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2032992

의료용 외골격 시장 : 시장 규모, 점유율, 동향 및 예측 - 컴포넌트별, 유형별, 대상 부위별, 이동 기능별, 최종 사용자별, 지역별(2026-2034년)

Medical Exoskeleton Market Size, Share, Trends and Forecast by Component, Type, Extremity, Mobility, End User, and Region, 2026-2034

발행일: | 리서치사: 구분자 IMARC | 페이지 정보: 영문 143 Pages | 배송안내 : 2-3일 (영업일 기준)

    
    
    




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세계의 의료용 외골격 시장 규모는 2025년 6억 3,970만 달러로 평가되었습니다. IMARC Group은 향후 2026-2034년 CAGR 28.03%로 성장을 지속하여, 2034년까지 시장 규모가 62억 8,470만 달러에 이를 것으로 예측했습니다. 현재 북미가 시장을 독점하고 있으며, 2025년에는 36.5%의 큰 시장 점유율을 차지한 것으로 평가되었습니다. 투자 및 자금 조달 증가는 혁신을 촉진하고, 외골격의 효율성과 이용 편의성을 높이고 있습니다. 인공지능(AI)과 센서 기술의 발전으로 실시간 동작 적응이 향상되어 재활의 질이 향상되고 있습니다. 규제 당국의 승인과 보험 적용으로 안전성과 경제성이 확보되어 의료용 외골격 시장 점유율 확대가 가속화되고 있습니다.

고령화는 이동 보조에 대한 수요를 증가시켜 의료용 외골격 시장을 크게 견인하고 있습니다. 노인은 이동 기능 장애의 위험이 높으며, 일상적인 이동을 지원하는 첨단 솔루션이 필요합니다. 의료용 외골격은 노인이 이동 능력을 회복하고 간병인에 대한 의존도를 낮추며 전반적인 삶의 질을 향상시키는 데 도움이 됩니다. 관절염, 골다공증 등 노화에 따른 질환 증가는 웨어러블 외골격에 대한 수요를 더욱 촉진하고 있습니다. 이 장치는 안정성을 높이고 낙상 방지 기능을 제공하여 노인의 주요 이동 문제를 해결합니다. 의료진들은 외골격을 활용한 재활을 권장하는 경향이 강해지고 있으며, 이를 통해 고령 환자의 부상 후 회복 결과를 개선하고 있습니다. 경량화와 인체공학적 외골격 설계의 발전으로 편안함이 향상되어 장시간 사용에도 적합합니다. AI를 활용한 적응형 동작 지원 시스템은 개인의 이동 요구에 맞는 개인화된 지원을 가능하게 합니다.

연구개발(R&D)에 대한 투자 확대가 미국 의료용 외골격 시장 수요를 크게 견인하고 있습니다. 정부의 자금 지원과 민간 부문의 투자로 혁신적인 외골격 기술 개발이 가속화되고 있습니다. 주요 연구기관과 대학이 제조업체와 협력하여 재활을 위한 로봇 이동 솔루션을 강화하고 있습니다. 예를 들어, 2025년 2월, Wandercraft는 개인용으로는 최초로 자가 균형 조절 장치인 '개인용 외골격'의 임상시험을 시작했습니다. 중증 이동 장애를 가진 개인을 위해 설계된 이 장치는 자연스러운 보행 동작을 되찾을 수 있도록 도와줍니다. 제임스 J. 피터스 VA 메디컬센터에서 진행 중인 이 임상시험은 케슬러 연구소로 확대되어 척수손상 환자에 대한 안전성과 유효성을 평가할 예정입니다. 또한, 외골격 스타트업에 대한 벤처캐피털의 자금 지원은 경쟁을 촉진하고, 비용 효율적이고 확장성 있는 제품 개발로 이어지고 있습니다. 미 국방부는 외골격 연구에 많은 투자를 하고 있으며, 부상당한 재향군인 및 병사들에게 적용할 수 있도록 지원하고 있습니다. AI를 활용한 동작 제어와 생체 역학의 발전으로 외골격의 효율성과 적응형 동작 지원이 향상되고 있습니다. 의료기기 제조업체들은 경량 소재와 에너지 절약형 설계에 중점을 두어 사용자의 편의성을 높이고 있습니다. 웨어러블 외골격에 대한 FDA의 승인과 규제 측면의 지원으로 시장 진입이 가속화되고 보급이 진행되고 있습니다.

