5. Details of primary research
- 1.4. Information or Data Analysis
- 1.4.1. Data analysis models
- 1.5. Market Formulation & Validation
- 1.6. Model Details
- 1.7. Research Assumptions
- 1.8. List of Secondary Sources
- 1.9. List of Primary Sources
- Chapter 2. Executive Summary
- 2.1. Market Outlook
- 2.2. Segment Outlook
- 2.2.1. Application outlook
- 2.2.2. Procedure type outlook
- 2.2.3. Procedure complexity outlook
- 2.2.4. End-use outlook
- 2.3. Competitive Insights
- Chapter 3. Global Surgical Robot Procedures Market Variables, Trends & Scope
- 3.1. Market Lineage Outlook
- 3.1.1. Parent market outlook
- 3.1.2. Ancillary market outlook
- 3.2. Market Dynamics
- 3.2.1. Market driver analysis
- 3.2.2. Market restraint analysis
- 3.3. Global Surgical Robot Procedures: Market Analysis Tools
- 3.3.1. Industry Analysis - Porter’s
- 3.3.2. PESTLE Analysis
- 3.4. Technology Landscape
- 3.5. Case Study Analysis
- Chapter 4. Global Surgical Robot Procedures Market Segment Analysis, By Application, 2021 - 2033 (USD Million)
- 4.1. Definition and Scope
- 4.2. Application Market Share Analysis, 2024 & 2033
- 4.3. Segment Dashboard
- 4.4. Global Surgical Robot Procedures Market, by Application, 2021 to 2033
- 4.5. Urology
- 4.5.1. Urology market estimates and forecasts, 2021 to 2033 (USD Million)
- 4.6. General Surgery
- 4.6.1. General surgery market estimates and forecasts, 2021 to 2033 (USD Million)
- 4.7. Gynecology
- 4.7.1. Gynecology market estimates and forecasts, 2021 to 2033 (USD Million)
- 4.8. Orthopedics
- 4.8.1. Orthopedics market estimates and forecasts, 2021 to 2033 (USD Million)
- 4.9. Cardiothoracic
- 4.9.1. Cardiothoracic market estimates and forecasts, 2021 to 2033 (USD Million)
- 4.10. Neurosurgery
- 4.10.1. Neurosurgery market estimates and forecasts, 2021 to 2033 (USD Million)
- 4.11. ENT (Otolaryngology)
- 4.11.1. ENT (Otolaryngology) market estimates and forecasts, 2021 to 2033 (USD Million)
- 4.12. Bariatric / Metabolic
- 4.12.1. Bariatric / metabolic market estimates and forecasts, 2021 to 2033 (USD Million)
- 4.13. Others
- 4.13.1. Others market estimates and forecasts, 2021 to 2033 (USD Million)
- Chapter 5. Global Surgical Robot Procedures Market Segment Analysis, By Procedure Type, 2021 - 2033 (USD Million)
- 5.1. Definition and Scope
- 5.2. Procedure Type Market Share Analysis, 2024 & 2033
- 5.3. Segment Dashboard
- 5.4. Global Surgical Robot Procedures Market, by Procedure Type, 2021 to 2033
- 5.5. Minimally-invasive laparoscopic robotic-assisted
- 5.5.1. Minimally-invasive laparoscopic robotic-assisted market estimates and forecasts, 2021 to 2033 (USD Million)
- 5.6. Percutaneous / catheter-based robotic procedures
- 5.6.1. Percutaneous / catheter-based robotic procedures market estimates and forecasts, 2021 to 2033 (USD Million)
- 5.7. Endoscopic robotic procedures
- 5.7.1. Endoscopic robotic procedures market estimates and forecasts, 2021 to 2033 (USD Million)
- 5.8. Open-assisted (hybrid open procedures)
- 5.8.1. Open-assisted (hybrid open procedures) market estimates and forecasts, 2021 to 2033 (USD Million)
- 5.9. Others
- 5.9.1. Others market estimates and forecasts, 2021 to 2033 (USD Million)
- Chapter 6. Global Surgical Robot Procedures Market Segment Analysis, By Procedure Complexity, 2021 - 2033 (USD Million)
- 6.1. Definition and Scope
- 6.2. Procedure Complexity Market Share Analysis, 2024 & 2033
- 6.3. Segment Dashboard
- 6.4. Global Surgical Robot Procedures Market, by Procedure Complexity, 2021 to 2033
- 6.5. High Complexity
- 6.5.1. High complexity market estimates and forecasts, 2021 to 2033 (USD Million)
- 6.6. Medium Complexity
- 6.6.1. Medium complexity market estimates and forecasts, 2021 to 2033 (USD Million)
- 6.7. Low Complexity
- 6.7.1. Low complexity market estimates and forecasts, 2021 to 2033 (USD Million)
- Chapter 7. Global Surgical Robot Procedures Market Segment Analysis, By End Use, 2021 - 2033 (USD Million)
- 7.1. Definition and Scope
- 7.2. End Use Market Share Analysis, 2024 & 2033
- 7.3. Segment Dashboard
- 7.4. Global Surgical Robot Procedures Market, by End Use, 2021 to 2033
- 7.5. Large hospital systems (multi-facility)
- 7.5.1. Large hospital systems (multi-facility) market estimates and forecasts, 2021 to 2033 (USD Million)
- 7.6. Standalone hospitals / private hospitals
- 7.6.1. Standalone hospitals / private hospitals market estimates and forecasts, 2021 to 2033 (USD Million)
- 7.7. Specialty clinics / ASCs
- 7.7.1. Specialty clinics / ASCs market estimates and forecasts, 2021 to 2033 (USD Million)
- 7.8. Others
- 7.8.1. Others market estimates and forecasts, 2021 to 2033 (USD Million)
- Chapter 8. Surgical Robot Procedures Market Segment Analysis, By Region, 2021- 2033 (USD Million)
- 8.1. Regional Market Share Analysis, 2024 & 2034
- 8.2. Regional Market Dashboard
- 8.3. Regional Market Snapshot
- 8.4. Surgical Robot Procedures Market Share by Region, 2024 & 2033:
- 8.5. North America
- 8.5.1. North America surgical robot procedures market, 2021 - 2033 (USD Million)
- 8.5.2. U.S.
