Motorized Prosthesis Market Analysis and Global Forecast 2023-2033
$ 1,390.00 – $ 5,520.00
Motorized Prosthesis Market Research Report: Information By Type (Passive, Active, Hybrid), By End-user (Hospitals, Prosthetic Clinics, Rehabilitation Centers, Others), and by Region — Forecast till 2033
Motorized Prosthesis Market Overview
The Motorized Prosthesis Market Size is expected to reach USD 164.32 Billion by 2033. The Motorized Prosthesis industry size accounted for USD 59.36 Billion in 2023 and is expected to expand at a compound annual growth rate (CAGR) of 11.63% from 2023 to 2033. Motorized prostheses are advanced artificial limbs designed to replicate the function and movement of natural human limbs. These sophisticated devices incorporate motors and sensors to enable individuals with limb loss or limb impairment to regain a higher degree of mobility and control. Motorized prostheses can be customized to suit different levels of amputation and offer features such as powered joint movements, feedback systems, and advanced control mechanisms, allowing users to perform a wide range of activities with greater ease and naturalness. These prosthetic devices represent a significant advancement in prosthetics, improving the quality of life and functional capabilities of those who use them.
Global Motorized Prosthesis Market Synopsis
The Motorized Prosthesis market underwent a significant transformation driven by the repercussions of the COVID-19 pandemic. The pandemic highlighted the importance of innovation and accessibility in healthcare, including prosthetic technology. With healthcare systems stretched and physical rehabilitation services disrupted, there was a renewed focus on motorized prostheses as a means to enhance the mobility and independence of individuals with limb loss or impairment. This led to increased research and development efforts, as well as greater adoption of telehealth and remote monitoring solutions for prosthetic fitting and adjustments. Additionally, the pandemic underscored the need for resilient and adaptable healthcare solutions, driving investments and innovation in the motorized prosthesis sector to address the evolving needs of patients in a post-pandemic world.
Motorized Prosthesis Market Dynamics
The major factors that have impacted the growth of Motorized Prosthesis are as follows:
Drivers:
Ø Advancements in Technology and Materials
Technological innovations and the development of advanced materials have been significant drivers for the Motorized Prosthesis Market. These advancements have led to more sophisticated and functional motorized prosthetic devices, offering improved mobility and natural movement to individuals with limb loss or limb impairment. Miniaturized sensors, better power sources, and advanced control algorithms have all contributed to the enhanced performance of motorized prostheses, increasing their adoption and improving the quality of life for users.
Restraint:
- High Cost and Accessibility
A major restraint in the Motorized Prosthesis Market is the high cost associated with these advanced devices. Motorized prostheses can be prohibitively expensive for many individuals, limiting their accessibility. Additionally, insurance coverage and reimbursement policies may not fully cover the cost of these devices, posing financial barriers for potential users. This cost challenge hinders the widespread adoption of motorized prostheses, particularly in regions with limited access to healthcare resources.
Opportunity:
Aging Population and Increased Amputation Rates
An opportunity for the Motorized Prosthesis Market lies in the aging global population and the rising incidence of conditions such as diabetes and vascular diseases, which can lead to amputations. As the number of individuals requiring prosthetic limbs continues to grow, there is a substantial market opportunity for motorized prostheses. Meeting the needs of this expanding demographic through improved affordability and accessibility can drive market growth and innovation in the sector, making motorized prostheses a vital tool for enhancing the quality of life for individuals with limb loss or impairment.
Motorized Prosthesis Segment Overview
By Type
Based on Type, the market is segmented based on Passive, Active, and Hybrid. The Hybrid segment is anticipated to experience significant growth throughout the forecast period in the Motorized Prosthesis market due to its ability to combine the benefits of both mechanical and electronic components, offering users versatility, enhanced functionality, and improved natural movement.
By End-user
Based on the End-user, the market has been divided into Hospitals, Prosthetic Clinics, Rehabilitation Centers, and Others. The Hospitals segment is expected to undergo substantial growth in the Motorized Prosthesis market during the forecast period owing to the increasing adoption of advanced prosthetic technologies in clinical settings for patient rehabilitation and specialized care, further driving the demand for motorized prosthetic devices.