의료용 외골격 시장 동향 :

웨어러블 로봇 기술의 발전

웨어러블 로봇의 지속적인 발전으로 의료용 외골격의 기능성, 편안함, 적응성이 크게 향상되고 있습니다. 기술의 발전으로 인해 이동 기능이 불편한 사용자에게 보다 효율적인 작동, 내구성 향상 및 개인화된 지원이 가능해졌습니다. 경량 소재, AI를 활용한 동작 제어, 인체공학적 설계의 혁신은 사용자 경험을 향상시키고, 재활 및 일상 생활에서 외골격을 보다 실용적으로 만들어 줍니다. 신체에 가해지는 부담을 최소화하도록 설계된 현대식 외골격은 자연스러운 동작 패턴을 촉진하면서 근육의 활동을 지원합니다. 이러한 개선은 재활 치료 결과의 향상에 기여하고, 신경 질환, 척수 손상, 노화에 따른 이동 장애를 가진 환자들이 독립성을 회복할 수 있도록 돕고 있습니다. 첨단 센서 기술과 실시간 동작 조정을 통해 사용자의 신체 움직임과 매끄러운 연계를 실현하고 있습니다. 2024년 7월, 아크테릭스(Arc'teryx)와 스킵(Skip)은 근육의 피로를 40% 감소시키고 무릎 관절을 지지하며 지구력을 향상시키는 'MO/GO' 외골격 하이킹 바지를 출시했습니다. 이번 개발은 웨어러블 외골격의 폭넓은 용도를 강조하며, 재활 및 이동 지원 분야에서 그 가능성을 보여주고 있습니다.

이동 지원에 대한 수요 증가

의료용 외골격은 자립성 향상, 이동성 개선, 삶의 질 향상을 가져다주기 때문에 재활 시설과 개인 사용자 모두에게 매력적인 선택이 되고 있습니다. 이러한 장치는 사용자가 움직임을 되찾고 일상적인 활동을 보다 쉽게 할 수 있도록 도와줍니다. AI 기반 동작 제어와 센서 기반 적응성을 갖춘 첨단 로봇 외골격은 사용자 경험을 더욱 향상시킵니다. 2024년 1월, 하버드대학교와 보스턴대학교는 파킨슨병 환자를 위한 소프트 로봇 외골격을 발표했습니다. 이를 통해 낙상사고가 감소하고, '프리즈' 현상이 해소되었습니다. 케이블 구동식 액추에이터와 동작 센서를 갖춘 이 웨어러블 외골격은 신경계 질환을 위한 이동 지원 기술의 큰 진전이라고 할 수 있습니다. 관절염, 파킨슨병, 뇌졸중 등 노화 관련 질환이 증가함에 따라 운동 기능을 향상시키고 타인에 대한 의존도를 낮추는 보조 기술에 대한 요구가 증가하고 있습니다.

시장 확대를 주도하는 규제 당국의 승인

의료용 외골격 시장의 확대를 위해서는 제품의 안전성, 유효성 및 보급을 보장하는 규제 당국의 승인이 필수적입니다. FDA, CE, 캐나다 보건부 등 보건 당국의 인증은 외골격의 성능을 입증하고 소비자와 의료진의 신뢰를 높입니다. 규제 당국의 승인을 받는 기기가 늘어남에 따라 기업은 재활 및 이동 지원을 위한 첨단 솔루션을 도입할 수 있게 되어 시장 성장을 가속할 수 있습니다. 승인 과정에는 엄격한 테스트가 포함되어 외골격이 안전 기준을 충족하고 이동 장애가있는 사용자에게 효과적인 지원을 제공할 수 있도록 보장합니다. 정부의 이니셔티브와 지원 정책은 규제 당국의 승인을 더욱 가속화하여 의료용 웨어러블 로봇의 혁신을 촉진하고 있습니다. 2024년 9월, Human in Motion Robotics는 세계 최첨단 셀프 밸런싱 기능을 갖춘 핸즈프리 의료용 외골격 'XoMotion'의 캐나다 판매 승인을 획득했습니다. 이 획기적인 장치는 척수 손상, 뇌졸중, 신경 질환 환자를 돕기 위해 고안된 것으로, 의료용 외골격 기술의 큰 도약을 상징합니다.

