Marushika is expanding its HealthTech capabilities into Medical Robotics and AI-Enabled Clinical Technology, bringing advanced technology-led solutions to hospitals, medical institutions and rehabilitation centres. Our focus is on technologies that complement clinical expertise by enabling precise, repeatable and personalised rehabilitation, improving the ability of healthcare professionals to support patients with complex mobility and neurological rehabilitation needs. At the forefront of this portfolio is an advanced powered lower-limb robotic exoskeleton for overground gait rehabilitation—Designed for patients with walking impairments caused by stroke, spinal cord injury, traumatic brain injury, Parkinson’s disease, multiple sclerosis and other neurological or musculoskeletal conditions, it helps patients in standing, walking and progressively participating in gait training under professional clinical supervision. The underlying technology supports patient-specific adjustment of gait parameters and different levels of assisted movement.
We enable organizations & institutions to design, deliver, and scale intelligent learning ecosystems across:
Connect with us to design an AI-powered learning ecosystem tailored to your organization.
Helping patients experience standing and walking in a real-world rehabilitation environment. - Powered lower-limb robotic assistance for gait rehabilitation - Supports overground walking, beyond conventional stationary training environments - Designed to assist standing and repeated walking practice - Supports natural gait-pattern training - Suitable for structured rehabilitation under clinical supervision
Rehabilitation configured around the patient's physical ability and stage of recovery. - Customisable stride length, step height and walking speed - Multiple anthropometric adjustments for individual patient fitting - Supports both active and assisted gait-training approaches - Patient-specific settings enable progressive rehabilitation - Adjustments can be made as mobility and participation improve
Different levels of robotic assistance for different stages of rehabilitation. - Passive Assistance for patients requiring substantial support - Active Assistance for patients capable of initiating movement - Step-by-Step Assistance for gradual adaptation to robotic gait training - Affected-Limb Training for targeted support where one leg requires greater assistance - Allows therapists to progressively adapt the rehabilitation programme
Combining robotic precision with clinician oversight and patient participation. - Digital control interface for medical professionals - Smart wireless crutch-based control for supported patient interaction - Therapist-accessible controls during rehabilitation sessions - Real-time adjustment of training parameters - Designed to keep the rehabilitation professional in control of the therapy programme
Technology engineered to support controlled clinical rehabilitation. - Emergency shutdown capability - Protection mechanisms for spasticity-related movement - Ergonomic therapist support handles - Optional/supportive suspension architecture for additional fall protection - Patient-support structures designed to enhance stability during training - Durable, clinically oriented materials designed for repeated use
Moving rehabilitation from activity-based therapy towards measurable, structured progression. - Digital management of patient training information - Session parameters can be configured and reviewed by clinicians - Supports systematic tracking of rehabilitation programmes - Enables consistent delivery of prescribed gait parameters - Creates a foundation for future integration with clinical analytics, AI-assisted decision support and digital rehabilitation platforms
Traditional physiotherapy remains fundamental to patient recovery. Medical robotics adds another capability to the rehabilitation ecosystem by helping clinicians deliver controlled, repetitive and patient-specific gait training for patients who may require significant assistance with standing and walking. By combining therapist expertise with powered robotic movement, healthcare institutions can introduce a more structured approach to gait rehabilitation—supporting consistency of movement, progressive patient participation and measurable rehabilitation programmes.
Suitable Clinical Applications
Stroke Rehabilitation
Supporting gait retraining following neurological motor impairment.
Spinal Cord Injury Rehabilitation
Assisting controlled standing and walking practice for eligible patients.
Traumatic Brain Injury
Supporting gait and mobility rehabilitation as part of a multidisciplinary programme.
Multiple Sclerosis & Neurological Conditions
Technology-assisted gait training for eligible patients experiencing mobility impairment.
Post-Mobility Impairment Rehabilitation
Supporting structured gait recovery where clinically appropriate.
Enabling hospitals and healthcare institutions to build next-generation rehabilitation capabilities through medical robotics, intelligent clinical technology and data-driven care.
We empower enterprises through strategic advisory & execution leadership, co-creating scalable solutions across critical consulting, network services, and IT infrastructure
H 32, 2nd Floor, Office No. 204, Sector-63, Noida, Uttar Pradesh, India - 201301
Flat No. 511, Prakashdeep Building, 5th Floor, 7 Tolstoy Marg, New Delhi, India - 110001
info@marushika.in 0120 4290383
Share your requirements and our team will connect with you to understand your needs and explore the right solutions.