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市场调查报告书
商品编码
1801036
2025 年至 2033 年復健机器人市场报告,按类型(治疗机器人、外骨骼机器人、辅助机器人等)、病患类型(成人、儿科)、最终用户(復健中心、医院等)和地区划分Rehabilitation Robots Market Report by Type (Therapeutic Robots, Exoskeleton Robots, Assistive Robots, and Others), Patient Type (Adult, Pediatric), End User (Rehabilitation Centers, Hospitals, and Others), and Region 2025-2033 |
2024年,全球康復机器人市场规模达15.43亿美元。展望未来,预计到2033年,该市场规模将达到68.091亿美元,2025-2033年期间的复合年增长率(CAGR)为17.9%。人口老化加剧、残疾人士人数增加、技术进步以及政府措施和资金投入是推动市场成长的主要动力。
人口老化
人口老化极大地推动了康復机器人市场的成长。例如,根据世界卫生组织 (WHO) 的数据,2020 年 60 岁及以上成年人的数量将超过 5 岁以下儿童的数量。 2015 年至 2050 年间,全球 60 岁以上人口的比例将几乎翻一番,从 12% 增加到 22%。随着老化,中风、帕金森氏症、关节炎和其他损害行动能力和独立性的肌肉骨骼疾病等慢性疾病的发生率也会上升。例如,根据世界卫生组织 (WHO) 发表的一篇文章,约 73% 的骨关节炎患者年龄超过 55 岁。此外,对能够改善老年人生活品质和独立性的辅助技术的需求也不断增长。復健机器人就属于这个类别,它可以帮助老年人在受伤或手术后恢復活动能力、力量和功能。例如,根据美国国家医学图书馆发表的一篇文章,运动復健机器人主要针对老年人设计,可以在患者主动操作的同时,协助他们进行个人化的体能训练。这些机器人可以增强患者的主观復健效果,并促进復健治疗的其他方面。这些因素进一步增加了市场需求。
癫痫和其他慢性疾病盛行率上升
癫痫和其他慢性疾病的发生率不断上升,推动了对康復机器人的需求。随着癫痫等慢性疾病发生率的上升,对復健服务的需求也随之增长。復健机器人可以协助受这些疾病影响的患者进行物理治疗和復原过程,帮助他们恢復活动能力、力量和独立性。例如,2023年1月,HN Reliance Foundation Hospital (RFH) 从 Hocoma AG 购买了一台名为 Lokomat 的外骨骼復健机器人,用于辅助精准物理治疗。机器人物理治疗与手法治疗和其他医疗支援相结合,可以帮助患者更快地从创伤中恢復。此外,慢性疾病会给协助日常活动和復健运动的照护者带来沉重的负担。復健机器人可以作为治疗过程中的助手,减轻护理人员的身体负担,并确保患者获得持续有效的治疗。例如,2024年4月,纽约州立大学石溪分校(Stony Brook University)的一个研究团队计划为肌萎缩侧索硬化症(ALS)患者及其护理人员开发一款护理机器人助手(CART),利用计算机和人工智能(AI)技术、机械工程以及医学专家的咨询,缓解ALS患者在病情发展过程中遇到的诸多困难。这些因素将进一步提升復健市场的占有率。
技术进步
技术进步是推动復健机器人市场的重要因素之一。这些穿戴式装置能够支持和增强肢体的运动,帮助因中风、脊髓损伤或其他神经系统疾病而行动不便的个人。先进的外骨骼利用感测器来检测运动意图并提供辅助,从而促进自然的运动模式并减少肌肉疲劳。例如,义大利理工学院 (Istituto Italiano di Tecnologia) 和义大利国家工伤保险研究所 (National Institute for Insurance against Damages at Work) 义肢中心 (Prosthetic Center of INAIL) 的联合实验室 Rehab Technologies IIT - INAIL 推出了一款名为 TWIN 的新型下肢机器人外骨骼,方便患者佩戴。此外,人工智慧演算法也被整合到復健机器人中,用于分析资料、调整治疗方案并个人化治疗计画。机器学习技术使机器人能够从与患者的互动中学习,并动态调整辅助水平,从而优化復健效果。例如,2023年7月,专注于復健机器人和人工智慧的中国科技新创公司傅氏智慧在上海世界人工智慧大会上发布了其第一代人形机器人。由于类似ChatGPT的工具所提供的认知智能,该机器人可以与人类互动,并执行各种动作和任务。这些因素进一步推动了该行业的成长。
The global rehabilitation robots market size reached USD 1,543 Million in 2024. Looking forward, the market is expected to reach USD 6,809.1 Million by 2033, exhibiting a growth rate (CAGR) of 17.9% during 2025-2033. The increasing aging population, rising prevalence of disabilities, technological advancements, and government initiatives and funds are primarily driving the market growth.
Aging Population
The aging population is significantly driving the growth of the rehabilitation robots market. For instance, according to the World Health Organization (WHO), in 2020, the number of adults aged 60 and older outweighed children under the age of five. Between 2015 and 2050, the share of the world's population over 60 will nearly double, from 12% to 22%. With aging comes a higher incidence of chronic diseases such as stroke, Parkinson's disease, arthritis, and other musculoskeletal disorders that impair mobility and independence. For instance, according to an article published by the World Health Organization (WHO), about 73% of people living with osteoarthritis are older than 55 years. Apart from this, there is a rising demand for assistive technologies that can improve the quality of life and independence of elderly individuals. Rehabilitation robots fit into this category by helping seniors regain mobility, strength, and functionality following injuries or surgeries. For instance, according to an article published by the National Library of Medicine, the motion rehabilitation robot is primarily designed for older people and can assist them with individualized physical activity routines while the patient is actively operating it. These robots can augment the patient's subjective recovery and other aspects of their rehabilitation treatment. These factors are further adding to the market demand.