목차

제1장 서문

제2장 조사 범위 및 조사 방법

제3장 주요 요약

제4장 서론

제5장 세계의 의료용 외골격 시장

제6장 시장 내역 : 컴포넌트별

제7장 시장 내역 : 유형별

제8장 시장 내역 : 사지별

제9장 시장 내역 : 모빌리티별

제10장 시장 내역 : 최종 사용자별

제11장 시장 내역 : 지역별

제12장 SWOT 분석

제13장 밸류체인 분석

제14장 Porter's Five Forces 분석

제15장 가격 분석

제16장 경쟁 구도

AJY 26.05.19

The global medical exoskeleton market size was valued at USD 639.7 Million in 2025. Looking forward, IMARC Group estimates the market to reach USD 6,284.7 Million by 2034, exhibiting a CAGR of 28.03% during 2026-2034. North America currently dominates the market, holding a significant market share of 36.5% in 2025. Increased investments and funding drive innovation, making exoskeletons more efficient and accessible. Advancements in artificial intelligence (AI) and sensor technology enhance real-time movement adaptation for better rehabilitation. Regulatory approvals and insurance coverage accelerate medical exoskeleton market share by ensuring safety and affordability.

The aging population is significantly driving the medical exoskeleton market by increasing demand for mobility assistance. Elderly individuals face higher risks of mobility impairments, requiring advanced solutions for daily movement support. Medical exoskeletons help seniors regain mobility, reducing dependence on caregivers and improving overall quality of life. Rising cases of age-related conditions like arthritis and osteoporosis further catalyzes the demand for wearable exoskeletons. These devices provide enhanced stability and fall prevention, addressing key mobility challenges among older adults. Healthcare providers increasingly recommend exoskeleton-assisted rehabilitation, improving recovery outcomes for elderly patients after injuries. Advancements in lightweight and ergonomic exoskeleton designs enhance comfort, making them suitable for extended use. AI-driven adaptive movement support systems allow personalized assistance, catering to individual mobility needs.

Growing investment in research and development (R&D) is significantly driving the United States medical exoskeleton market demand. Government funding and private sector investments are accelerating the development of innovative exoskeleton technologies. Leading research institutions and universities collaborate with manufacturers, enhancing robotic mobility solutions for rehabilitation. For instance, in February 2025, Wandercraft initiated a pivotal clinical trial for its Personal Exoskeleton, the first self-balancing device for personal use. Designed for individuals with severe mobility impairments, it restores natural walking motions. The trial, underway at the James J. Peters VA Medical Center, will expand to Kessler Institute, evaluating its safety and effectiveness for spinal cord injuries. Moreover, venture capital funding for exoskeleton startups is fostering competition, leading to cost-effective and scalable products. The US Department of Defense invests heavily in exoskeleton research, supporting applications for injured veterans and soldiers. Advancements in AI-driven motion control and biomechanics improve exoskeleton efficiency and adaptive movement support. Medical device companies are focusing on lightweight materials and energy-efficient designs, enhancing user comfort. FDA approvals and regulatory support for wearable exoskeletons ensure faster market entry and increased adoption.

MEDICAL EXOSKELETON MARKET TRENDS:

Advancements in Wearable Robotics Technology

Continuous advancements in wearable robotics are significantly improving the functionality, comfort, and adaptability of medical exoskeletons. Technological progress is enabling more efficient movement, increased durability, and personalized support for users with mobility impairments. Innovations in lightweight materials, AI-driven motion control, and ergonomic designs enhance user experience, making exoskeletons more practical for rehabilitation and daily use. Engineered to minimize physical strain, modern exoskeletons support muscle engagement while facilitating natural movement patterns. These enhancements contribute to improved rehabilitation outcomes, allowing patients with neurological disorders, spinal cord injuries, and age-related mobility challenges to regain independence. Advanced sensor technology and real-time motion adjustment ensure seamless integration with the user's body movements. In July 2024, Arc'teryx and Skip introduced MO/GO exoskeleton hiking pants, reducing muscle fatigue by 40%, supporting knee joints, and enhancing endurance. This development highlights the broader application of wearable exoskeletons, showcasing their potential for rehabilitation and mobility assistance.

Increasing Demand for Mobility Assistance

Medical exoskeletons provide greater independence, improved mobility, and enhanced quality of life, making them an attractive choice for both rehabilitation centers and personal use. These devices assist users in regaining movement, enabling them to perform daily activities with greater ease. Advanced robotic exoskeletons equipped with AI-driven motion control and sensor-based adaptability further improve user experience. In January 2024, Harvard and Boston University introduced a soft robotic exoskeleton for Parkinson's patients, reducing falls and eliminating "freezing" episodes. This wearable exoskeleton with cable-driven actuators and movement sensors represents a major advancement in assistive mobility technology for neurological disorders. As age-related disorders such as arthritis, Parkinson's disease, and stroke become more common, there is a growing need for assistive technologies that enhance movement and reduce dependency.