Global Motorized Prosthesis Market Regional Analysis
Based on region, the global Motorized Prosthesis market has been divided into North America, Europe, Asia-Pacific, the Middle East & Africa, and Latin America. North America is projected to dominate the use of the Motorized Prosthesis market followed by the Asia-Pacific and Europe regions.
North America Market
North America has consistently maintained its dominant position in the Motorized Prosthesis market, owing to a combination of factors. The region has a robust healthcare infrastructure, advanced research and development capabilities, and a high prevalence of limb loss cases, particularly among veterans. Moreover, the presence of leading prosthetic technology companies and the early adoption of innovative solutions have established North America as a key hub for motorized prostheses. Additionally, favorable reimbursement policies, along with initiatives to improve access to advanced prosthetic care, have contributed to the region’s leadership. As technological advancements continue to drive the market, North America is poised to remain at the forefront of motorized prosthetic innovations and accessibility.
Asia-Pacific Market
The Asia-Pacific region has emerged as a rapidly growing market for the Motorized Prosthesis industry due to several key factors. Rapid urbanization, rising healthcare awareness, and increasing healthcare expenditure have fueled the demand for advanced prosthetic solutions in the region. Moreover, the Asia-Pacific region is witnessing a higher incidence of conditions leading to limb loss, such as diabetes and trauma, creating a substantial patient pool. Additionally, ongoing technological advancements, a growing number of prosthetic clinics, and improving healthcare infrastructure are enhancing the accessibility of motorized prostheses in countries across the region. As awareness and affordability continue to improve, the Asia-Pacific market for motorized prostheses is expected to experience significant growth, meeting the needs of a diverse and expanding demographic of users.
Competitive Landscape
The Global Motorized Prosthesis market is highly competitive, with numerous players offering a wide range of software solutions. The competitive landscape is characterized by the presence of established companies, as well as emerging startups and niche players. To increase their market position and attract a wide consumer base, the businesses are employing various strategies, such as product launches, and strategic alliances.
Prominent Players:
- Advanced arm dynamics
- Hanger Inc
- BionX™ Medical Technologies, Inc
- Mobius Bionics
- Touch Bionics
- Bionic Prosthetics & Orthotics Group LLC
- integrum ab
- otto bock
- Faulhaber Group
- Össur
Key Development
In February 2022, Ossur introduced its groundbreaking POWER KNEE^TM, which is the world’s first actively powered microprocessor prosthetic knee designed for individuals with above-knee amputation or limb differences. This innovative knee utilizes advanced algorithms to recognize human movement patterns, continuously learns, and adapts to the wearer’s speed and cadence in real time.
In February 2022, Ceryx Medical unveiled its Cysoni bionic device for Respiratory Sinus Arrhythmia (RSA). The Cysoni device replicates RSA by synchronizing heartbeats with respiratory function. The research team reported that RSA pacing resulted in a 20% increase in cardiac output compared to monotonic pacing, highlighting its potential benefits in enhancing cardiac performance.
Scope of the Report
Global Motorized Prosthesis Market, by Type
- Passive
- Active
- Hybrid
Global Motorized Prosthesis Market, by End-user
- Hospitals
- Prosthetic Clinics
- Rehabilitation Centers
- Others
Global Motorized Prosthesis Market, by Region
- North America
- US
- Canada
- Mexico
- Europe
- UK
- Germany
- France
- Italy
- Spain
- Benelux
- Nordic
- Rest of Europe
- Asia Pacific
- China
- Japan
- South Korea
- Indonesia
- Austalia
- Malaysia
- India
- Rest of Asia Pacific
- South America
- Brazil
- Argentina
- Rest of South America
- Middle East & Africa
- Saudi Arabia
- UAE
- Egypt
- South Africa
- Rest of Middle East & Africa
Parameters | Indicators |
---|---|
Market Size | 2033: $164.32 Billion |
CAGR | 11.63% CAGR (2023-2033) |
Base year | 2022 |
Forecast Period | 2023-2033 |
Historical Data | 2021 |
Report Coverage | Revenue Forecast, Competitive Landscape, Growth Factors, and Trends |
Key Segmentations | Type, End-user |
Geographies Covered | North America, Europe, Asia-Pacific, Latin America, Middle East, Africa |
Key Vendors | Advanced arm dynamics, Hanger Inc., BionX™ Medical Technologies, Inc., Mobius Bionics, Touch Bionics, Bionic Prosthetics & Orthotics Group LLC, integrum ab, Otto Bock, Faulhaber Group, Össur |
Key Market Opportunities | • Aging Population and Increased Amputation Rates |
Key Market Drivers | • Technological Advancements |
REPORT CONTENT BRIEF:
- High-level analysis of the current and future Motorized Prosthesis market trends and opportunities
- Detailed analysis of current market drivers, restraining factors, and opportunities in the future
- Motorized Prosthesis market historical market size for the year 2021, and forecast from 2023 to 2033
- Motorized Prosthesis market share analysis at each product level
- Competitor analysis with detailed insight into its product segment, Government and defense strength, and strategies adopted.
