Rehabilitation
Robotics is a system of examine dedicated to understanding & augmenting analysis via use of robotic devices. Use of such kind of
robots providing expansion in the use advanced devices tailored for assisting the
various sensor motor functions (e.g. hand, arm, leg, and ankle), assessment of sensorimotor
performance (ability to move) of patient and development of different schemes
of assisting therapeutic training. Rehabilitation of such robots frequently by
patient set’s up to aprecious adjunct to therapy in persons, which suffers from
motor impairments, mainly due to stroke. The robotics also approve patients
suffering from numerous types of illness, injury, or disease, including
amputations, cancer, arthritis, orthopedic injuries, cardiac disease,
neurological problems, spinal cord injuries, stroke, and traumatic brain
injuries. Patients with rigorous paresis can be given with reflexive movement
of the upper limb, via robotic rehabilitation. For patients with some movement
power, robots supported by the weight of limb in contrast to a gravity, due to
the physical interaction between subject and the robot.
According to
study, “Global Rehabilitation Robotics
Market 2016-2025 by Product Type (Exoskeletons, MPC Prosthetics, Assistive Robots),
Application (Stroke, Orthopedics, Others), Body, Mobility and Region” some of the other major
companies operating in the global rehabilitation robotics market are AlterG,
Inc., BionX Medical Technologies, Inc., Assistive Innovations Corp., Chas. A. Blatchford
& Sons Ltd. (Endolite), Bionik Laboratories Corp. (Interactive Motion
Technologies), Chatanoonga, Ekso Bionics, Cyberdyne, Inc., Freedom Innovations,
LLC, Focal Meditech, Instead Technologies Ltd., MRISAR, Hocoma AG, Kinova
Robotics, Patterson, Invacare Corporation, Otto Bock HealthCare GmbH, Myomo
Inc., InMotion Robotics, Parker Hannifin Corporation, Ossur, ReWalk Robotics
Ltd.,Honda Motor, Motorika, Teh Lin Prosthetic & Orthopaedic Inc., Tyromotion,
Aretech, Rehab-Robotics Company Limited, SF Robot, SynTouch LLC, Rex Bionics
Plc., U.S. Bionics, Inc. (suitX), Touch Bionics Inc.
Based on product
type, global rehabilitation robotics market is categorized into microprocessor-controlled
prosthetics (MPC) prosthetics, therapeutic robots, healthcare exoskeletons,
assistive robots and others. Based on robot mobility, market is segmented into
fixed-base rehabilitation robots and mobile rehabilitation robots. Based on
body function, market is segmented into lower extremity rehabilitation robots.In
addition, based on application, market is segmented into orthopedics, military
strength training, neuro-rehabilitation, stroke and others. Furthermore, based
on end-user, market is segmented into hospitals, rehabilitation centers and
medical clinics.
The global
rehabilitation robotics is primarily driven by the increasing handicap
assistive robots, followed by accelerating adoption of MPC prosthetics, growing
geriatric population, increasing disability & amputation caused by
orthopedic disorder & stroke, rising healthcare exoskeleton systems and some
of the other major diseases or accidents across the globe. In addition, the high
cost of rehabilitation robotic devices and stringent government regulations adding
to the main factors restraining development of the market, particularly in low &
medium-income countries. Moreover, increase in research & development (R
& D) activities and insurance coverage for exoskeletons are expected to
show some of the new trends of the market.
Globally, North
America holds the foremost share in terms of the market revenue in terms of value
which is primarily due to increase in technological innovations. It is expected
that the global rehabilitation robotics market to grow significantly owing to the
growing prevalence of conditions such as rheumatoid arthritis, cerebral palsy,
dementia, spinal cord injury, and other age-related disabilities.
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Ken Research
Ankur Gupta, Head Marketing & Communications
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+91-9015378249
Ken Research
Ankur Gupta, Head Marketing & Communications
Sales@kenresearch.com
+91-9015378249
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