Medical Robots Assisting Surgery and Rehabilitation
Collection Robots 2026.09.18

Medical Robots Assisting Surgery and Rehabilitation

A system that refines physician operation and trains patient movements

Medical robots are more tools that accurately convey the plans and operations of healthcare professionals than machines that diagnose and perform surgery on their own. Surgical robots move instruments within small incisions, and orthopedic systems guide planned cutting boundaries. Rehabilitation robots maintain a consistent intensity and movement for repetitive training. Safety education is also essential.

This list groups actual systems used in soft tissue surgery, joint replacement, bronchoscopy, and gait rehabilitation. The focus is to distinguish what each device automates and what healthcare professionals assess directly. Since the scope of approval and supplying countries may vary, it's necessary to check the manufacturer's regional guidance.

da Vinci 5

The da Vinci 5 is the first item to consider in the list that distinguishes the scope of assistance from healthcare professionals and robots. As a robotic-assisted surgical system from Intuitive Surgical, it supports minimally invasive surgery. It is a surgical platform where surgeons manipulate precise instruments while viewing magnified images on a console. By focusing on this feature of the da Vinci 5, the role it plays can be compared specifically to other systems in this subject.

Details on the da Vinci 5 include: Developer/Manufacturer 'Intuitive Surgical', Type 'Robotic-Assisted Surgical System', Main Task 'Minimally Invasive Surgery Support', Operating Mode 'Surgeon Console & Multi-Articulated Instruments', Operational Stage 'Products for Medical Institutions'. When actually selecting or evaluating, refer to the criteria 'The adaptation indications for patients and the expertise of healthcare professionals take precedence over mere equipment ownership—da Vinci 5'. Regions of supply, specifications, and operational stages for the da Vinci 5 should be verified based on the latest guidance from official sources.
개발·제조 Intuitive Surgical 유형 로봇 보조 수술 시스템 주요 임무 최소침습 수술 지원 작동 방식 의사 콘솔·다관절 기구 운용 단계 의료기관용 제품
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Mako SmartRobotics

The Mako SmartRobotics is the second item to consider in the list that distinguishes the scope of assistance from healthcare professionals and robots. As an orthopedic surgical robot from Stryker, it supports knee and hip replacement procedures. It combines patient-specific surgical planning with boundary control to assist in bone cutting and implant placement. Focusing on this feature of Mako SmartRobotics allows for a specific role comparison with other systems in the subject.

Details on Mako SmartRobotics include: Developer/Manufacturer 'Stryker', Type 'Orthopedic Surgical Robot', Main Task 'Knee and Hip Replacement Support', Operating Mode 'CT-Based Planning & Haptic Robotic Arm', Operational Stage 'Products for Medical Institutions'. When actually selecting or evaluating, take note of the criterion 'Since the approval scope of medical devices varies by region, it is crucial to check the hospital and manufacturer's guidance—Mako SmartRobotics'. Regions of supply, specifications, and operational stages for Mako SmartRobotics should be verified based on the latest guidance from official sources.
개발·제조 Stryker 유형 정형외과 수술 로봇 주요 임무 무릎·고관절 치환술 지원 작동 방식 CT 기반 계획·햅틱 로봇팔 운용 단계 의료기관용 제품
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ROSA Knee System

The ROSA Knee System is the third item to consider in the list that distinguishes the scope of assistance from healthcare professionals and robots. As an orthopedic surgical robot from Zimmer Biomet, it supports planning and positioning for knee replacement surgery. It collects anatomical information during surgery to assist in planning and instrument positioning. Focusing on this feature of the ROSA Knee System facilitates a specific role comparison with other systems in the subject.

Details on the ROSA Knee System include: Developer/Manufacturer 'Zimmer Biomet', Type 'Orthopedic Surgical Robot', Main Task 'Knee Replacement Planning and Positioning Support', Operating Mode 'Imaging, Sensors, and Robot Arm', Operational Stage 'Products for Medical Institutions'. When actually selecting or evaluating, pay attention to the criterion 'The operational system including education, consumables, and maintenance influences clinical application—ROSA Knee System'. Regions of supply, specifications, and operational stages for the ROSA Knee System should be verified based on the latest guidance from official sources.
개발·제조 Zimmer Biomet 유형 정형외과 수술 로봇 주요 임무 무릎 치환술 계획과 위치 안내 작동 방식 영상·센서·로봇팔 운용 단계 의료기관용 제품
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Hugo RAS System

The Hugo RAS System is the fourth item to consider in the list that distinguishes the scope of assistance from healthcare professionals and robots. As a robotic-assisted surgical system from Medtronic, it supports minimally invasive surgery for soft tissues. It combines modular arms and an open console to flexibly arrange the surgical room. By focusing on this feature of the Hugo RAS System, its role can be compared specifically to other systems in this subject.

Details on the Hugo RAS System include: Developer/Manufacturer 'Medtronic', Type 'Robotic-Assisted Surgical System', Main Task 'Soft Tissue Minimally Invasive Surgery Support', Operating Mode 'Individual Robotic Arms & Surgeon's Console', Operational Stage 'Regionally Approved Products'. When actually selecting or evaluating, consult the criterion 'The adaptation indications for patients and the expertise of healthcare professionals take precedence over mere equipment ownership—Hugo RAS System'. Regions of supply, specifications, and operational stages for the Hugo RAS System should be verified based on the latest guidance from official sources.
개발·제조 Medtronic 유형 로봇 보조 수술 시스템 주요 임무 연조직 최소침습 수술 지원 작동 방식 개별 로봇팔·의사 콘솔 운용 단계 지역별 허가 제품
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Ion Endoluminal System

The Ion Endoluminal System is the fifth item to consider in the list that distinguishes the scope of assistance from healthcare professionals and robots. As a robotic-assisted bronchoscope from Intuitive Surgical, it supports access to lung lesions and biopsy assistance. It is designed to guide a thin, flexible catheter to deep peripheral lesions in the lungs. By focusing on this feature of the Ion Endoluminal System, its role can be specifically compared to other systems in this subject.

