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The value of the global rehabilitation robots market was USD 0.70 billion in 2022, driven by the development of advanced robotic technologies that offer better patient outcomes across the globe. The market is expected to grow at a CAGR of 20.85% during the forecast period of 2023-2031 to reach value of USD 3.81 billion by 2031.
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Rehabilitation robots are machines that are used to analyse the amount and type of assistance required during therapy sessions for mechanical actions. This technology is used to provide customised, task-oriented, intensive, and repeatable training that can be carried out for a long period of time. The field of rehabilitation robots is rapidly developing and it increasingly penetrating the clinical field.
With the growing geriatric population, cases related to motor disorders are growing around the world. Noticing this scenario, key players in the healthcare sector are investing in technological development to provide therapy and care services to the older population.
The number of cases of motor disorders or injuries such as Parkinson’s disease, Cerebral Palsy, Strokes, and Multiple Sclerosis is rising. Healthcare professionals and institutions are increasingly adopting and developing rehabilitation robots to assist patients with the treatment of various conditions.
Rehabilitation robot developers are increasingly implementing advanced technologies such as AI and ML with state-of-the-art sensor technologies, which can help in providing improved diagnosis and treatment.
The rehabilitation robots market is growing rapidly as it gains traction for various therapy procedures. However, the majority of the devices are created for therapeutic services for adults. There is a significant demand for rehabilitation robots for children. Research institutes and market players shifting their focus on designing an effective device for children with chronic disabilities can provide beneficial opportunities for the market.
Although the rehabilitation robot therapeutics market is expanding rapidly, the therapy and treatment services come with a high cost. This is due to the significant amount of investment made by healthcare providers for the device, and the maintenance and routine are also relatively high. This can be a major impeding factor for the growth of the market.
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Based on type, the market can be segmented into assistive robots, therapeutic robots, and exoskeleton robots, among others. Based on the end-use, the market bifurcations include hospitals and rehabilitation centres. The regional markets for the rehabilitation robot market can be divided into North America, Europe, the Asia Pacific, Latin America, the Middle East and Africa.
The comprehensive EMR report provides an in-depth assessment of the market based on Porter's five forces model along with giving a SWOT analysis. The report gives a detailed analysis of the following key players in the global rehabilitation robots market, covering their competitive landscape and the latest developments like mergers, acquisitions, investments and expansion plans.
Based on type, the rehabilitation robots market divisions include assistive robots, therapeutic robots, and exoskeleton robots, among others.
The exoskeleton robots are expected to hold the largest share of the market owing to the increasing prevalence of disorders such as cerebral palsy, paralysis, stroke, and spinal cord injury. The growing geriatric population is also a major growth factor for the market.
With the rising number of cases for such disorders and increasing awareness for treatment, exoskeletons are growing in adoption for medical care services.
Based on end-use, the rehabilitation robots market can be bifurcated into hospitals and rehabilitation centres.
The hospitals hold a major share of the market and are expected to experience significant development during the forecast period, owing to the increasing healthcare expenditure for infrastructural development. Healthcare organisations are also focusing on adopting advanced technologies for their care services.
In addition, with the rising awareness among people, more people are opting to receive treatment and the majority of the patients opt for hospitals over rehabilitation centres as their first option for treatment.
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Rex Bionics Ltd. is a healthcare company specializing in the manufacturing of medical equipment including robotics, exoskeleton, physiotherapy, and exoskeleton. The company is headquartered in Auckland, United States with rehabilitation centres in other regions including the United Kingdom, the Middle East, Australia, and New Zealand.
Ekso Bionics is a pioneer in the development and manufacturing of powered exoskeleton bionic devices. The company was founded in 2005 and is headquartered in California, United States. The technology developed by Ekso Bionics is utilised to help people regain mobility.
CYBERDYNE INC. is a robotics and technology company engaged in the development of medical equipment. The company also manufactures and sells medical products and provides rental and training services. Cyberdyne is known for its main product, HAL, a robotic exoskeleton suit.