- Identifies key strategies adopted including product launches and developments, mergers and acquisitions, joint ventures, collaborations, and partnerships as well as funding taken and investment done, among others.
- To identify and understand the various factors involved in the global Motorized Prosthesis market affected by the pandemic
- To provide a detailed insight into the major companies operating in the market. The profiling will include the Government and defense health of the company’s past 2-3 years with segmental and regional revenue breakup, product offering, recent developments, SWOT analysis, and key strategies.
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Frequently Asked Questions (FAQ)
What is the study period of this market?
The study period of the global Motorized Prosthesis market is 2021- 2033
What is the growth rate of the global Motorized Prosthesis market?
The Global Motorized Prosthesis market is growing at a CAGR of 11.63% over the next 10 years
Which region has the highest growth rate in the market of Motorized Prosthesis?
Asia Pacific is expected to register the highest CAGR during 2023-2033
Which region has the largest share of the global Motorized Prosthesis market?
North America holds the largest share in 2022
Who are the key players in the global Motorized Prosthesis market?
Advanced Arm Dynamics, Hanger Inc, BionX™ Medical Technologies, Inc., Mobius Bionics, Touch Bionics, Bionic Prosthetics & Orthotics Group LLC, integrum ab, ottobock, Faulhaber Group, Össur are the major companies operating in the market.
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Table of Content
Chapter 1. Executive Summary Chapter 2. Scope Of The Study 2.1. Market Definition 2.2. Scope Of The Study 2.2.1. Objectives of Report 2.2.2. Limitations 2.3. Market Structure Chapter 3. Evolve BI Methodology Chapter 4. Market Insights and Trends 4.1. Supply/ Value Chain Analysis 4.1.1. Raw Material Providers 4.1.2. Manufacturing Process 4.1.3. Distributors/Retailers 4.1.4. End-Use Industry 4.2. Porter’s Five Forces Analysis 4.2.1. Threat Of New Entrants 4.2.2. Bargaining Power Of Buyers 4.2.3. Bargaining Power Of Suppliers 4.2.4. Threat Of Substitutes 4.2.5. Industry Rivalry 4.3. Impact Of COVID-19 on the Motorized Prosthesis Market 4.3.1. Impact on Market Size 4.3.2. End-Use Industry Trend, Preferences, and Budget Impact 4.3.3. Regulatory Framework/Government Policies 4.3.4. Key Players' Strategy to Tackle Negative Impact 4.3.5. Opportunity Window 4.4. Distribution Channel Overview 12.28. Macro factor 4.6. Micro Factor 4.7. Demand Supply Gap Analysis of the Motorized Prosthesis Market 4.8. Import Analysis of the Motorized Prosthesis Market 4.9. Export Analysis of the Motorized Prosthesis Market Chapter 5. Market Dynamics 5.1. Introduction 5.2. DROC Analysis 5.2.1. Drivers 5.2.2. Restraints 5.2.3. Opportunities 5.2.4. Challenges 5.3. Patent Analysis 5.4. Industry Roadmap 5.5. Parent/Peer Market Analysis Chapter 6. Global Motorized Prosthesis Market, By Type 6.1. Introduction 6.2. Passive 6.3. Active 6.4. Hybrid Chapter 7. Global Motorized Prosthesis Market, By End-user 7.1. Introduction 