- 8.5.2.1. Key Country Dynamics
- 8.5.2.2. Regulatory Scenario
- 8.5.2.3. Competitive Scenario
- 8.5.2.4. U.S. surgical robot procedures market, 2021 - 2033 (USD Million)
- 8.5.3. Canada
- 8.5.3.1. Key Country Dynamics
- 8.5.3.2. Regulatory Scenario
- 8.5.3.3. Competitive Scenario
- 8.5.3.4. Canada surgical robot procedures market, 2021 - 2033 (USD Million)
- 8.5.4. Mexico
- 8.5.4.1. Key Country Dynamics
- 8.5.4.2. Regulatory Scenario
- 8.5.4.3. Competitive Scenario
- 8.5.4.4. Mexico surgical robot procedures market, 2021 - 2033 (USD Million)
- 8.6. Europe
- 8.6.1. Europe surgical robot procedures market, 2021 - 2033 (USD Million)
- 8.6.2. UK
- 8.6.2.1. Key Country Dynamics
- 8.6.2.2. Regulatory Scenario
- 8.6.2.3. Competitive Scenario
- 8.6.2.4. UK surgical robot procedures market, 2021 - 2033 (USD Million)
- 8.6.3. Germany
- 8.6.3.1. Key Country Dynamics
- 8.6.3.2. Regulatory Scenario
- 8.6.3.3. Competitive Scenario
- 8.6.3.4. Germany surgical robot procedures market, 2021 - 2033 (USD Million)
- 8.6.4. France
- 8.6.4.1. Key Country Dynamics
- 8.6.4.2. Regulatory Scenario
- 8.6.4.3. Competitive Scenario
- 8.6.4.4. France surgical robot procedures market, 2021 - 2033 (USD Million)
- 8.6.5. Italy
- 8.6.5.1. Key Country Dynamics
- 8.6.5.2. Regulatory Scenario
- 8.6.5.3. Competitive Scenario
- 8.6.5.4. Italy surgical robot procedures market, 2021 - 2033 (USD Million)
- 8.6.6. Spain
- 8.6.6.1. Key Country Dynamics
- 8.6.6.2. Regulatory Scenario
- 8.6.6.3. Competitive Scenario
- 8.6.6.4. Spain surgical robot procedures market, 2021 - 2033 (USD Million)
- 8.6.7. Norway
- 8.6.7.1. Key Country Dynamics
- 8.6.7.2. Regulatory Scenario
- 8.6.7.3. Competitive Scenario
- 8.6.7.4. Norway surgical robot procedures market, 2021 - 2033 (USD Million)
- 8.6.8. Sweden
- 8.6.8.1. Key Country Dynamics
- 8.6.8.2. Regulatory Scenario
- 8.6.8.3. Competitive Scenario
- 8.6.8.4. Sweden surgical robot procedures market, 2021 - 2033 (USD Million)
- 8.6.9. Denmark
- 8.6.9.1. Key Country Dynamics
- 8.6.9.2. Regulatory Scenario
- 8.6.9.3. Competitive Scenario
- 8.6.9.4. Denmark surgical robot procedures market, 2021 - 2033 (USD Million)
- 8.7. Asia Pacific
- 8.7.1. Japan
- 8.7.1.1. Key Country Dynamics
- 8.7.1.2. Regulatory Scenario
- 8.7.1.3. Competitive Scenario
- 8.7.1.4. Japan surgical robot procedures market, 2021 - 2033 (USD Million)
- 8.7.2. China
- 8.7.2.1. Key Country Dynamics
- 8.7.2.2. Regulatory Scenario
- 8.7.2.3. Competitive Scenario
- 8.7.2.4. China surgical robot procedures market, 2021 - 2033 (USD Million)
- 8.7.3. India
- 8.7.3.1. Key Country Dynamics
- 8.7.3.2. Regulatory Scenario
- 8.7.3.3. Competitive Scenario
- 8.7.3.4. India surgical robot procedures market, 2021 - 2033 (USD Million)
- 8.7.4. Australia
- 8.7.4.1. Key Country Dynamics
- 8.7.4.2. Regulatory Scenario
- 8.7.4.3. Competitive Scenario
- 8.7.4.4. Australia surgical robot procedures market, 2021 - 2033 (USD Million)
- 8.7.5. South Korea
- 8.7.5.1. Key Country Dynamics
- 8.7.5.2. Regulatory Scenario
- 8.7.5.3. Competitive Scenario
- 8.7.5.4. South Korea surgical robot procedures market, 2021 - 2033 (USD Million)