Regulatory Approvals Driving Market Expansion

Regulatory approvals are crucial for expanding the medical exoskeleton market, ensuring product safety, efficacy, and widespread adoption. Certification from health authorities such as the FDA, CE, and Health Canada validates the performance of exoskeletons, increasing consumer and healthcare provider confidence. As more devices receive regulatory clearance, companies can introduce advanced solutions for rehabilitation and mobility support, strengthening market growth. Approval processes involve rigorous testing, ensuring exoskeletons meet safety standards and deliver effective assistance for users with mobility impairments. Government initiatives and supportive policies further accelerate regulatory approvals, encouraging innovation in wearable robotics for healthcare applications. In September 2024, Human in Motion Robotics secured approval to market XoMotion, the world's most advanced self-balancing, hands-free medical exoskeleton, in Canada. This breakthrough device is designed to assist patients with spinal cord injuries, stroke, and neurological conditions, representing a significant leap in medical exoskeleton technology.

MEDICAL EXOSKELETON INDUSTRY SEGMENTATION:

Analysis by Component:

  • Hardware
  • Software

Hardware leads the market with 84.0% of market share in 2025. Critical components like sensors, actuators, and power systems contribute significantly to exoskeleton performance and cost. Advanced motion sensors and AI-driven controllers enhance mobility assistance, ensuring precise movement adaptation for users. Lightweight yet durable materials like carbon fiber and titanium improve comfort and long-term usability. High-performance actuators and motors provide necessary force, enabling exoskeletons to assist movement efficiently. Battery advancements play a crucial role, as improved power efficiency extends operational time for continuous mobility support. The high cost of developing and manufacturing hardware makes it the largest revenue-generating segment in the market. Manufacturers focus on hardware improvements, integrating miniaturized components to enhance wearability and comfort. Hardware components undergo rigorous testing and regulatory approvals, further increasing development costs and market share. Innovations in biomechanical engineering ensure seamless interaction between exoskeleton hardware and the human body. Increasing demand for robotic rehabilitation solutions drives continuous improvements in hardware technologies.

Analysis by Type:

  • Powered Exoskeletons
  • Passive Exoskeletons

Powered exoskeletons lead the market with 87.8% of market share in 2025. These systems use electric motors, hydraulics, or pneumatics, providing active support for users with mobility impairments. AI-driven control systems enable real-time movement adjustments, ensuring adaptive support based on user needs. Rehabilitation centers and hospitals prefer powered exoskeletons, as they offer enhanced gait training for patients. Advanced battery technologies improve operational efficiency, reducing downtime and increasing user independence. The increasing prevalence of neurological disorders and spinal cord injuries drives demand for powered exoskeletons. Their ability to generate mechanical force makes them ideal for individuals with severe mobility challenges. Ongoing advancements in robotic exoskeletons continue to improve weight distribution and comfort for extended wear. Rising government support and insurance reimbursements make powered exoskeletons more accessible for medical and personal use. Leading manufacturers focus on developing lightweight, high-performance exoskeletons, expanding their application in healthcare. Wearable robotics innovations enhance energy efficiency, making powered exoskeletons more practical for daily use. The growing demand for automated rehabilitation solutions further cements powered exoskeletons as the leading market segment.

Analysis by Extremity:

  • Lower Extremity Medical Exoskeletons
  • Upper Extremity Medical Exoskeletons
  • Full Body

Lower extremity medical exoskeletons dominate the market with 52.6% of market share in 2025. Patients with spinal cord injuries, stroke, and neuromuscular disorders benefit significantly from lower limb exoskeletons. These devices enhance gait training, allowing individuals to regain walking ability through rehabilitation therapy. Hospitals and rehabilitation centers widely adopt lower extremity exoskeletons, increasing their market demand. Improved biomechanical engineering ensures seamless movement synchronization, enhancing user comfort and efficiency. The rising geriatric population further increases demand for lower limb support solutions. These exoskeletons reduce the risk of falls, improving mobility in elderly and disabled individuals. Technological advancements in motorized knee and hip support enhance functionality and ease of use. AI-driven motion assistance provides personalized support, ensuring adaptive rehabilitation therapy for users. The high cost of lower extremity exoskeletons reflects the complexity of their mechanics and design. Healthcare professionals prioritize lower limb exoskeletons, as walking rehabilitation is a primary focus in physical therapy. Research in lightweight and energy-efficient materials continues to improve lower extremity exoskeleton performance.