Details on the Ion Endoluminal System include: Developer/Manufacturer 'Intuitive Surgical', Type 'Robotic-Assisted Bronchoscope', Main Task 'Access to Lung Lesions and Biopsy Assistance', Operating Mode 'Shape-Sensing Catheter & Navigation', Operational Stage 'Products for Medical Institutions'. When actually selecting or evaluating, refer to the criterion 'Since the approval scope of medical devices varies by region, it is crucial to check the hospital and manufacturer's guidance—Ion Endoluminal System'. Regions of supply, specifications, and operational stages for the Ion Endoluminal System should be verified based on the latest guidance from official sources.
개발·제조 Intuitive Surgical 유형 로봇 보조 기관지경 주요 임무 폐 병변 접근과 생검 지원 작동 방식 형상 감지 카테터·내비게이션 운용 단계 의료기관용 제품
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Lokomat

The Lokomat is the sixth item to consider in the list that distinguishes the scope of assistance from healthcare professionals and robots. As a gait rehabilitation robot from Hocoma, it supports repetitive walking training for patients with neurological conditions. It adjusts leg movements and weight support to provide repeatable gait therapy. Focusing on this feature of the Lokomat enables specific comparisons to be made with other systems in this subject.

Details on the Lokomat include: Developer/Manufacturer 'Hocoma', Type 'Gait Rehabilitation Robot', Main Task 'Repetitive Walking Training for Neurological Patients', Operating Mode 'Exoskeleton, Weight Support, Treadmill', Operational Stage 'Products for Medical Institutions'. When actually selecting or evaluating, consult the criterion 'The operational system including education, consumables, and maintenance influences clinical application—Lokomat'. Regions of supply, specifications, and operational stages for the Lokomat should be verified based on the latest guidance from official sources.
개발·제조 Hocoma 유형 보행 재활 로봇 주요 임무 신경계 환자의 반복 보행 훈련 작동 방식 외골격·체중 지지·트레드밀 운용 단계 의료기관용 제품
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Medical HAL Lower Limb

The Medical HAL Lower Limb is the seventh item to consider in the list that distinguishes the scope of assistance from healthcare professionals and robots. As a wearable rehabilitation robot from CYBERDYNE, it supports rehabilitation training for lower limb functionality recovery. It provides supportive movements reflecting the user's intention of motion, assisting in neuromuscular feedback training. By focusing on this feature of the Medical HAL Lower Limb, its role can be specifically compared to other systems in this subject.

Details on the Medical HAL Lower Limb include: Developer/Manufacturer 'CYBERDYNE', Type 'Wearable Rehabilitation Robot', Main Task 'Lower Limb Function Recovery Training', Operating Mode 'Bioelectrical Signals & Powered Exoskeleton', Operational Stage 'Medical Device'. When actually selecting or evaluating, take note of the criterion 'The adaptation indications for patients and the expertise of healthcare professionals take precedence over mere equipment ownership—Medical HAL Lower Limb'. Regions of supply, specifications, and operational stages for the Medical HAL Lower Limb should be verified based on the latest guidance from official sources.
개발·제조 CYBERDYNE 유형 착용형 재활 로봇 주요 임무 하지 기능 회복 훈련 작동 방식 생체전기 신호·동력 외골격 운용 단계 의료기기
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ReWalk Personal Exoskeleton

The ReWalk Personal Exoskeleton is the eighth item to consider in the list that distinguishes the scope of assistance from healthcare professionals and robots. As a wearable walking robot from ReWalk Robotics, it assists users with spinal cord injuries in walking. It enables selected users to stand and walk by driving the hip and knee joints. By focusing on this feature of the ReWalk Personal Exoskeleton, its role can be specifically compared to other systems in this subject.

Details on the ReWalk Personal Exoskeleton include: Developer/Manufacturer 'ReWalk Robotics', Type 'Wearable Walking Robot', Main Task 'Walking Assistance for Users with Spinal Cord Injuries', Operating Mode 'Powered Exoskeleton, Crutches, Wearable Control', Operational Stage 'Products for Regulated Markets'. When actually selecting or evaluating, consult the criterion 'Since the approval scope of medical devices varies by region, it is crucial to check the hospital and manufacturer's guidance—ReWalk Personal Exoskeleton'. Regions of supply, specifications, and operational stages for the ReWalk Personal Exoskeleton should be verified based on the latest guidance from official sources.
개발·제조 ReWalk Robotics 유형 착용형 보행 로봇 주요 임무 척수손상 사용자의 보행 보조 작동 방식 동력 외골격·목발·착용 제어 운용 단계 허가 시장용 제품
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The mere name of a robot does not guarantee treatment effects or surgical outcomes. The patient's condition and indications, the healthcare provider's expertise, and the hospital's operational system should be considered before equipment selection. Wearable rehabilitation devices may not be suitable for everyone and should be trained under professional evaluation and supervision.

From the patient's perspective, it's important to hear from healthcare professionals why a certain method is necessary rather than simply whether a specific device is available. Medical institutions should prepare not only for equipment purchase but also for training, consumables, maintenance, and data management. This list should be appropriately used as a technical understanding material rather than a substitute for medical consultation.

이 포스팅은 쿠팡 파트너스 활동의 일환으로, 이에 따른 일정액의 수수료를 제공받습니다.

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