- 8.7.6. Thailand
- 8.7.6.1. Key Country Dynamics
- 8.7.6.2. Regulatory Scenario
- 8.7.6.3. Competitive Scenario
- 8.7.6.4. Thailand surgical robot procedures market, 2021 - 2033 (USD Million)
- 8.8. Latin America
- 8.8.1. Brazil
- 8.8.1.1. Key Country Dynamics
- 8.8.1.2. Regulatory Scenario
- 8.8.1.3. Competitive Scenario
- 8.8.1.4. Brazil surgical robot procedures market, 2021 - 2033 (USD Million)
- 8.8.2. Argentina
- 8.8.2.1. Key Country Dynamics
- 8.8.2.2. Regulatory Scenario
- 8.8.2.3. Competitive Scenario
- 8.8.2.4. Argentina surgical robot procedures market, 2021 - 2033 (USD Million)
- 8.9. MEA
- 8.9.1. South Africa
- 8.9.1.1. Key Country Dynamics
- 8.9.1.2. Regulatory Scenario
- 8.9.1.3. Competitive Scenario
- 8.9.1.4. South Africa surgical robot procedures market, 2021 - 2033 (USD Million)
- 8.9.2. Saudi Arabia
- 8.9.2.1. Key Country Dynamics
- 8.9.2.2. Regulatory Scenario
- 8.9.2.3. Competitive Scenario
- 8.9.2.4. Saudi Arabia surgical robot procedures market, 2021 - 2033 (USD Million)
- 8.9.3. UAE
- 8.9.3.1. Key Country Dynamics
- 8.9.3.2. Regulatory Scenario
- 8.9.3.3. Competitive Scenario
- 8.9.3.4. UAE surgical robot procedures market, 2021 - 2033 (USD Million)
- 8.9.4. Kuwait
- 8.9.4.1. Key Country Dynamics
- 8.9.4.2. Regulatory Scenario
- 8.9.4.3. Competitive Scenario
- 8.9.4.4. Kuwait surgical robot procedures market, 2021 - 2033 (USD Million)
- Chapter 9. Competitive Landscape
- 9.1. Recent Developments & Impact Analysis, By Key Market Participants
- 9.2. Company Categorization
- 9.3. Company Profiles
- 9.3.1. Intuitive Surgical
- 9.3.1.1. Company overview
- 9.3.1.2. Financial performance
- 9.3.1.3. Product benchmarking
- 9.3.1.4. Strategic initiatives
- 9.3.2. THINK Surgical, Inc.
- 9.3.2.1. Company overview
- 9.3.2.2. Financial performance
- 9.3.2.3. Product benchmarking
- 9.3.2.4. Strategic initiatives
- 9.3.3. Smith+Nephew
- 9.3.3.1. Company overview
- 9.3.3.2. Financial performance
- 9.3.3.3. Product benchmarking
- 9.3.3.4. Strategic initiatives
- 9.3.4. Medtronic
- 9.3.4.1. Company overview
- 9.3.4.2. Financial performance
- 9.3.4.3. Product benchmarking
- 9.3.4.4. Strategic initiatives
- 9.3.5. Stryker
- 9.3.5.1. Company overview
- 9.3.5.2. Financial performance
- 9.3.5.3. Product benchmarking
- 9.3.5.4. Strategic initiatives
- 9.3.6. Zimmer Biomet
- 9.3.6.1. Company overview
- 9.3.6.2. Financial performance
- 9.3.6.3. Product benchmarking
- 9.3.6.4. Strategic initiatives
- 9.3.7. CMR Surgical
- 9.3.7.1. Company overview
- 9.3.7.2. Financial performance
- 9.3.7.3. Product benchmarking
- 9.3.7.4. Strategic initiatives
- 9.3.8. Asensus Surgical US, Inc.
- 9.3.8.1. Company overview
- 9.3.8.2. Financial performance
- 9.3.8.3. Product benchmarking
- 9.3.8.4. Strategic initiatives
- 9.3.9. Renishaw PLC.
- 9.3.9.1. Company overview
- 9.3.9.2. Financial performance
- 9.3.9.3. Product benchmarking
- 9.3.9.4. Strategic initiatives
- 9.3.10. MOON Surgical
- 9.3.10.1. Company overview
- 9.3.10.2. Financial performance
- 9.3.10.3. Product benchmarking
- 9.3.10.4. Strategic initiatives
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