Analysis by Mobility:

  • Mobile Exoskeletons
  • Stationary Exoskeletons

Mobile exoskeletons are gaining traction due to their ability to provide real-time mobility assistance for users. These devices allow individuals with spinal cord injuries, stroke, or neurological disorders to regain independent movement. Advancements in AI-driven motion control and lightweight materials enhance comfort and adaptability. Rehabilitation centers and home users increasingly adopt mobile exoskeletons for daily mobility support. Battery efficiency and wireless connectivity improvements further enhance their practicality.

Stationary exoskeletons are widely used in rehabilitation centers for controlled therapy and muscle reactivation. These devices provide targeted assistance for patients recovering from spinal cord injuries, stroke, or musculoskeletal disorders. Healthcare professionals prefer stationary exoskeletons for supervised gait training and muscle strengthening programs. Advanced robotics and sensor technologies enable precise movement patterns, improving rehabilitation outcomes. Government initiatives and insurance coverage for robotic therapy support market growth. Hospitals and therapy centers continue investing in stationary exoskeletons for structured rehabilitation programs.

Analysis by End User:

  • Rehabilitation Centers
  • Physiotherapy Centers
  • Others

Rehabilitation centers lead the market with 50.7% of market share in 2025. These facilities integrate exoskeletons into therapy programs, helping patients regain mobility after injuries. Exoskeleton-assisted rehabilitation improves walking ability, making it a preferred solution for physical therapy. Rising cases of spinal cord injuries and stroke-related mobility issues drive demand for rehabilitation services. Medical professionals use exoskeletons for gait training, enhancing patient recovery outcomes. Hospitals and clinics partner with exoskeleton manufacturers, ensuring access to the latest rehabilitation technologies. Government healthcare initiatives support rehabilitation programs, increasing market growth for medical exoskeletons. Advanced AI-driven rehabilitation exoskeletons offer personalized therapy, improving patient progress tracking. Higher insurance reimbursements for exoskeleton-based therapy encourage rehabilitation centers to invest in this technology. Continuous research and development (R&D) in robotic rehabilitation solutions ensures exoskeletons remain an essential part of physiotherapy. The increasing focus on patient-centered care drives the adoption of medical exoskeletons in therapy.

Regional Analysis:

  • North America
    • United States
    • Canada
  • Europe
    • Germany
    • France
    • United Kingdom
    • Italy
    • Spain
    • Russia
    • Others
  • Asia Pacific
    • China
    • Japan
    • India
    • South Korea
    • Australia
    • Indonesia
    • Others
  • Latin America
    • Brazil
    • Mexico
    • Others
  • Middle East and Africa

In 2025, North America accounted for the largest market share of 36.5%. The United States and Canada invest heavily in medical robotics, accelerating exoskeleton research and development (R&D). Government initiatives and funding for assistive technologies fuels the market growth in the region. Leading medical exoskeleton manufacturers are headquartered in North America, strengthening the market landscape. High prevalence of spinal cord injuries and neurological disorders increases demand for mobility assistance solutions. Strong collaborations between research institutions and healthcare providers drive exoskeleton innovation and adoption. Expanding insurance coverage for exoskeleton-assisted rehabilitation enhances patient accessibility in the region. Military and defense research on wearable robotics further contributes to market expansion. Artificial intelligence (AI) and Internet of Things (IoT)-driven advancements in medical robotics position North America as a global leader in exoskeleton technology. Rising geriatric population and mobility impairments increase the demand for advanced rehabilitation solutions. Widespread presence of rehabilitation centers and hospitals accelerates medical exoskeleton integration into therapy. Venture capital investments in healthcare robotics startups fuel market expansion. Continuous technological improvements in wearable robotics strengthen North America's dominance.

KEY REGIONAL TAKEAWAYS:

UNITED STATES MEDICAL EXOSKELETON MARKET ANALYSIS

The United States hold 91.10% of the market share in North America. The rising incidence of spinal cord injuries and work-related musculoskeletal disorders is significantly accelerating the growth of the market. According to the National Spinal Cord Injury Statistical Center (NSCISC), approximately 17,730 new spinal cord injuries are diagnosed annually in the US, with nearly 291,000 individuals currently living with SCIs. These injuries often lead to long-term mobility impairments, increasing the need for effective rehabilitation solutions such as medical exoskeletons. Workplace injuries further contribute to market expansion, with musculoskeletal disorders being a major concern across industries. The US Bureau of Labor Statistics reported 502,380 cases of occupational musculoskeletal disorders in 2022, highlighting the growing demand for assistive mobility technologies to aid recovery. As more workers require advanced rehabilitation solutions, the adoption of medical exoskeletons continues to rise. Market growth is further supported by technological advancements in robotic exoskeletons, favorable insurance policies, and increased healthcare funding. Expanding research efforts, AI-driven innovations, and greater accessibility to rehabilitation technologies are expected to drive significant market expansion. With ongoing developments in wearable robotics and increasing support for mobility assistance, the US medical exoskeleton market outlook is set for substantial growth in the coming years.