REPORT FEATURES | DETAILS |
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Base Year | 2022 |
Historical Period | 2016-2022 |
Forecast Period | 2023-2031 |
Scope of the Report |
Historical and Forecast Trends, Industry Drivers and Constraints, Historical and Forecast Market Analysis by Segment:
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Breakup by Type |
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Breakup by End User |
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Breakup by Region |
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Market Dynamics |
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Supplier Landscape |
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Companies Covered |
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*At Expert Market Research, we strive to always give you current and accurate information. The numbers depicted in the description are indicative and may differ from the actual numbers in the final EMR report.
1 Preface
1.1 Objectives of the Study
1.2 Key Assumptions
1.3 Report Coverage – Key Segmentation and Scope
1.4 Research Methodology
2 Executive Summary
3 Global Rehabilitation Robots Market Overview
3.1 Global Rehabilitation Robots Market Historical Value (2016-2022)
3.2 Global Rehabilitation Robots Market Forecast Value (2023-2031)
4 Global Rehabilitation Robots Market Landscape
4.1 Global Rehabilitation Robots Developers Landscape
4.1.1 Analysis by Year of Establishment
4.1.2 Analysis by Company Size
4.1.3 Analysis by Region
4.2 Global Rehabilitation Robots Product Landscape
4.2.1 Analysis by Type
4.2.2 Analysis by End User
5 Global Rehabilitation Robots Market Dynamics
5.1 Market Drivers and Constraints
5.2 SWOT Analysis
5.3 Porter’s Five Forces Model
5.4 Key Demand Indicators
5.5 Key Price Indicators
5.6 Industry Events, Initiatives, and Trends
5.7 Value Chain Analysis
6 Global Rehabilitation Robots Market Segmentation
6.1 Global Rehabilitation Robots Market by Type
6.1.1 Market Overview
6.1.2 Assistive Robots
6.1.3 Therapeutic Robots
6.1.4 Exoskeletal Robots
6.1.5 Others
6.2 Global Rehabilitation Robots Market by End User
6.2.1 Market Overview
6.2.2 Hospitals & Clinics
6.2.3 Senior Care Facilities
6.2.4 Homecare Settings
6.3 Global Rehabilitation Robots Market by Region
6.3.1 Market Overview
6.3.2 North America
6.3.3 Europe
6.3.4 Asia Pacific
6.3.5 Latin America
6.3.6 Middle East and Africa
7 North America Rehabilitation Robots Market
7.1 Market Share by Country
7.2 United States of America
7.3 Canada
8 Europe Rehabilitation Robots Market
8.1 Market Share by Country
8.2 United Kingdom
8.3 Germany
8.4 France
8.5 Italy
8.6 Others
9 Asia Pacific Rehabilitation Robots Market
9.1 Market Share by Country
9.2 China
9.3 Japan
9.4 India
9.5 ASEAN
9.6 Australia
9.7 Others
10 Latin America Rehabilitation Robots Market
10.1 Market Share by Country
10.2 Brazil
10.3 Argentina
10.4 Mexico
10.5 Others
11 Middle East and Africa Rehabilitation Robots Market
11.1 Market Share by Country
11.2 Saudi Arabia
11.3 United Arab Emirates
11.4 Nigeria
11.5 South Africa
11.6 Others
12 Patent Analysis
12.1 Analysis by Type of Patent
12.2 Analysis by Publication year
12.3 Analysis by Issuing Authority
12.4 Analysis by Patent Age
12.5 Analysis by CPC Analysis
12.6 Analysis by Patent Valuation
12.7 Analysis by Key Players
13 Grants Analysis
13.1 Analysis by year
13.2 Analysis by Amount Awarded
13.3 Analysis by Issuing Authority
13.4 Analysis by Grant Application
13.5 Analysis by Funding Institute
13.6 Analysis by NIH Departments
13.7 Analysis by Recipient Organization
14 Funding Analysis
14.1 Analysis by Funding Instances
14.2 Analysis by Type of Funding