Rising Prevalence of Epilepsy and Other Chronic Diseases
The increasing incidence of epilepsy and other chronic diseases is driving the demand for rehabilitation robots. As the incidence of chronic diseases such as epilepsy increases, so does the demand for rehabilitation services. Rehabilitation robots can assist in the physical therapy and recovery process for individuals affected by these conditions, helping them regain mobility, strength, and independence. For instance, in January 2023, HN Reliance Foundation Hospital (RFH) acquired a rehab robot called Lokomat - exoskeleton from Hocoma AG, which aids in precision physiotherapy. Robotic physiotherapy, when combined with manual therapy and other medical support, can help patients recover faster from trauma. Besides this, chronic diseases can place a significant burden on caregivers who assist with daily activities and rehabilitation exercises. Rehabilitation robots can serve as assistants in therapy sessions, reducing the physical strain on caregivers and ensuring consistent and effective therapy for patients. For instance, in April 2024, a team of Stony Brook University researchers planned to develop a Caregiving Robot Assistant (CART) for ALS patients and their caregivers to alleviate the many difficulties that accompany advancing ALS by using computer and artificial intelligence (AI) technologies, mechanical engineering, and consultation by medical experts. These factors are further contributing to the rehabilitation market share.
Technological Advancements
Technological advancements are one of the significant factors driving the rehabilitation robot's market. These are wearable devices that support and enhance the movement of limbs. They assist individuals with mobility impairments due to stroke, spinal cord injury, or other neurological conditions. Advanced exoskeletons use sensors to detect movement intentions and provide assistance, accordingly, promoting natural movement patterns and reducing muscle fatigue. For instance, Rehab Technologies IIT - INAIL, the joint laboratory of Istituto Italiano di Tecnologia (IIT-Italian Institute of Technology) and the Prosthetic Center of INAIL (the prosthetic unit of the National Institute for Insurance against Accidents at Work), launched the new robotic exoskeleton for lower limbs, known as TWIN, which will make it easier for patients to wear. Besides this, AI algorithms are being integrated into rehabilitation robots to analyze data, adapt therapy protocols, and personalize treatment plans. Machine learning techniques enable robots to learn from patient interactions and adjust their assistance levels dynamically, optimizing rehabilitation outcomes. For instance, in July 2023, Fourier Intelligence, a Chinese technology startup focused on rehabilitative robotics and artificial intelligence, launched its first-generation humanoid robot at the World Artificial Intelligence Conference in Shanghai. The robot can interact with humans and perform a variety of actions and tasks thanks to the cognitive intelligence supplied by ChatGPT-like tools. These factors are further propelling the industry's growth.
According to the rehabilitation market overview, therapeutic robots are designed to assist in delivering therapeutic interventions and rehabilitation exercises to patients. They often incorporate advanced technologies such as artificial intelligence, sensors, and interactive interfaces to tailor treatment plans and monitor patient progress. Moreover, exoskeleton robots are wearable devices that augment human capabilities, particularly in mobility assistance and physical rehabilitation. They provide powered support to assist or enhance the movement of limbs, enabling individuals with mobility impairments to perform activities of daily living more independently. Besides this, assistive robots are designed to assist individuals with disabilities or age-related impairments in performing daily activities and improving their quality of life. They range from simple task-specific robots to more complex systems capable of autonomous navigation and interaction.
As the global population ages, there is an increasing prevalence of chronic conditions such as stroke, spinal cord injury, and orthopedic issues. Rehabilitation robots are crucial in providing intensive and effective therapy to help adults regain mobility, independence, and improve quality of life. While early intervention is crucial for children with developmental delays, cerebral palsy, and neuromuscular disorders. Rehabilitation robots provide structured and engaging therapies that promote motor development, cognitive skills, and social interaction from a young age.
Rehabilitation centers utilize therapeutic robots for intensive and repetitive therapy sessions tailored to individual patient needs. These robots assist in exercises that improve motor function, range of motion, and strength following injuries or surgeries. Patients undergoing rehabilitation for neurological conditions or orthopedic injuries benefit from robot-assisted gait training devices. These systems support walking rehabilitation by providing adjustable levels of assistance and feedback to improve gait patterns and balance. While hospitals use rehabilitation robots to support recovery after joint replacements, fractures, and orthopedic surgeries. These robots facilitate early mobilization, reduce complications, and improve patient outcomes by delivering targeted exercises and monitoring progress.
The report has also provided a comprehensive analysis of all the major regional markets, which include North America (the United States and Canada); Asia Pacific (China, Japan, India, South Korea, Australia, Indonesia, and others); Europe (Germany, France, the United Kingdom, Italy, Spain, Russia, and others); Latin America (Brazil, Mexico, and others); and the Middle East and Africa.
The growth of North America is driven by advanced healthcare infrastructure, substantial investment in medical technology, and a high prevalence of chronic diseases and disabilities. Moreover, Europe is a significant market for rehabilitation robots, characterized by increasing adoption of robotic technologies in healthcare settings and supportive government initiatives. Besides this, the Asia-Pacific is experiencing rapid growth in the adoption of rehabilitation robots, fueled by increasing healthcare expenditures, improving healthcare infrastructure, and rising awareness about robotic-assisted therapies.