7.2. Hospitals 7.3. Prosthetic Clinics 7.4. Rehabilitation Centers 7.5. Others Chapter 8. Global Motorized Prosthesis Market, By Region 8.1. Introduction 8.2. North America 8.2.1. Introduction 8.2.2. Driving Factors, Opportunity Analyzed, and Key Trends 8.2.3. Market Size and Forecast, By Country, 2023-2033 8.2.4. Market Size and Forecast, By Type, 2023-2033 8.2.5. Market Size and Forecast, By End-user, 2023-2033 8.2.6. US 8.2.6.1. Introduction 8.2.6.2. Driving Factors, Opportunity Analyzed, and Key Trends 8.2.6.3. Market Size and Forecast, By Type, 2023-2033 8.2.6.4. Market Size and Forecast, By End-user, 2023-2033 8.2.7. Canada 8.2.7.1. Introduction 8.2.7.2. Driving Factors, Opportunity Analyzed, and Key Trends 8.2.7.4. Market Size and Forecast, By Type, 2023-2033 8.2.7.5. Market Size and Forecast, By End-user, 2023-2033 8.3. Europe 8.3.1. Introduction 8.3.2. Driving Factors, Opportunity Analyzed, and Key Trends 8.3.3. Market Size and Forecast, By Country, 2023-2033 8.3.4. Market Size and Forecast, By Type, 2023-2033 8.3.5. Market Size and Forecast, By End-user, 2023-2033 8.3.6. Germany 8.3.6.1. Introduction 8.3.6.2. Driving Factors, Opportunity Analyzed, and Key Trends 8.3.6.3. Market Size and Forecast, By Type, 2023-2033 8.3.6.4. Market Size and Forecast, By End-user, 2023-2033 8.3.7. France 8.3.7.1. Introduction 8.3.7.2. Driving Factors, Opportunity Analyzed, and Key Trends 8.3.7.3. Market Size and Forecast, By Type, 2023-2033 8.3.7.4. Market Size and Forecast, By End-user, 2023-2033 8.3.8. UK 8.3.8.1. Introduction 8.3.8.2. Driving Factors, Opportunity Analyzed, and Key Trends 8.3.8.3. Market Size and Forecast, By Type, 2023-2033 8.3.8.4. Market Size and Forecast, By End-user, 2023-2033 8.3.9. Italy 8.3.9.1. Introduction 8.3.9.2. Driving Factors, Opportunity Analyzed, and Key Trends 8.3.9.3. Market Size and Forecast, By Type, 2023-2033 8.3.9.4. Market Size and Forecast, By End-user, 2023-2033 8.3.11. Rest Of Europe 8.3.11.1. Introduction 8.3.11.2. Driving Factors, Opportunity Analyzed, and Key Trends 8.3.11.3. Market Size and Forecast, By Type, 2023-2033 8.3.11.4. Market Size and Forecast, By End-user, 2023-2033 8.4. Asia-Pacific 8.4.1. Introduction 8.4.2. Driving Factors, Opportunity Analyzed, and Key Trends 8.4.3. Market Size and Forecast, By Country, 2023-2033 8.4.4. Market Size and Forecast, By Type, 2023-2033 8.12.28. Market Size and Forecast, By End-user, 2023-2033 8.4.6. China 8.4.6.1. Introduction 8.4.6.2. Driving Factors, Opportunity Analyzed, and Key Trends 8.4.6.3. Market Size and Forecast, By Type, 2023-2033 8.4.6.4. Market Size and Forecast, By End-user, 2023-2033 8.4.7. India 8.4.7.1. Introduction 8.4.7.2. Driving Factors, Opportunity Analyzed, and Key Trends 8.4.7.3. Market Size and Forecast, By Type, 2023-2033 8.4.7.4. Market Size and Forecast, By End-user, 2023-2033 8.4.8. Japan 8.4.8.1. Introduction 8.4.8.2. Driving Factors, Opportunity Analyzed, and Key Trends 8.4.8.3. Market Size and Forecast, By Type, 2023-2033 8.4.8.4. Market Size and Forecast, By End-user, 2023-2033 8.4.9. South Korea 8.4.9.1. Introduction 8.4.9.2. Driving Factors, Opportunity Analyzed, and