14.3 Analysis by Funding Amount
14.4 Analysis by Leading Players
14.5 Analysis by Leading Investors
14.6 Analysis by Geography
15 Partnership and Collaborations Analysis
15.1 Analysis by Partnership Instances
15.2 Analysis by Type of Partnership
15.3 Analysis by Leading Players
15.4 Analysis by Geography
16 Regulatory Framework
16.1 Regulatory Overview
16.1.1 US FDA
16.1.2 EU EMA
16.1.3 INDIA CDSCO
16.1.4 JAPAN PMDA
16.1.5 Others
17 Supplier Landscape
17.1 Rex Bionics Ltd.
17.1.1 Financial Analysis
17.1.2 Product Portfolio
17.1.3 Demographic Reach and Achievements
17.1.4 Mergers and Acquisitions
17.1.5 Certifications
17.2 Ekso Bionics
17.2.1 Financial Analysis
17.2.2 Product Portfolio
17.2.3 Demographic Reach and Achievements
17.2.4 Mergers and Acquisitions
17.2.5 Certifications
17.3 Bionik
17.3.1 Financial Analysis
17.3.2 Product Portfolio
17.3.3 Demographic Reach and Achievements
17.3.4 Mergers and Acquisitions
17.3.5 Certifications
17.4 Cyberdyne Inc.
17.4.1 Financial Analysis
17.4.2 Product Portfolio
17.4.3 Demographic Reach and Achievements
17.4.4 Mergers and Acquisitions
17.4.5 Certifications
17.5 Hocoma AG
17.5.1 Financial Analysis
17.5.2 Product Portfolio
17.5.3 Demographic Reach and Achievements
17.5.4 Mergers and Acquisitions
17.5.5 Certifications
17.6 ReWalk Robotics Ltd
17.6.1 Financial Analysis
17.6.2 Product Portfolio
17.6.3 Demographic Reach and Achievements
17.6.4 Mergers and Acquisitions
17.6.5 Certifications
17.7 Rehab-Robotics Company Limited
17.7.1 Financial Analysis
17.7.2 Product Portfolio
17.7.3 Demographic Reach and Achievements
17.7.4 Mergers and Acquisitions
17.7.5 Certifications
17.8 Life Science Robotics ApS
17.8.1 Financial Analysis
17.8.2 Product Portfolio
17.8.3 Demographic Reach and Achievements
17.8.4 Mergers and Acquisitions
17.8.5 Certifications
17.9 Tyromotion GmbH
17.9.1 Financial Analysis
17.9.2 Product Portfolio
17.9.3 Demographic Reach and Achievements
17.9.4 Mergers and Acquisitions
17.9.5 Certifications
18 Global Rehabilitation Robots Market - Distribution Model (Additional Insight)
18.1 Overview
18.2 Potential Distributors
18.3 Key Parameters for Distribution Partner Assessment
19 Key Opinion Leaders (KOL) Insights (Additional Insight)
20 Company Competitiveness Analysis (Additional Insight)
20.1 Very Small Companies
20.2 Small Companies
20.3 Mid-Sized Companies
20.4 Large Companies
20.5 Very Large Companies
21 Payment Methods (Additional Insight)
21.1 Government Funded
21.2 Private Insurance
21.3 Out-of-Pocket
*Additional insights provided are customisable as per client requirements.
In 2022, the global market for rehabilitation robots reached a size of USD 948.6 million.
The market is expected to grow at a CAGR of 21.40% during the period 2023-2031.
The market is expected to reach a value of USD 5,433.3 million by 2031.
The market is driven by the growing geriatric population around the world and the increasing awareness among people for rehabilitation services.
The rising implementation of advanced technologies for improved treatment procedures and the development of a device for paediatric rehabilitation are expected to bring new growth opportunities to the market.
The regional markets for the market include North America, Europe, the Asia Pacific, Latin America, the Middle East and Africa.
The types of rehabilitation robots available in the market include assistive robots, therapeutic robots, and exoskeleton robots, among others.
The end-users of rehabilitation robots include hospitals and rehabilitation centres.
The key players in the market include Rex Bionics Ltd., Ekso Bionics, Bionik, CYBERDYNE INC., and Hocoma AG, among others.
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