ASIA PACIFIC MEDICAL EXOSKELETON MARKET ANALYSIS

The Asia Pacific market is expanding rapidly, driven by technological advancements and growing collaborations in assistive mobility solutions. In June 2022, CYBERDYNE Inc. partnered with Malaysia's Social Security Organization (SOCSO) to expand Cybernics Treatment using its Hybrid Assistive Limb (HAL) exoskeleton. This initiative has increased access to robotic rehabilitation for SOCSO-insured patients, accelerating the adoption of medical exoskeletons across Southeast Asia. India's health tech sector is also advancing in robotic exoskeleton development, contributing to regional market growth. In 2020, GenElek Technologies, a New Delhi-based startup, introduced an advanced robotic exoskeleton designed to assist individuals with mobility impairments. The rising prevalence of spinal cord injuries, neurological disorders, and workplace-related musculoskeletal conditions is further driving demand. Increasing government support, healthcare investments, and the expansion of rehabilitation facilities integrating exoskeleton technology are strengthening the market growth. Innovations in AI-driven mobility solutions and improvements in affordability are making exoskeletons more accessible across the region.

EUROPE MEDICAL EXOSKELETON MARKET ANALYSIS

The rising prevalence of neurological diseases is a key driver of the Europe market, fueling demand for assistive mobility solutions. According to the European Academy of Neurology (EAN), one in three people worldwide experience a neurological disorder in their lifetime. Conditions such as stroke, multiple sclerosis, Parkinson's disease, and spinal cord injuries significantly impact mobility, increasing the need for advanced rehabilitation technologies in Europe. Medical exoskeletons enhance mobility and independence, playing a vital role in neurological rehabilitation and long-term care. European governments and healthcare providers are heavily investing in robotic-assisted therapy, recognizing its benefits for patient recovery. Advancements in AI-powered exoskeletons and wearable robotics are further driving innovation and adoption across the region. Supportive reimbursement policies and growing integration of exoskeletons in hospitals and rehabilitation centers are strengthening market expansion. As neurological disorders continue to rise, the demand for cutting-edge medical exoskeletons is expected to grow. With continuous technological progress and increased healthcare funding, the Europe medical exoskeleton market is poised for substantial long-term growth.

LATIN AMERICA MEDICAL EXOSKELETON MARKET ANALYSIS

The rapidly aging population in Latin America is a major driver inducing growth in the medical exoskeleton market. Industry reports show that Brazil's population aged 65 and older grew by 57%, increasing from 14.1 million in 2010 to 22.2 million in 2022. This demographic now comprises 11% of the total population, with another 10 million individuals aged 60-65 requiring mobility assistance. Age-related conditions such as stroke, arthritis, and neurodegenerative disorders are further driving demand for assistive robotic exoskeletons. Governments and healthcare providers in Brazil, Mexico, and Argentina are investing in advanced rehabilitation technologies to enhance mobility solutions for elderly individuals. Expanding healthcare infrastructure and rising public awareness are contributing to greater adoption of wearable exoskeletons. AI-powered robotics and smart rehabilitation systems are further revolutionizing elderly care, making exoskeletons more effective and accessible.

MIDDLE EAST AND AFRICA MEDICAL EXOSKELETON MARKET ANALYSIS

The Middle East and Africa region market is expanding due to rising investments in robotic technologies and healthcare applications. The growing adoption of exoskeletons in rehabilitation centers and hospitals is propelling market growth across the region. In February 2021, Paramount Group and Sarcos Robotics signed an agreement to introduce advanced robotic systems for defense and industrial use. This initiative has paved the way for integrating exoskeleton technology into medical and assistive mobility solutions. The increasing prevalence of spinal cord injuries, stroke, and musculoskeletal disorders has intensified the need for robotic rehabilitation devices. Governments in the region are investing in healthcare infrastructure and promoting awareness of assistive technologies, further accelerating market expansion. International collaborations with leading exoskeleton manufacturers are enhancing accessibility to cutting-edge wearable robotics. As technological advancements continue, medical exoskeleton adoption is expected to rise across the Middle East and Africa.