Key Trends 8.4.9.3. Market Size and Forecast, By Type, 2023-2033 8.4.9.4. Market Size and Forecast, By End-user, 2023-2033 8.4.10. Rest Of Asia-Pacific 8.4.10.1. Introduction 8.4.10.2. Driving Factors, Opportunity Analyzed, and Key Trends 8.4.10.3. Market Size and Forecast, By Type, 2023-2033 8.4.10.4. Market Size and Forecast, By End-user, 2023-2033 8.5. Rest Of The World (RoW) 8.5.1. Introduction 8.5.2. Driving Factors, Opportunity Analyzed, and Key Trends 8.5.3. Market Size and Forecast, By Type, 2023-2033 8.5.4. Market Size and Forecast, By End-user, 2023-2033 Chapter 9. Company Landscape 9.1. Introduction 9.2. Vendor Share Analysis 9.3. Key Development Analysis 9.4. Competitor Dashboard Chapter 10. Company Profiles 10.1. Advanced arm dynamics 10.1.1. Business Overview 10.1.2. Government & Defense Analysis 10.1.2.1. Government & Defense – Existing/Funding 10.1.3. Product Portfolio 10.1.4. Recent Development and Strategies Adopted 10.1.5. SWOT Analysis 10.2. Hanger Inc 10.2.1. Business Overview 10.2.2. Government & Defense Analysis 10.2.2.1. Government & Defense – Existing/Funding 10.2.3. Product Portfolio 10.2.4. Recent Development and Strategies Adopted 10.2.5. SWOT Analysis 10.3. BionX™ Medical Technologies, Inc 10.3.1. Business Overview 10.3.2. Government & Defense Analysis 10.3.2.1. Government & Defense – Existing/Funding 10.3.3. Product Portfolio 10.3.4. Recent Development and Strategies Adopted 10.3.5. SWOT Analysis 10.4. Mobius Bionics 10.4.1. Business Overview 10.4.2. Government & Defense Analysis 10.4.2.1. Government & Defense – Existing/Funding 10.4.3. Product Portfolio 10.4.4. Recent Development and Strategies Adopted 10.4.5. SWOT Analysis 10.5. Touch Bionics 10.5.1. Business Overview 10.5.2. Government & Defense Analysis 10.5.2.1. Government & Defense – Existing/Funding 10.5.3. Product Portfolio 10.5.4. Recent Development and Strategies Adopted 10.5.5. SWOT Analysis 10.6. Bionic Prosthetics & Orthotics Group LLC 10.6.1. Business Overview 10.6.2. Government & Defense Analysis 10.6.2.1. Government & Defense – Existing/Funding 10.6.3. Product Portfolio 10.6.4. Recent Development and Strategies Adopted 10.6.5. SWOT Analysis 10.7. integrum ab 10.7.1. Business Overview 10.7.2. Government & Defense Analysis 10.7.2.1. Government & Defense – Existing/Funding 10.7.3. Product Portfolio 10.7.4. Recent Development and Strategies Adopted 10.7.5. SWOT Analysis 10.8 otto bock 10.8.1. Business Overview 10.8.2. Government & Defense Analysis 10.8.2.1. Government & Defense – Existing/Funding 10.8.3. Product Portfolio 10.8.4. Recent Development and Strategies Adopted 10.8.5. SWOT Analysis 10.9 Faulhaber Group 10.9.1. Business Overview 10.9.2. Government & Defense Analysis 10.9.2.1. Government & Defense – Existing/Funding 10.9.3. Product Portfolio 10.9.4. Recent Development and Strategies Adopted 10.9.5. SWOT Analysis 10.10. Össur 10.10.1. Business Overview 10.10.2. Government & Defense Analysis 10.10.2.1. Government & Defense – Existing/Funding 10.10.3. Product Portfolio 10.10.4. Recent Development and Strategies Adopted 10.10.5. SWOT Analysis
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