The startup operates a neurorehabilitation center that utilizes personalized high-intensity therapeutic augmentation strategies to facilitate measurable recovery in patients with neurological and orthopedic impairments. By integrating various disciplines and technologies, the center provides targeted treatment plans tailored to individual needs, enhancing rehabilitation outcomes for both children and adults.
Funding
$10.9M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.
Founders
Product
Problem
Patients with neurological and orthopedic impairments often face limited access to effective rehabilitation programs that can restore lost function. Traditional rehabilitation centers may not offer personalized, high-intensity therapies or incorporate advanced technologies necessary for measurable recovery.
Solution
TRAINM provides personalized, high-intensity neurorehabilitation programs for children and adults with neurological and orthopedic impairments. The center integrates various disciplines, resources, expertise, and technologies, including robotics, non-invasive neuromodulation, virtual reality, neurogaming, brain-computer interface (BCI), and artificial intelligence (AI). TRAINM's approach combines human intervention with sensor-based technologies for continuous assessment, enabling therapists to tailor therapeutic protocols to restore lost function and maximize patient recoveries. The center's multidisciplinary team designs treatment protocols that adapt to each patient's progress, using data-driven rehabilitation tools to achieve measurable outcomes.
Target Audience
The primary audience includes children and adults with neurological impairments such as stroke, acquired brain injury (ABI), cerebral palsy (CP), spinal cord injury (SCI), multiple sclerosis (MS), and Parkinson’s disease (PD), as well as those with orthopedic impairments.
Features
- Personalized treatment protocols tailored to individual needs and goals
- High-intensity therapies delivered by a multidisciplinary team of doctors and therapists
- Integration of robotics for reproducible, quantifiable, and task-specific therapy with over 1,400 movements per 30-minute session
- Non-invasive neuromodulation to enhance cortical plasticity and improve motor function, language, attention, and cognitive abilities
- Virtual reality (VR) and neurogaming for motor learning, eye-hand coordination, and addressing visual field deficits
- Brain-computer interface (BCI) technology to restore lost function
- Use of 3D cameras and sensors for improved functional recovery, such as balance, trunk control, and coordination
- Data-driven approach with established evaluation matrix and sensor-based robotics to quantify control and movements