COMPETITIVE LANDSCAPE:

Major companies are spending immensely in research and development (R&D) to improve exoskeleton efficiency, comfort, and functionality. Strategic partnerships between medical device firms and technology companies accelerate advancements in AI-driven mobility solutions. Moreover, AI-powered exoskeletons are transforming rehabilitation by enhancing mobility for individuals with spinal cord injuries and neurological conditions. To expand the horizon of AI integration, Ekso Bionics hosted a webinar in November 2024. Katherine Strausser, Principal Controls Engineer, joined the AI for Good webinar, "AI-powered Exo skeletons Revolutionizing Rehabilitation and Mobility". The session discusses advancements in exoskeleton technology and its impact on medical rehabilitation. Interested participants can register online. Additionally, major manufacturers are focusing on lightweight materials and ergonomic designs, enhancing user experience and long-term wearability. Continuous product innovation by key players ensures medical exoskeletons meet evolving rehabilitation and mobility assistance needs. Collaborations with healthcare providers and rehabilitation centers expand exoskeleton accessibility for patients with mobility impairments. Key players prioritize regulatory compliance and safety standards, ensuring approval from government agencies like FDA and CE. Expanding production capabilities and distribution networks allow companies to penetrate emerging markets and increase adoption. Investments in AI and sensor technology enhance real-time movement adaptation, providing personalized support for users.

The report provides a comprehensive analysis of the competitive landscape in the medical exoskeleton market with detailed profiles of all major companies, including:

  • B-Temia Inc.
  • Cyberdyne Inc.
  • Ekso Bionics Holdings Inc.
  • ExoAtlet Global S.A.
  • GOGOA Mobility Robots
  • Hocoma AG (DIH International Limited)
  • Myomo Inc.
  • ReWalk Robotics Ltd
  • Rex Bionics Ltd.
  • suitX Inc. (Ottobock SE & Co. KGaA)
  • Wandercraft
  • Wearable Robotics Srl

Table of Contents

1 Preface

2 Scope and Methodology

  • 2.1 Objectives of the Study
  • 2.2 Stakeholders
  • 2.3 Data Sources
    • 2.3.1 Primary Sources
    • 2.3.2 Secondary Sources
  • 2.4 Market Estimation
    • 2.4.1 Bottom-Up Approach
    • 2.4.2 Top-Down Approach
  • 2.5 Forecasting Methodology

3 Executive Summary

4 Introduction

  • 4.1 Overview
  • 4.2 Key Industry Trends

5 Global Medical Exoskeleton Market

  • 5.1 Market Overview
  • 5.2 Market Performance
  • 5.3 Impact of COVID-19
  • 5.4 Market Forecast

6 Market Breakup by Component

  • 6.1 Hardware
    • 6.1.1 Market Trends
    • 6.1.2 Market Forecast
  • 6.2 Software
    • 6.2.1 Market Trends
    • 6.2.2 Market Forecast

7 Market Breakup by Type

  • 7.1 Powered Exoskeletons
    • 7.1.1 Market Trends
    • 7.1.2 Market Forecast
  • 7.2 Passive Exoskeletons
    • 7.2.1 Market Trends
    • 7.2.2 Market Forecast

8 Market Breakup by Extremity

  • 8.1 Lower Extremity Medical Exoskeletons
    • 8.1.1 Market Trends
    • 8.1.2 Market Forecast
  • 8.2 Upper Extremity Medical Exoskeletons
    • 8.2.1 Market Trends
    • 8.2.2 Market Forecast
  • 8.3 Full Body
    • 8.3.1 Market Trends
    • 8.3.2 Market Forecast

9 Market Breakup by Mobility

  • 9.1 Mobile Exoskeletons
    • 9.1.1 Market Trends
    • 9.1.2 Market Forecast
  • 9.2 Stationary Exoskeletons
    • 9.2.1 Market Trends
    • 9.2.2 Market Forecast

10 Market Breakup by End User

  • 10.1 Rehabilitation Centers
    • 10.1.1 Market Trends
    • 10.1.2 Market Forecast
  • 10.2 Physiotherapy Centers
    • 10.2.1 Market Trends
    • 10.2.2 Market Forecast
  • 10.3 Others
    • 10.3.1 Market Trends
    • 10.3.2 Market Forecast

11 Market Breakup by Region

  • 11.1 North America
    • 11.1.1 United States
      • 11.1.1.1 Market Trends
      • 11.1.1.2 Market Forecast
    • 11.1.2 Canada
      • 11.1.2.1 Market Trends
      • 11.1.2.2 Market Forecast
  • 11.2 Asia-Pacific
    • 11.2.1 China
      • 11.2.1.1 Market Trends
      • 11.2.1.2 Market Forecast
    • 11.2.2 Japan
      • 11.2.2.1 Market Trends
      • 11.2.2.2 Market Forecast
    • 11.2.3 India
      • 11.2.3.1 Market Trends
      • 11.2.3.2 Market Forecast
    • 11.2.4 South Korea
      • 11.2.4.1 Market Trends
      • 11.2.4.2 Market Forecast
    • 11.2.5 Australia
      • 11.2.5.1 Market Trends
      • 11.2.5.2 Market Forecast
    • 11.2.6 Indonesia
      • 11.2.6.1 Market Trends
      • 11.2.6.2 Market Forecast
    • 11.2.7 Others
      • 11.2.7.1 Market Trends
      • 11.2.7.2 Market Forecast
  • 11.3 Europe
    • 11.3.1 Germany
      • 11.3.1.1 Market Trends
      • 11.3.1.2 Market Forecast
    • 11.3.2 France
      • 11.3.2.1 Market Trends
      • 11.3.2.2 Market Forecast
    • 11.3.3 United Kingdom
      • 11.3.3.1 Market Trends
      • 11.3.3.2 Market Forecast
    • 11.3.4 Italy
      • 11.3.4.1 Market Trends
      • 11.3.4.2 Market Forecast
    • 11.3.5 Spain
      • 11.3.5.1 Market Trends
      • 11.3.5.2 Market Forecast
    • 11.3.6 Russia
      • 11.3.6.1 Market Trends
      • 11.3.6.2 Market Forecast
    • 11.3.7 Others
      • 11.3.7.1 Market Trends
      • 11.3.7.2 Market Forecast
  • 11.4 Latin America
    • 11.4.1 Brazil
      • 11.4.1.1 Market Trends
      • 11.4.1.2 Market Forecast
    • 11.4.2 Mexico
      • 11.4.2.1 Market Trends
      • 11.4.2.2 Market Forecast
    • 11.4.3 Others
      • 11.4.3.1 Market Trends
      • 11.4.3.2 Market Forecast
  • 11.5 Middle East and Africa
    • 11.5.1 Market Trends
    • 11.5.2 Market Breakup by Country
    • 11.5.3 Market Forecast

12 SWOT Analysis

  • 12.1 Overview
  • 12.2 Strengths
  • 12.3 Weaknesses
  • 12.4 Opportunities
  • 12.5 Threats

13 Value Chain Analysis

14 Porters Five Forces Analysis

  • 14.1 Overview
  • 14.2 Bargaining Power of Buyers
  • 14.3 Bargaining Power of Suppliers
  • 14.4 Degree of Competition
  • 14.5 Threat of New Entrants
  • 14.6 Threat of Substitutes

15 Price Analysis

16 Competitive Landscape

  • 16.1 Market Structure
  • 16.2 Key Players
  • 16.3 Profiles of Key Players
    • 16.3.1 B-Temia Inc.
      • 16.3.1.1 Company Overview
      • 16.3.1.2 Product Portfolio
    • 16.3.2 Cyberdyne Inc.
      • 16.3.2.1 Company Overview
      • 16.3.2.2 Product Portfolio
      • 16.3.2.3 Financials
    • 16.3.3 Ekso Bionics Holdings Inc.
      • 16.3.3.1 Company Overview
      • 16.3.3.2 Product Portfolio
    • 16.3.4 ExoAtlet Global S.A.
      • 16.3.4.1 Company Overview
      • 16.3.4.2 Product Portfolio
    • 16.3.5 GOGOA Mobility Robots
      • 16.3.5.1 Company Overview
      • 16.3.5.2 Product Portfolio
    • 16.3.6 Hocoma AG (DIH International Limited)
      • 16.3.6.1 Company Overview
      • 16.3.6.2 Product Portfolio
    • 16.3.7 Myomo Inc.
      • 16.3.7.1 Company Overview
      • 16.3.7.2 Product Portfolio
      • 16.3.7.3 Financials
    • 16.3.8 ReWalk Robotics Ltd
      • 16.3.8.1 Company Overview
      • 16.3.8.2 Product Portfolio
      • 16.3.8.3 Financials
    • 16.3.9 Rex Bionics Ltd.
      • 16.3.9.1 Company Overview
      • 16.3.9.2 Product Portfolio
    • 16.3.10 suitX Inc. (Ottobock SE & Co. KGaA)
      • 16.3.10.1 Company Overview
      • 16.3.10.2 Product Portfolio
    • 16.3.11 Wandercraft
      • 16.3.11.1 Company Overview
      • 16.3.11.2 Product Portfolio
    • 16.3.12 Wearable Robotics Srl
      • 16.3.12.1 Company Overview
      • 16.3.12.2 Product Portfolio
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